# STOCKHOLM 1.0 #=GF ID 3.40.50.150/FF/134970 #=GF DE Ribosomal RNA small subunit methyltransferase H #=GF AC 3.40.50.150/FF/134970 #=GF TP FunFam #=GF DR CATH: 4.2 #=GF DR DOPS: 92.108 #=GS Q8XVH9/14-114_222-268_289-318 AC Q8XVH9 #=GS Q8XVH9/14-114_222-268_289-318 OS Ralstonia solanacearum GMI1000 #=GS Q8XVH9/14-114_222-268_289-318 DE Ribosomal RNA small subunit methyltransferase H #=GS Q8XVH9/14-114_222-268_289-318 DR GENE3D; ea5ab0d27b0ebc441fbbef0d5612c65c/14-114_222-268_289-318; #=GS Q8XVH9/14-114_222-268_289-318 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Ralstonia; Ralstonia solanacearum; #=GS Q8XVH9/14-114_222-268_289-318 DR EC; 2.1.1.199; #=GS T1G302/37-142_258-357 AC T1G302 #=GS T1G302/37-142_258-357 OS Helobdella robusta #=GS T1G302/37-142_258-357 DE Uncharacterized protein #=GS T1G302/37-142_258-357 DR GENE3D; c81d529cccdddac2517844f2c8fec611/37-142_258-357; #=GS T1G302/37-142_258-357 DR ORG; Eukaryota; Metazoa; Annelida; Clitellata; Hirudinea; Rhynchobdellida; Glossiphoniidae; Helobdella; Helobdella robusta; #=GS Q54PT4/59-166_272-352 AC Q54PT4 #=GS Q54PT4/59-166_272-352 OS Dictyostelium discoideum #=GS Q54PT4/59-166_272-352 DE Uncharacterized protein #=GS Q54PT4/59-166_272-352 DR GENE3D; e2e8151d4c1835a06d30a603df5d76d3/59-166_272-352; #=GS Q54PT4/59-166_272-352 DR ORG; Eukaryota; Dictyosteliida; Dictyostelium; Dictyostelium discoideum; #=GS Q89FT9/6-110_213-304 AC Q89FT9 #=GS Q89FT9/6-110_213-304 OS Bradyrhizobium diazoefficiens USDA 110 #=GS Q89FT9/6-110_213-304 DE Ribosomal RNA small subunit methyltransferase H #=GS Q89FT9/6-110_213-304 DR GENE3D; 06770d5e657eb83b92c08003dd8838d8/6-110_213-304; #=GS Q89FT9/6-110_213-304 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhizobiales; Bradyrhizobiaceae; Bradyrhizobium; Bradyrhizobium diazoefficiens; #=GS Q89FT9/6-110_213-304 DR EC; 2.1.1.199; #=GS Q83F35/7-110_214-305 AC Q83F35 #=GS Q83F35/7-110_214-305 OS Coxiella burnetii RSA 493 #=GS Q83F35/7-110_214-305 DE Ribosomal RNA small subunit methyltransferase H #=GS Q83F35/7-110_214-305 DR GENE3D; 15e56d823ad7f1f4c41184cd7991e78a/7-110_214-305; #=GS Q83F35/7-110_214-305 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Legionellales; Coxiellaceae; Coxiella; Coxiella burnetii; #=GS Q83F35/7-110_214-305 DR EC; 2.1.1.199; #=GS C1DQ91/10-113_217-311 AC C1DQ91 #=GS C1DQ91/10-113_217-311 OS Azotobacter vinelandii DJ #=GS C1DQ91/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS C1DQ91/10-113_217-311 DR GENE3D; 240aaf9e7ac138d15c5f46b64430922e/10-113_217-311; #=GS C1DQ91/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Azotobacter group; Azotobacter; Azotobacter vinelandii; #=GS C1DQ91/10-113_217-311 DR EC; 2.1.1.199; #=GS Q9CPB4/15-116_226-320 AC Q9CPB4 #=GS Q9CPB4/15-116_226-320 OS Pasteurella multocida subsp. multocida str. Pm70 #=GS Q9CPB4/15-116_226-320 DE Ribosomal RNA small subunit methyltransferase H #=GS Q9CPB4/15-116_226-320 DR GENE3D; 73935000ffab41ad95cc5cdf509c07a7/15-116_226-320; #=GS Q9CPB4/15-116_226-320 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Pasteurella; Pasteurella multocida; Pasteurella multocida subsp. multocida; #=GS Q9CPB4/15-116_226-320 DR EC; 2.1.1.199; #=GS A3MY82/11-112_218-312 AC A3MY82 #=GS A3MY82/11-112_218-312 OS Actinobacillus pleuropneumoniae serovar 5b str. L20 #=GS A3MY82/11-112_218-312 DE Ribosomal RNA small subunit methyltransferase H #=GS A3MY82/11-112_218-312 DR GENE3D; 7a31a1ca39e2684dfffa7abd47fe4638/11-112_218-312; #=GS A3MY82/11-112_218-312 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Actinobacillus; Actinobacillus pleuropneumoniae; #=GS A3MY82/11-112_218-312 DR EC; 2.1.1.199; #=GS C9R2Y9/15-116_226-320 AC C9R2Y9 #=GS C9R2Y9/15-116_226-320 OS Aggregatibacter actinomycetemcomitans D11S-1 #=GS C9R2Y9/15-116_226-320 DE Ribosomal RNA small subunit methyltransferase H #=GS C9R2Y9/15-116_226-320 DR GENE3D; 7e00f5fb006ee987d90cd3b9b90db531/15-116_226-320; #=GS C9R2Y9/15-116_226-320 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Aggregatibacter; Aggregatibacter actinomycetemcomitans; #=GS C9R2Y9/15-116_226-320 DR EC; 2.1.1.199; #=GS A0KPY0/10-111_215-309 AC A0KPY0 #=GS A0KPY0/10-111_215-309 OS Aeromonas hydrophila subsp. hydrophila ATCC 7966 #=GS A0KPY0/10-111_215-309 DE Ribosomal RNA small subunit methyltransferase H #=GS A0KPY0/10-111_215-309 DR GENE3D; 810ef92bb443bf4417e6150f65d0c3ea/10-111_215-309; #=GS A0KPY0/10-111_215-309 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Aeromonadales; Aeromonadaceae; Aeromonas; Aeromonas hydrophila; Aeromonas hydrophila subsp. hydrophila; #=GS A0KPY0/10-111_215-309 DR EC; 2.1.1.199; #=GS Q8E9P0/10-112_216-310 AC Q8E9P0 #=GS Q8E9P0/10-112_216-310 OS Shewanella oneidensis MR-1 #=GS Q8E9P0/10-112_216-310 DE Ribosomal RNA small subunit methyltransferase H #=GS Q8E9P0/10-112_216-310 DR GENE3D; 8844baa3d73903dab2357fcde3396388/10-112_216-310; #=GS Q8E9P0/10-112_216-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Shewanellaceae; Shewanella; Shewanella oneidensis; #=GS Q8E9P0/10-112_216-310 DR EC; 2.1.1.199; #=GS Q7VUP6/43-132_236-328 AC Q7VUP6 #=GS Q7VUP6/43-132_236-328 OS Bordetella pertussis Tohama I #=GS Q7VUP6/43-132_236-328 DE Ribosomal RNA small subunit methyltransferase H #=GS Q7VUP6/43-132_236-328 DR GENE3D; a78ca5329c27145dbfd9ae2f013c2b2b/43-132_236-328; #=GS Q7VUP6/43-132_236-328 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Alcaligenaceae; Bordetella; Bordetella pertussis; #=GS Q7VUP6/43-132_236-328 DR EC; 2.1.1.199; #=GS Q3JND0/10-110_218-310 AC Q3JND0 #=GS Q3JND0/10-110_218-310 OS Burkholderia pseudomallei 1710b #=GS Q3JND0/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS Q3JND0/10-110_218-310 DR GENE3D; ac1f0bd0e209bd601b486725295991dd/10-110_218-310; #=GS Q3JND0/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; pseudomallei group; Burkholderia pseudomallei; #=GS Q3JND0/10-110_218-310 DR EC; 2.1.1.199; #=GS Q9KPF9/10-111_219-315 AC Q9KPF9 #=GS Q9KPF9/10-111_219-315 OS Vibrio cholerae O1 biovar El Tor str. N16961 #=GS Q9KPF9/10-111_219-315 DE Ribosomal RNA small subunit methyltransferase H #=GS Q9KPF9/10-111_219-315 DR GENE3D; b586c3374525fcadf1eddca1006b530a/10-111_219-315; #=GS Q9KPF9/10-111_219-315 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Vibrionales; Vibrionaceae; Vibrio; Vibrio cholerae; #=GS Q9KPF9/10-111_219-315 DR EC; 2.1.1.199; #=GS Q9RQJ6/6-103_207-299 AC Q9RQJ6 #=GS Q9RQJ6/6-103_207-299 OS Caulobacter crescentus CB15 #=GS Q9RQJ6/6-103_207-299 DE Ribosomal RNA small subunit methyltransferase H #=GS Q9RQJ6/6-103_207-299 DR GENE3D; c047d126e62979ee0d83dba5909fa890/6-103_207-299; #=GS Q9RQJ6/6-103_207-299 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Caulobacterales; Caulobacteraceae; Caulobacter; Caulobacter vibrioides; #=GS Q9RQJ6/6-103_207-299 DR EC; 2.1.1.199; #=GS Q3J4N3/11-110_214-304 AC Q3J4N3 #=GS Q3J4N3/11-110_214-304 OS Rhodobacter sphaeroides 2.4.1 #=GS Q3J4N3/11-110_214-304 DE Ribosomal RNA small subunit methyltransferase H #=GS Q3J4N3/11-110_214-304 DR GENE3D; e08908defcd0818481beffe8a51f4ed5/11-110_214-304; #=GS Q3J4N3/11-110_214-304 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Rhodobacter; Rhodobacter sphaeroides; #=GS Q3J4N3/11-110_214-304 DR EC; 2.1.1.199; #=GS Q9JSY9/12-114_218-311 AC Q9JSY9 #=GS Q9JSY9/12-114_218-311 OS Neisseria meningitidis Z2491 #=GS Q9JSY9/12-114_218-311 DE Ribosomal RNA small subunit methyltransferase H #=GS Q9JSY9/12-114_218-311 DR GENE3D; e22d8869682521b8fe28407d85bf39bd/12-114_218-311; #=GS Q9JSY9/12-114_218-311 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Neisseriales; Neisseriaceae; Neisseria; Neisseria meningitidis; #=GS Q9JSY9/12-114_218-311 DR EC; 2.1.1.199; #=GS A1AZK1/6-105_207-296 AC A1AZK1 #=GS A1AZK1/6-105_207-296 OS Paracoccus denitrificans PD1222 #=GS A1AZK1/6-105_207-296 DE Ribosomal RNA small subunit methyltransferase H #=GS A1AZK1/6-105_207-296 DR GENE3D; eca5d9e4e57aef363920b73793be5c97/6-105_207-296; #=GS A1AZK1/6-105_207-296 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Paracoccus; Paracoccus denitrificans; #=GS A1AZK1/6-105_207-296 DR EC; 2.1.1.199; #=GS Q2RVT6/7-111_214-311 AC Q2RVT6 #=GS Q2RVT6/7-111_214-311 OS Rhodospirillum rubrum ATCC 11170 #=GS Q2RVT6/7-111_214-311 DE Ribosomal RNA small subunit methyltransferase H #=GS Q2RVT6/7-111_214-311 DR GENE3D; ee02ca96e77373a8a5500b8771f81de2/7-111_214-311; #=GS Q2RVT6/7-111_214-311 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodospirillales; Rhodospirillaceae; Rhodospirillum; Rhodospirillum rubrum; #=GS Q2RVT6/7-111_214-311 DR EC; 2.1.1.199; #=GS P45057/15-116_226-320 AC P45057 #=GS P45057/15-116_226-320 OS Haemophilus influenzae Rd KW20 #=GS P45057/15-116_226-320 DE Ribosomal RNA small subunit methyltransferase H #=GS P45057/15-116_226-320 DR GENE3D; efea559b050682ec879283e2b98b49dd/15-116_226-320; #=GS P45057/15-116_226-320 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Haemophilus; Haemophilus influenzae; #=GS P45057/15-116_226-320 DR EC; 2.1.1.199; #=GS Q5X6J0/7-110_214-306 AC Q5X6J0 #=GS Q5X6J0/7-110_214-306 OS Legionella pneumophila str. Paris #=GS Q5X6J0/7-110_214-306 DE Ribosomal RNA small subunit methyltransferase H #=GS Q5X6J0/7-110_214-306 DR GENE3D; f6dd83bf53fc0a869917478dc7b4f26f/7-110_214-306; #=GS Q5X6J0/7-110_214-306 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Legionellales; Legionellaceae; Legionella; Legionella pneumophila; #=GS Q5X6J0/7-110_214-306 DR EC; 2.1.1.199; #=GS A0A0Q7Z3S0/14-117_218-260_281-309 AC A0A0Q7Z3S0 #=GS A0A0Q7Z3S0/14-117_218-260_281-309 OS Sphingopyxis sp. Root1497 #=GS A0A0Q7Z3S0/14-117_218-260_281-309 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q7Z3S0/14-117_218-260_281-309 DR GENE3D; 0c54c76551b1dbcaaca1f3e66f05f667/14-117_218-260_281-309; #=GS A0A0Q7Z3S0/14-117_218-260_281-309 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingopyxis; Sphingopyxis sp. Root1497; #=GS A0A0Q7Z3S0/14-117_218-260_281-309 DR EC; 2.1.1.199; #=GS A0A1G3KG36/14-117_218-260_281-309 AC A0A1G3KG36 #=GS A0A1G3KG36/14-117_218-260_281-309 OS Sphingopyxis sp. RIFCSPHIGHO2_01_FULL_65_24 #=GS A0A1G3KG36/14-117_218-260_281-309 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1G3KG36/14-117_218-260_281-309 DR GENE3D; 0c54c76551b1dbcaaca1f3e66f05f667/14-117_218-260_281-309; #=GS A0A1G3KG36/14-117_218-260_281-309 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingopyxis; Sphingopyxis sp. RIFCSPHIGHO2_01_FULL_65_24; #=GS A0A1G3KG36/14-117_218-260_281-309 DR EC; 2.1.1.199; #=GS A0A095BN42/10-113_214-256_277-305 AC A0A095BN42 #=GS A0A095BN42/10-113_214-256_277-305 OS Sphingopyxis sp. LC81 #=GS A0A095BN42/10-113_214-256_277-305 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A095BN42/10-113_214-256_277-305 DR GENE3D; 0dae4be5e06053f07108b390b1ffea6f/10-113_214-256_277-305; #=GS A0A095BN42/10-113_214-256_277-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingopyxis; Sphingopyxis sp. LC81; #=GS A0A095BN42/10-113_214-256_277-305 DR EC; 2.1.1.199; #=GS A0A0P0DQ66/14-117_218-260_281-309 AC A0A0P0DQ66 #=GS A0A0P0DQ66/14-117_218-260_281-309 OS Sphingopyxis macrogoltabida #=GS A0A0P0DQ66/14-117_218-260_281-309 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0P0DQ66/14-117_218-260_281-309 DR GENE3D; 0f0a724b45ca974e46f54dfcb3375f97/14-117_218-260_281-309; #=GS A0A0P0DQ66/14-117_218-260_281-309 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingopyxis; Sphingopyxis macrogoltabida; #=GS A0A0P0DQ66/14-117_218-260_281-309 DR EC; 2.1.1.199; #=GS D8N628/14-114_222-268_289-318 AC D8N628 #=GS D8N628/14-114_222-268_289-318 OS Ralstonia solanacearum CMR15 #=GS D8N628/14-114_222-268_289-318 DE Ribosomal RNA small subunit methyltransferase H #=GS D8N628/14-114_222-268_289-318 DR GENE3D; 1230f7617a108b84b704ab7e8ac2465c/14-114_222-268_289-318; #=GS D8N628/14-114_222-268_289-318 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Ralstonia; Ralstonia solanacearum; #=GS D8N628/14-114_222-268_289-318 DR EC; 2.1.1.199; #=GS A5UIQ3/15-116_226-272 AC A5UIQ3 #=GS A5UIQ3/15-116_226-272 OS Haemophilus influenzae PittGG #=GS A5UIQ3/15-116_226-272 DE Ribosomal RNA small subunit methyltransferase H #=GS A5UIQ3/15-116_226-272 DR GENE3D; 1310dcad8964a9db17f207407b4cb5e1/15-116_226-272; #=GS A5UIQ3/15-116_226-272 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Haemophilus; Haemophilus influenzae; #=GS A5UIQ3/15-116_226-272 DR EC; 2.1.1.199; #=GS A0A0Q5V2C4/9-112_216-258_279-308 AC A0A0Q5V2C4 #=GS A0A0Q5V2C4/9-112_216-258_279-308 OS Brevundimonas sp. Leaf363 #=GS A0A0Q5V2C4/9-112_216-258_279-308 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q5V2C4/9-112_216-258_279-308 DR GENE3D; 1465a55e8dabcd97cfff2f2ba8f3861c/9-112_216-258_279-308; #=GS A0A0Q5V2C4/9-112_216-258_279-308 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Caulobacterales; Caulobacteraceae; Brevundimonas; Brevundimonas sp. Leaf363; #=GS A0A0Q5V2C4/9-112_216-258_279-308 DR EC; 2.1.1.199; #=GS A0A1F8IJU9/10-113_217-259_280-309 AC A0A1F8IJU9 #=GS A0A1F8IJU9/10-113_217-259_280-309 OS Caulobacterales bacterium RIFOXYB1_FULL_67_16 #=GS A0A1F8IJU9/10-113_217-259_280-309 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1F8IJU9/10-113_217-259_280-309 DR GENE3D; 15754915d952aee354c8d9a2e390117c/10-113_217-259_280-309; #=GS A0A1F8IJU9/10-113_217-259_280-309 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Caulobacterales; Caulobacterales bacterium RIFOXYB1_FULL_67_16; #=GS A0A1F8IJU9/10-113_217-259_280-309 DR EC; 2.1.1.199; #=GS A0A0Q7EKC9/5-108_216-258_279-308 AC A0A0Q7EKC9 #=GS A0A0Q7EKC9/5-108_216-258_279-308 OS Brevundimonas sp. Root1279 #=GS A0A0Q7EKC9/5-108_216-258_279-308 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q7EKC9/5-108_216-258_279-308 DR GENE3D; 1c7a59ad67f7749d4cafeda9bb96ece5/5-108_216-258_279-308; #=GS A0A0Q7EKC9/5-108_216-258_279-308 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Caulobacterales; Caulobacteraceae; Brevundimonas; Brevundimonas sp. Root1279; #=GS A0A0Q7EKC9/5-108_216-258_279-308 DR EC; 2.1.1.199; #=GS U3G713/14-114_222-268_289-318 AC U3G713 #=GS U3G713/14-114_222-268_289-318 OS Ralstonia sp. 5_2_56FAA #=GS U3G713/14-114_222-268_289-318 DE Ribosomal RNA small subunit methyltransferase H #=GS U3G713/14-114_222-268_289-318 DR GENE3D; 1e6e9ad364dc6d39684dfae9654ab9dd/14-114_222-268_289-318; #=GS U3G713/14-114_222-268_289-318 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Ralstonia; Ralstonia sp. 5_2_56FAA; #=GS U3G713/14-114_222-268_289-318 DR EC; 2.1.1.199; #=GS A0A1C0XL75/14-114_222-268_289-318 AC A0A1C0XL75 #=GS A0A1C0XL75/14-114_222-268_289-318 OS Ralstonia pickettii #=GS A0A1C0XL75/14-114_222-268_289-318 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1C0XL75/14-114_222-268_289-318 DR GENE3D; 1e6e9ad364dc6d39684dfae9654ab9dd/14-114_222-268_289-318; #=GS A0A1C0XL75/14-114_222-268_289-318 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Ralstonia; Ralstonia pickettii; #=GS A0A1C0XL75/14-114_222-268_289-318 DR EC; 2.1.1.199; #=GS A0A0Q8RWY2/10-113_214-256_277-305 AC A0A0Q8RWY2 #=GS A0A0Q8RWY2/10-113_214-256_277-305 OS Sphingopyxis sp. Root214 #=GS A0A0Q8RWY2/10-113_214-256_277-305 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q8RWY2/10-113_214-256_277-305 DR GENE3D; 1e95e1ce8e45a8cf43a3930188d62f0a/10-113_214-256_277-305; #=GS A0A0Q8RWY2/10-113_214-256_277-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingopyxis; Sphingopyxis sp. Root214; #=GS A0A0Q8RWY2/10-113_214-256_277-305 DR EC; 2.1.1.199; #=GS A0A0Q7T2J9/4-107_211-253_274-303 AC A0A0Q7T2J9 #=GS A0A0Q7T2J9/4-107_211-253_274-303 OS Brevundimonas sp. Root1423 #=GS A0A0Q7T2J9/4-107_211-253_274-303 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q7T2J9/4-107_211-253_274-303 DR GENE3D; 25e97c31df4cad981e9f383d83a97a1d/4-107_211-253_274-303; #=GS A0A0Q7T2J9/4-107_211-253_274-303 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Caulobacterales; Caulobacteraceae; Brevundimonas; Brevundimonas sp. Root1423; #=GS A0A0Q7T2J9/4-107_211-253_274-303 DR EC; 2.1.1.199; #=GS A0A0N9UZX7/14-117_218-260_281-309 AC A0A0N9UZX7 #=GS A0A0N9UZX7/14-117_218-260_281-309 OS Sphingopyxis macrogoltabida #=GS A0A0N9UZX7/14-117_218-260_281-309 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0N9UZX7/14-117_218-260_281-309 DR GENE3D; 2690974c1c508de8d4dd7e298345b3d7/14-117_218-260_281-309; #=GS A0A0N9UZX7/14-117_218-260_281-309 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingopyxis; Sphingopyxis macrogoltabida; #=GS A0A0N9UZX7/14-117_218-260_281-309 DR EC; 2.1.1.199; #=GS D9QMT5/6-109_213-255_276-305 AC D9QMT5 #=GS D9QMT5/6-109_213-255_276-305 OS Brevundimonas subvibrioides ATCC 15264 #=GS D9QMT5/6-109_213-255_276-305 DE Ribosomal RNA small subunit methyltransferase H #=GS D9QMT5/6-109_213-255_276-305 DR GENE3D; 2761fc8e8e41fcdbed72432ffcd49d68/6-109_213-255_276-305; #=GS D9QMT5/6-109_213-255_276-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Caulobacterales; Caulobacteraceae; Brevundimonas; Brevundimonas subvibrioides; #=GS D9QMT5/6-109_213-255_276-305 DR EC; 2.1.1.199; #=GS Q1GRX1/10-113_214-256_277-305 AC Q1GRX1 #=GS Q1GRX1/10-113_214-256_277-305 OS Sphingopyxis alaskensis RB2256 #=GS Q1GRX1/10-113_214-256_277-305 DE Ribosomal RNA small subunit methyltransferase H #=GS Q1GRX1/10-113_214-256_277-305 DR GENE3D; 288b2ac2df72319835ec03f430208fa9/10-113_214-256_277-305; #=GS Q1GRX1/10-113_214-256_277-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingopyxis; Sphingopyxis alaskensis; #=GS Q1GRX1/10-113_214-256_277-305 DR EC; 2.1.1.199; #=GS A0A0W1I8Z5/7-110_211-253_274-302 AC A0A0W1I8Z5 #=GS A0A0W1I8Z5/7-110_211-253_274-302 OS Sphingopyxis sp. A083 #=GS A0A0W1I8Z5/7-110_211-253_274-302 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0W1I8Z5/7-110_211-253_274-302 DR GENE3D; 29e74b8e04e70ec0b92cfa60cbbeed7c/7-110_211-253_274-302; #=GS A0A0W1I8Z5/7-110_211-253_274-302 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingopyxis; Sphingopyxis sp. A083; #=GS A0A0W1I8Z5/7-110_211-253_274-302 DR EC; 2.1.1.199; #=GS A0A0G0A1C6/2-106_209-277 AC A0A0G0A1C6 #=GS A0A0G0A1C6/2-106_209-277 OS Candidatus Roizmanbacteria bacterium GW2011_GWA2_33_33 #=GS A0A0G0A1C6/2-106_209-277 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0G0A1C6/2-106_209-277 DR GENE3D; 2b91f69cd116ebd8cf198b2a518f777e/2-106_209-277; #=GS A0A0G0A1C6/2-106_209-277 DR ORG; Bacteria; Candidatus Roizmanbacteria; Candidatus Roizmanbacteria bacterium GW2011_GWA2_33_33; #=GS A0A0G0A1C6/2-106_209-277 DR EC; 2.1.1.199; #=GS A0A0G0B0B9/2-106_209-277 AC A0A0G0B0B9 #=GS A0A0G0B0B9/2-106_209-277 OS Candidatus Roizmanbacteria bacterium GW2011_GWC2_34_23 #=GS A0A0G0B0B9/2-106_209-277 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0G0B0B9/2-106_209-277 DR GENE3D; 2b91f69cd116ebd8cf198b2a518f777e/2-106_209-277; #=GS A0A0G0B0B9/2-106_209-277 DR ORG; Bacteria; Candidatus Roizmanbacteria; Candidatus Roizmanbacteria bacterium GW2011_GWC2_34_23; #=GS A0A0G0B0B9/2-106_209-277 DR EC; 2.1.1.199; #=GS V4PYB9/6-109_213-255_276-305 AC V4PYB9 #=GS V4PYB9/6-109_213-255_276-305 OS Asticcacaulis benevestitus DSM 16100 = ATCC BAA-896 #=GS V4PYB9/6-109_213-255_276-305 DE Ribosomal RNA small subunit methyltransferase H #=GS V4PYB9/6-109_213-255_276-305 DR GENE3D; 2c53c63afa85b30e320cf2401c06a4ad/6-109_213-255_276-305; #=GS V4PYB9/6-109_213-255_276-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Caulobacterales; Caulobacteraceae; Asticcacaulis; Asticcacaulis benevestitus; #=GS V4PYB9/6-109_213-255_276-305 DR EC; 2.1.1.199; #=GS A0A1D9GYP5/17-115_223-269_290-319 AC A0A1D9GYP5 #=GS A0A1D9GYP5/17-115_223-269_290-319 OS Cupriavidus sp. USMAA2-4 #=GS A0A1D9GYP5/17-115_223-269_290-319 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1D9GYP5/17-115_223-269_290-319 DR GENE3D; 2cbc65da93fe79b4548eb857c76e1da4/17-115_223-269_290-319; #=GS A0A1D9GYP5/17-115_223-269_290-319 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Cupriavidus; Cupriavidus sp. USMAA2-4; #=GS A0A1D9GYP5/17-115_223-269_290-319 DR EC; 2.1.1.199; #=GS N9WHJ4/14-117_218-260_281-309 AC N9WHJ4 #=GS N9WHJ4/14-117_218-260_281-309 OS Sphingopyxis sp. MC1 #=GS N9WHJ4/14-117_218-260_281-309 DE Ribosomal RNA small subunit methyltransferase H #=GS N9WHJ4/14-117_218-260_281-309 DR GENE3D; 2d79f4c0ca90f34d3baa3ce9226bd09f/14-117_218-260_281-309; #=GS N9WHJ4/14-117_218-260_281-309 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingopyxis; Sphingopyxis sp. MC1; #=GS N9WHJ4/14-117_218-260_281-309 DR EC; 2.1.1.199; #=GS A0A0D5AMQ5/14-114_222-268_289-318 AC A0A0D5AMQ5 #=GS A0A0D5AMQ5/14-114_222-268_289-318 OS Ralstonia mannitolilytica #=GS A0A0D5AMQ5/14-114_222-268_289-318 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0D5AMQ5/14-114_222-268_289-318 DR GENE3D; 2e5e98a41066c356895497d81ae299d2/14-114_222-268_289-318; #=GS A0A0D5AMQ5/14-114_222-268_289-318 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Ralstonia; Ralstonia mannitolilytica; #=GS A0A0D5AMQ5/14-114_222-268_289-318 DR EC; 2.1.1.199; #=GS A0A0N0RC77/14-117_218-260_281-309 AC A0A0N0RC77 #=GS A0A0N0RC77/14-117_218-260_281-309 OS Sphingopyxis sp. C-1 #=GS A0A0N0RC77/14-117_218-260_281-309 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0N0RC77/14-117_218-260_281-309 DR GENE3D; 309764f365c5bf39a4fb0cf6176c3446/14-117_218-260_281-309; #=GS A0A0N0RC77/14-117_218-260_281-309 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingopyxis; Sphingopyxis sp. C-1; #=GS A0A0N0RC77/14-117_218-260_281-309 DR EC; 2.1.1.199; #=GS A0A0F0FTY4/17-115_223-269_290-319 AC A0A0F0FTY4 #=GS A0A0F0FTY4/17-115_223-269_290-319 OS Burkholderiaceae bacterium 16 #=GS A0A0F0FTY4/17-115_223-269_290-319 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0F0FTY4/17-115_223-269_290-319 DR GENE3D; 33bf1ab684a734583c7c8ae8df75e1dc/17-115_223-269_290-319; #=GS A0A0F0FTY4/17-115_223-269_290-319 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderiaceae bacterium 16; #=GS A0A0F0FTY4/17-115_223-269_290-319 DR EC; 2.1.1.199; #=GS U2ZCX3/5-108_212-254_275-304 AC U2ZCX3 #=GS U2ZCX3/5-108_212-254_275-304 OS Brevundimonas abyssalis TAR-001 #=GS U2ZCX3/5-108_212-254_275-304 DE Ribosomal RNA small subunit methyltransferase H #=GS U2ZCX3/5-108_212-254_275-304 DR GENE3D; 3498be90e802d70dd19d25020e8d3481/5-108_212-254_275-304; #=GS U2ZCX3/5-108_212-254_275-304 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Caulobacterales; Caulobacteraceae; Brevundimonas; Brevundimonas abyssalis; #=GS U2ZCX3/5-108_212-254_275-304 DR EC; 2.1.1.199; #=GS A0A0Q4FNV4/6-104_205-247_268-296 AC A0A0Q4FNV4 #=GS A0A0Q4FNV4/6-104_205-247_268-296 OS Sphingomonas sp. Leaf17 #=GS A0A0Q4FNV4/6-104_205-247_268-296 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q4FNV4/6-104_205-247_268-296 DR GENE3D; 35255037b261f7b67c7dab505e86fe35/6-104_205-247_268-296; #=GS A0A0Q4FNV4/6-104_205-247_268-296 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingomonas; Sphingomonas sp. Leaf17; #=GS A0A0Q4FNV4/6-104_205-247_268-296 DR EC; 2.1.1.199; #=GS A0A0Q8R0Z6/7-110_211-253_274-303 AC A0A0Q8R0Z6 #=GS A0A0Q8R0Z6/7-110_211-253_274-303 OS Sphingomonas sp. Root720 #=GS A0A0Q8R0Z6/7-110_211-253_274-303 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q8R0Z6/7-110_211-253_274-303 DR GENE3D; 35c842cdf786e19fe5b78f3aff94fbbf/7-110_211-253_274-303; #=GS A0A0Q8R0Z6/7-110_211-253_274-303 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingomonas; Sphingomonas sp. Root720; #=GS A0A0Q8R0Z6/7-110_211-253_274-303 DR EC; 2.1.1.199; #=GS A0A0W1GRM4/14-117_218-260_281-309 AC A0A0W1GRM4 #=GS A0A0W1GRM4/14-117_218-260_281-309 OS Sphingopyxis sp. H071 #=GS A0A0W1GRM4/14-117_218-260_281-309 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0W1GRM4/14-117_218-260_281-309 DR GENE3D; 36bfc70661f8fa42eb632d0f6ca1cb28/14-117_218-260_281-309; #=GS A0A0W1GRM4/14-117_218-260_281-309 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingopyxis; Sphingopyxis sp. H071; #=GS A0A0W1GRM4/14-117_218-260_281-309 DR EC; 2.1.1.199; #=GS A0A0W1EFP0/10-113_214-256_277-305 AC A0A0W1EFP0 #=GS A0A0W1EFP0/10-113_214-256_277-305 OS Sphingopyxis sp. HIX #=GS A0A0W1EFP0/10-113_214-256_277-305 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0W1EFP0/10-113_214-256_277-305 DR GENE3D; 36d7ca9a7b99557de12704086dddbe98/10-113_214-256_277-305; #=GS A0A0W1EFP0/10-113_214-256_277-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingopyxis; Sphingopyxis sp. HIX; #=GS A0A0W1EFP0/10-113_214-256_277-305 DR EC; 2.1.1.199; #=GS B4WBI9/6-109_213-255_276-305 AC B4WBI9 #=GS B4WBI9/6-109_213-255_276-305 OS Brevundimonas sp. BAL3 #=GS B4WBI9/6-109_213-255_276-305 DE Ribosomal RNA small subunit methyltransferase H #=GS B4WBI9/6-109_213-255_276-305 DR GENE3D; 39313ff89ade4d976eed61215aecd934/6-109_213-255_276-305; #=GS B4WBI9/6-109_213-255_276-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Caulobacterales; Caulobacteraceae; Brevundimonas; Brevundimonas sp. BAL3; #=GS B4WBI9/6-109_213-255_276-305 DR EC; 2.1.1.199; #=GS V4Q6R8/8-111_215-257_278-307 AC V4Q6R8 #=GS V4Q6R8/8-111_215-257_278-307 OS Asticcacaulis sp. AC460 #=GS V4Q6R8/8-111_215-257_278-307 DE Ribosomal RNA small subunit methyltransferase H #=GS V4Q6R8/8-111_215-257_278-307 DR GENE3D; 39ab52abe53403d07e8a99d70a3e11e2/8-111_215-257_278-307; #=GS V4Q6R8/8-111_215-257_278-307 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Caulobacterales; Caulobacteraceae; Asticcacaulis; Asticcacaulis sp. AC460; #=GS V4Q6R8/8-111_215-257_278-307 DR EC; 2.1.1.199; #=GS A0A0J9DUL9/14-114_222-268_289-318 AC A0A0J9DUL9 #=GS A0A0J9DUL9/14-114_222-268_289-318 OS Ralstonia sp. MD27 #=GS A0A0J9DUL9/14-114_222-268_289-318 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0J9DUL9/14-114_222-268_289-318 DR GENE3D; 39eef05b63e1c66a889afcc3beed1966/14-114_222-268_289-318; #=GS A0A0J9DUL9/14-114_222-268_289-318 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Ralstonia; Ralstonia sp. MD27; #=GS A0A0J9DUL9/14-114_222-268_289-318 DR EC; 2.1.1.199; #=GS A0A1F4VQK1/14-114_217-288 AC A0A1F4VQK1 #=GS A0A1F4VQK1/14-114_217-288 OS candidate division WWE3 bacterium RIFCSPLOWO2_01_FULL_42_11 #=GS A0A1F4VQK1/14-114_217-288 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1F4VQK1/14-114_217-288 DR GENE3D; 40e2e3c48f18d57aa198ef3a670f1747/14-114_217-288; #=GS A0A1F4VQK1/14-114_217-288 DR ORG; Bacteria; candidate division WWE3; candidate division WWE3 bacterium RIFCSPLOWO2_01_FULL_42_11; #=GS A0A1F4VQK1/14-114_217-288 DR EC; 2.1.1.199; #=GS H1SGH1/17-115_223-269_290-319 AC H1SGH1 #=GS H1SGH1/17-115_223-269_290-319 OS Cupriavidus basilensis OR16 #=GS H1SGH1/17-115_223-269_290-319 DE Ribosomal RNA small subunit methyltransferase H #=GS H1SGH1/17-115_223-269_290-319 DR GENE3D; 48e786dba57b105df59cdf051d08c905/17-115_223-269_290-319; #=GS H1SGH1/17-115_223-269_290-319 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Cupriavidus; Cupriavidus basilensis; #=GS H1SGH1/17-115_223-269_290-319 DR EC; 2.1.1.199; #=GS A0A031I2S5/7-103_204-246_267-295 AC A0A031I2S5 #=GS A0A031I2S5/7-103_204-246_267-295 OS Sphingomonas sp. RIT328 #=GS A0A031I2S5/7-103_204-246_267-295 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A031I2S5/7-103_204-246_267-295 DR GENE3D; 4aa1649fba3f5da08e1f8db10fe43811/7-103_204-246_267-295; #=GS A0A031I2S5/7-103_204-246_267-295 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingomonas; Sphingomonas sp. RIT328; #=GS A0A031I2S5/7-103_204-246_267-295 DR EC; 2.1.1.199; #=GS A0A0M3SW38/17-114_222-267 AC A0A0M3SW38 #=GS A0A0M3SW38/17-114_222-267 OS Cupriavidus gilardii CR3 #=GS A0A0M3SW38/17-114_222-267 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0M3SW38/17-114_222-267 DR GENE3D; 4d3d5ac7e89d23e63f8d6675c420c216/17-114_222-267; #=GS A0A0M3SW38/17-114_222-267 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Cupriavidus; Cupriavidus gilardii; #=GS A0A0M3SW38/17-114_222-267 DR EC; 2.1.1.199; #=GS U3QVE3/17-115_223-269_290-319 AC U3QVE3 #=GS U3QVE3/17-115_223-269_290-319 OS Ralstonia pickettii DTP0602 #=GS U3QVE3/17-115_223-269_290-319 DE Ribosomal RNA small subunit methyltransferase H #=GS U3QVE3/17-115_223-269_290-319 DR GENE3D; 4f0b725760e8b77b33c23883de6c041a/17-115_223-269_290-319; #=GS U3QVE3/17-115_223-269_290-319 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Ralstonia; Ralstonia pickettii; #=GS U3QVE3/17-115_223-269_290-319 DR EC; 2.1.1.199; #=GS A0A1B3ZAV3/6-109_210-252_273-301 AC A0A1B3ZAV3 #=GS A0A1B3ZAV3/6-109_210-252_273-301 OS Sphingomonas panacis #=GS A0A1B3ZAV3/6-109_210-252_273-301 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1B3ZAV3/6-109_210-252_273-301 DR GENE3D; 54252fbffd3046dfb85c5d9dc3bbdec2/6-109_210-252_273-301; #=GS A0A1B3ZAV3/6-109_210-252_273-301 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingomonas; Sphingomonas panacis; #=GS A0A1B3ZAV3/6-109_210-252_273-301 DR EC; 2.1.1.199; #=GS A0A0P0DFX2/6-109_213-255_276-305 AC A0A0P0DFX2 #=GS A0A0P0DFX2/6-109_213-255_276-305 OS Brevundimonas sp. DS20 #=GS A0A0P0DFX2/6-109_213-255_276-305 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0P0DFX2/6-109_213-255_276-305 DR GENE3D; 57cfb9bdbbbd3d7f1507bcbed73d4562/6-109_213-255_276-305; #=GS A0A0P0DFX2/6-109_213-255_276-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Caulobacterales; Caulobacteraceae; Brevundimonas; Brevundimonas sp. DS20; #=GS A0A0P0DFX2/6-109_213-255_276-305 DR EC; 2.1.1.199; #=GS A3RXL9/14-114_222-268_289-318 AC A3RXL9 #=GS A3RXL9/14-114_222-268_289-318 OS Ralstonia solanacearum UW551 #=GS A3RXL9/14-114_222-268_289-318 DE Ribosomal RNA small subunit methyltransferase H #=GS A3RXL9/14-114_222-268_289-318 DR GENE3D; 57f4296b5627fd6d3fdccb1468d0976f/14-114_222-268_289-318; #=GS A3RXL9/14-114_222-268_289-318 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Ralstonia; Ralstonia solanacearum; #=GS A3RXL9/14-114_222-268_289-318 DR EC; 2.1.1.199; #=GS A0A072ST86/14-114_222-268_289-318 AC A0A072ST86 #=GS A0A072ST86/14-114_222-268_289-318 OS Ralstonia solanacearum #=GS A0A072ST86/14-114_222-268_289-318 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A072ST86/14-114_222-268_289-318 DR GENE3D; 57f4296b5627fd6d3fdccb1468d0976f/14-114_222-268_289-318; #=GS A0A072ST86/14-114_222-268_289-318 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Ralstonia; Ralstonia solanacearum; #=GS A0A072ST86/14-114_222-268_289-318 DR EC; 2.1.1.199; #=GS F6FY01/14-114_222-268_289-318 AC F6FY01 #=GS F6FY01/14-114_222-268_289-318 OS Ralstonia solanacearum Po82 #=GS F6FY01/14-114_222-268_289-318 DE Ribosomal RNA small subunit methyltransferase H #=GS F6FY01/14-114_222-268_289-318 DR GENE3D; 57f4296b5627fd6d3fdccb1468d0976f/14-114_222-268_289-318; #=GS F6FY01/14-114_222-268_289-318 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Ralstonia; Ralstonia solanacearum; #=GS F6FY01/14-114_222-268_289-318 DR EC; 2.1.1.199; #=GS R7X9P7/17-115_223-269_290-319 AC R7X9P7 #=GS R7X9P7/17-115_223-269_290-319 OS Ralstonia sp. GA3-3 #=GS R7X9P7/17-115_223-269_290-319 DE Ribosomal RNA small subunit methyltransferase H #=GS R7X9P7/17-115_223-269_290-319 DR GENE3D; 5a4ea6d8ae9a0fac3ea2b528665231d0/17-115_223-269_290-319; #=GS R7X9P7/17-115_223-269_290-319 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Ralstonia; Ralstonia sp. GA3-3; #=GS R7X9P7/17-115_223-269_290-319 DR EC; 2.1.1.199; #=GS Q0K6L6/17-115_223-269_290-319 AC Q0K6L6 #=GS Q0K6L6/17-115_223-269_290-319 OS Ralstonia eutropha H16 #=GS Q0K6L6/17-115_223-269_290-319 DE Ribosomal RNA small subunit methyltransferase H #=GS Q0K6L6/17-115_223-269_290-319 DR GENE3D; 5a4ea6d8ae9a0fac3ea2b528665231d0/17-115_223-269_290-319; #=GS Q0K6L6/17-115_223-269_290-319 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Cupriavidus; Cupriavidus necator; #=GS Q0K6L6/17-115_223-269_290-319 DR EC; 2.1.1.199; #=GS A0A0S9NLD2/9-112_216-258_279-308 AC A0A0S9NLD2 #=GS A0A0S9NLD2/9-112_216-258_279-308 OS Brevundimonas sp. Leaf280 #=GS A0A0S9NLD2/9-112_216-258_279-308 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0S9NLD2/9-112_216-258_279-308 DR GENE3D; 5d46541c1afcac1c2049ef55c04a97be/9-112_216-258_279-308; #=GS A0A0S9NLD2/9-112_216-258_279-308 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Caulobacterales; Caulobacteraceae; Brevundimonas; Brevundimonas sp. Leaf280; #=GS A0A0S9NLD2/9-112_216-258_279-308 DR EC; 2.1.1.199; #=GS A0A0K1ZHQ3/14-114_222-268_289-318 AC A0A0K1ZHQ3 #=GS A0A0K1ZHQ3/14-114_222-268_289-318 OS Ralstonia solanacearum #=GS A0A0K1ZHQ3/14-114_222-268_289-318 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0K1ZHQ3/14-114_222-268_289-318 DR GENE3D; 60cf46bb85bb94297c4b7e78ba986413/14-114_222-268_289-318; #=GS A0A0K1ZHQ3/14-114_222-268_289-318 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Ralstonia; Ralstonia solanacearum; #=GS A0A0K1ZHQ3/14-114_222-268_289-318 DR EC; 2.1.1.199; #=GS A0A0X8R283/10-113_214-256_277-305 AC A0A0X8R283 #=GS A0A0X8R283/10-113_214-256_277-305 OS Sphingopyxis granuli #=GS A0A0X8R283/10-113_214-256_277-305 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0X8R283/10-113_214-256_277-305 DR GENE3D; 64203395906eb90d2c320c851deacbcf/10-113_214-256_277-305; #=GS A0A0X8R283/10-113_214-256_277-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingopyxis; Sphingopyxis granuli; #=GS A0A0X8R283/10-113_214-256_277-305 DR EC; 2.1.1.199; #=GS A0A1E4JMS7/10-113_214-256_277-305 AC A0A1E4JMS7 #=GS A0A1E4JMS7/10-113_214-256_277-305 OS Sphingopyxis sp. SCN 67-31 #=GS A0A1E4JMS7/10-113_214-256_277-305 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1E4JMS7/10-113_214-256_277-305 DR GENE3D; 64203395906eb90d2c320c851deacbcf/10-113_214-256_277-305; #=GS A0A1E4JMS7/10-113_214-256_277-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingopyxis; Sphingopyxis sp. SCN 67-31; #=GS A0A1E4JMS7/10-113_214-256_277-305 DR EC; 2.1.1.199; #=GS Q46WY6/17-115_223-269_290-319 AC Q46WY6 #=GS Q46WY6/17-115_223-269_290-319 OS Ralstonia eutropha JMP134 #=GS Q46WY6/17-115_223-269_290-319 DE Ribosomal RNA small subunit methyltransferase H #=GS Q46WY6/17-115_223-269_290-319 DR GENE3D; 669ef89f57ffeed4b96d076e1328fa3f/17-115_223-269_290-319; #=GS Q46WY6/17-115_223-269_290-319 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Cupriavidus; Cupriavidus pinatubonensis; #=GS Q46WY6/17-115_223-269_290-319 DR EC; 2.1.1.199; #=GS C6BEJ1/14-114_222-268_289-318 AC C6BEJ1 #=GS C6BEJ1/14-114_222-268_289-318 OS Ralstonia pickettii 12D #=GS C6BEJ1/14-114_222-268_289-318 DE Ribosomal RNA small subunit methyltransferase H #=GS C6BEJ1/14-114_222-268_289-318 DR GENE3D; 6d92a49bbbe6de1a1899e899dc4c2b2e/14-114_222-268_289-318; #=GS C6BEJ1/14-114_222-268_289-318 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Ralstonia; Ralstonia pickettii; #=GS C6BEJ1/14-114_222-268_289-318 DR EC; 2.1.1.199; #=GS V4NLR2/8-111_215-257_282-311 AC V4NLR2 #=GS V4NLR2/8-111_215-257_282-311 OS Asticcacaulis sp. AC402 #=GS V4NLR2/8-111_215-257_282-311 DE Ribosomal RNA small subunit methyltransferase H #=GS V4NLR2/8-111_215-257_282-311 DR GENE3D; 70c4ae569fa755dd4fd9ab68d00b1d24/8-111_215-257_282-311; #=GS V4NLR2/8-111_215-257_282-311 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Caulobacterales; Caulobacteraceae; Asticcacaulis; Asticcacaulis sp. AC402; #=GS V4NLR2/8-111_215-257_282-311 DR EC; 2.1.1.199; #=GS B2UCY5/14-114_222-268_289-318 AC B2UCY5 #=GS B2UCY5/14-114_222-268_289-318 OS Ralstonia pickettii 12J #=GS B2UCY5/14-114_222-268_289-318 DE Ribosomal RNA small subunit methyltransferase H #=GS B2UCY5/14-114_222-268_289-318 DR GENE3D; 78190cedcb38f0cdc3b21391656b05bb/14-114_222-268_289-318; #=GS B2UCY5/14-114_222-268_289-318 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Ralstonia; Ralstonia pickettii; #=GS B2UCY5/14-114_222-268_289-318 DR EC; 2.1.1.199; #=GS R0CIX8/14-114_222-268_289-318 AC R0CIX8 #=GS R0CIX8/14-114_222-268_289-318 OS Ralstonia pickettii OR214 #=GS R0CIX8/14-114_222-268_289-318 DE Ribosomal RNA small subunit methyltransferase H #=GS R0CIX8/14-114_222-268_289-318 DR GENE3D; 78190cedcb38f0cdc3b21391656b05bb/14-114_222-268_289-318; #=GS R0CIX8/14-114_222-268_289-318 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Ralstonia; Ralstonia pickettii; #=GS R0CIX8/14-114_222-268_289-318 DR EC; 2.1.1.199; #=GS A0A0Q8QLX1/7-110_211-253_274-303 AC A0A0Q8QLX1 #=GS A0A0Q8QLX1/7-110_211-253_274-303 OS Sphingomonas sp. Root710 #=GS A0A0Q8QLX1/7-110_211-253_274-303 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q8QLX1/7-110_211-253_274-303 DR GENE3D; 79696a50edd6495b9a59160f891ffba3/7-110_211-253_274-303; #=GS A0A0Q8QLX1/7-110_211-253_274-303 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingomonas; Sphingomonas sp. Root710; #=GS A0A0Q8QLX1/7-110_211-253_274-303 DR EC; 2.1.1.199; #=GS A0A142JP91/17-115_223-269_290-319 AC A0A142JP91 #=GS A0A142JP91/17-115_223-269_290-319 OS Cupriavidus nantongensis #=GS A0A142JP91/17-115_223-269_290-319 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A142JP91/17-115_223-269_290-319 DR GENE3D; 7b79a1e8162f7348c848b175c7909b4a/17-115_223-269_290-319; #=GS A0A142JP91/17-115_223-269_290-319 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Cupriavidus; Cupriavidus nantongensis; #=GS A0A142JP91/17-115_223-269_290-319 DR EC; 2.1.1.199; #=GS A0A0Q5QYH2/2-95_196-238_259-287 AC A0A0Q5QYH2 #=GS A0A0Q5QYH2/2-95_196-238_259-287 OS Sphingomonas sp. Leaf357 #=GS A0A0Q5QYH2/2-95_196-238_259-287 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q5QYH2/2-95_196-238_259-287 DR GENE3D; 7f16d50ac45229807154150dd1cb36a4/2-95_196-238_259-287; #=GS A0A0Q5QYH2/2-95_196-238_259-287 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingomonas; Sphingomonas sp. Leaf357; #=GS A0A0Q5QYH2/2-95_196-238_259-287 DR EC; 2.1.1.199; #=GS L1Q6F8/5-108_216-258_279-308 AC L1Q6F8 #=GS L1Q6F8/5-108_216-258_279-308 OS Brevundimonas diminuta 470-4 #=GS L1Q6F8/5-108_216-258_279-308 DE Ribosomal RNA small subunit methyltransferase H #=GS L1Q6F8/5-108_216-258_279-308 DR GENE3D; 7f51125fb2f1f440f4135d6fab0b5686/5-108_216-258_279-308; #=GS L1Q6F8/5-108_216-258_279-308 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Caulobacterales; Caulobacteraceae; Brevundimonas; Brevundimonas diminuta; #=GS L1Q6F8/5-108_216-258_279-308 DR EC; 2.1.1.199; #=GS V4PGB9/6-109_213-255_276-305 AC V4PGB9 #=GS V4PGB9/6-109_213-255_276-305 OS Asticcacaulis sp. AC466 #=GS V4PGB9/6-109_213-255_276-305 DE Ribosomal RNA small subunit methyltransferase H #=GS V4PGB9/6-109_213-255_276-305 DR GENE3D; 81e9b9bbfe3f13dd980048753035cc26/6-109_213-255_276-305; #=GS V4PGB9/6-109_213-255_276-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Caulobacterales; Caulobacteraceae; Asticcacaulis; Asticcacaulis sp. AC466; #=GS V4PGB9/6-109_213-255_276-305 DR EC; 2.1.1.199; #=GS A0A0C4YE03/2-99_207-253_274-303 AC A0A0C4YE03 #=GS A0A0C4YE03/2-99_207-253_274-303 OS Cupriavidus basilensis #=GS A0A0C4YE03/2-99_207-253_274-303 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0C4YE03/2-99_207-253_274-303 DR GENE3D; 8325915b1aa16d48d6c015af3242d282/2-99_207-253_274-303; #=GS A0A0C4YE03/2-99_207-253_274-303 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Cupriavidus; Cupriavidus basilensis; #=GS A0A0C4YE03/2-99_207-253_274-303 DR EC; 2.1.1.199; #=GS A0A069I224/17-115_223-269_290-319 AC A0A069I224 #=GS A0A069I224/17-115_223-269_290-319 OS Cupriavidus sp. SK-3 #=GS A0A069I224/17-115_223-269_290-319 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A069I224/17-115_223-269_290-319 DR GENE3D; 884fc39bb3cbe6ded2ed5598c125e366/17-115_223-269_290-319; #=GS A0A069I224/17-115_223-269_290-319 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Cupriavidus; Cupriavidus sp. SK-3; #=GS A0A069I224/17-115_223-269_290-319 DR EC; 2.1.1.199; #=GS A0A1F8C374/4-106_200-268 AC A0A1F8C374 #=GS A0A1F8C374/4-106_200-268 OS Candidatus Woesebacteria bacterium RIFCSPLOWO2_01_FULL_44_14 #=GS A0A1F8C374/4-106_200-268 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1F8C374/4-106_200-268 DR GENE3D; 8964f11a0380ba3a03a208fe75e29aa2/4-106_200-268; #=GS A0A1F8C374/4-106_200-268 DR ORG; Bacteria; Candidatus Woesebacteria; Candidatus Woesebacteria bacterium RIFCSPLOWO2_01_FULL_44_14; #=GS A0A1F8C374/4-106_200-268 DR EC; 2.1.1.199; #=GS A0A0F3LLY9/10-113_217-259_280-309 AC A0A0F3LLY9 #=GS A0A0F3LLY9/10-113_217-259_280-309 OS Brevundimonas sp. KM4 #=GS A0A0F3LLY9/10-113_217-259_280-309 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0F3LLY9/10-113_217-259_280-309 DR GENE3D; 8b4b8d26a6151b69f1db8312f0800a9d/10-113_217-259_280-309; #=GS A0A0F3LLY9/10-113_217-259_280-309 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Caulobacterales; Caulobacteraceae; Brevundimonas; Brevundimonas sp. KM4; #=GS A0A0F3LLY9/10-113_217-259_280-309 DR EC; 2.1.1.199; #=GS G0EX94/17-115_223-269_290-319 AC G0EX94 #=GS G0EX94/17-115_223-269_290-319 OS Cupriavidus necator N-1 #=GS G0EX94/17-115_223-269_290-319 DE Ribosomal RNA small subunit methyltransferase H #=GS G0EX94/17-115_223-269_290-319 DR GENE3D; 8fd1d5732cf3cd5a69dd2cde223c7a9b/17-115_223-269_290-319; #=GS G0EX94/17-115_223-269_290-319 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Cupriavidus; Cupriavidus necator; #=GS G0EX94/17-115_223-269_290-319 DR EC; 2.1.1.199; #=GS A0A0A7PI91/10-113_214-256_277-305 AC A0A0A7PI91 #=GS A0A0A7PI91/10-113_214-256_277-305 OS Sphingopyxis fribergensis #=GS A0A0A7PI91/10-113_214-256_277-305 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0A7PI91/10-113_214-256_277-305 DR GENE3D; 92b024d9dc5ef500f61d62bafcbfd620/10-113_214-256_277-305; #=GS A0A0A7PI91/10-113_214-256_277-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingopyxis; Sphingopyxis fribergensis; #=GS A0A0A7PI91/10-113_214-256_277-305 DR EC; 2.1.1.199; #=GS Q1LIL8/17-115_223-269_290-319 AC Q1LIL8 #=GS Q1LIL8/17-115_223-269_290-319 OS Cupriavidus metallidurans CH34 #=GS Q1LIL8/17-115_223-269_290-319 DE Ribosomal RNA small subunit methyltransferase H #=GS Q1LIL8/17-115_223-269_290-319 DR GENE3D; 9406794356d37b6c3291c9507c2220a6/17-115_223-269_290-319; #=GS Q1LIL8/17-115_223-269_290-319 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Cupriavidus; Cupriavidus metallidurans; #=GS Q1LIL8/17-115_223-269_290-319 DR EC; 2.1.1.199; #=GS A0A132H927/17-115_223-269_290-319 AC A0A132H927 #=GS A0A132H927/17-115_223-269_290-319 OS Cupriavidus metallidurans #=GS A0A132H927/17-115_223-269_290-319 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A132H927/17-115_223-269_290-319 DR GENE3D; 9406794356d37b6c3291c9507c2220a6/17-115_223-269_290-319; #=GS A0A132H927/17-115_223-269_290-319 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Cupriavidus; Cupriavidus metallidurans; #=GS A0A132H927/17-115_223-269_290-319 DR EC; 2.1.1.199; #=GS F4QHS9/7-110_214-256_277-306 AC F4QHS9 #=GS F4QHS9/7-110_214-256_277-306 OS Asticcacaulis biprosthecum C19 #=GS F4QHS9/7-110_214-256_277-306 DE Ribosomal RNA small subunit methyltransferase H #=GS F4QHS9/7-110_214-256_277-306 DR GENE3D; 942f807046c9f923fddb826003849616/7-110_214-256_277-306; #=GS F4QHS9/7-110_214-256_277-306 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Caulobacterales; Caulobacteraceae; Asticcacaulis; Asticcacaulis biprosthecium; #=GS F4QHS9/7-110_214-256_277-306 DR EC; 2.1.1.199; #=GS V2KB12/17-114_222-268_289-318 AC V2KB12 #=GS V2KB12/17-114_222-268_289-318 OS Cupriavidus sp. HPC(L) #=GS V2KB12/17-114_222-268_289-318 DE Ribosomal RNA small subunit methyltransferase H #=GS V2KB12/17-114_222-268_289-318 DR GENE3D; 96be713b6870e5a7ae7a8a964f54bc8d/17-114_222-268_289-318; #=GS V2KB12/17-114_222-268_289-318 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Cupriavidus; Cupriavidus sp. HPC(L); #=GS V2KB12/17-114_222-268_289-318 DR EC; 2.1.1.199; #=GS D7CY79/10-112_215-289 AC D7CY79 #=GS D7CY79/10-112_215-289 OS Truepera radiovictrix DSM 17093 #=GS D7CY79/10-112_215-289 DE Ribosomal RNA small subunit methyltransferase H #=GS D7CY79/10-112_215-289 DR GENE3D; 9a5e01f6f7116e9ca9a94b6f72d33be2/10-112_215-289; #=GS D7CY79/10-112_215-289 DR ORG; Bacteria; Deinococcus-Thermus; Deinococci; Deinococcales; Trueperaceae; Truepera; Truepera radiovictrix; #=GS D7CY79/10-112_215-289 DR EC; 2.1.1.199; #=GS S9RRS6/14-114_222-268_289-318 AC S9RRS6 #=GS S9RRS6/14-114_222-268_289-318 OS Ralstonia sp. AU12-08 #=GS S9RRS6/14-114_222-268_289-318 DE Ribosomal RNA small subunit methyltransferase H #=GS S9RRS6/14-114_222-268_289-318 DR GENE3D; 9af2b4e5212599023d430cda3e9c36ce/14-114_222-268_289-318; #=GS S9RRS6/14-114_222-268_289-318 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Ralstonia; Ralstonia sp. AU12-08; #=GS S9RRS6/14-114_222-268_289-318 DR EC; 2.1.1.199; #=GS A0A124BSP0/14-114_222-268_289-318 AC A0A124BSP0 #=GS A0A124BSP0/14-114_222-268_289-318 OS Ralstonia sp. NT80 #=GS A0A124BSP0/14-114_222-268_289-318 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A124BSP0/14-114_222-268_289-318 DR GENE3D; 9af2b4e5212599023d430cda3e9c36ce/14-114_222-268_289-318; #=GS A0A124BSP0/14-114_222-268_289-318 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Ralstonia; Ralstonia sp. NT80; #=GS A0A124BSP0/14-114_222-268_289-318 DR EC; 2.1.1.199; #=GS A0A0Q5MKI8/10-113_217-259_280-309 AC A0A0Q5MKI8 #=GS A0A0Q5MKI8/10-113_217-259_280-309 OS Brevundimonas sp. Leaf168 #=GS A0A0Q5MKI8/10-113_217-259_280-309 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q5MKI8/10-113_217-259_280-309 DR GENE3D; 9c870cefed94bd11c97cadef17776e7b/10-113_217-259_280-309; #=GS A0A0Q5MKI8/10-113_217-259_280-309 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Caulobacterales; Caulobacteraceae; Brevundimonas; Brevundimonas sp. Leaf168; #=GS A0A0Q5MKI8/10-113_217-259_280-309 DR EC; 2.1.1.199; #=GS A5VDD4/7-110_211-253_274-303 AC A5VDD4 #=GS A5VDD4/7-110_211-253_274-303 OS Sphingomonas wittichii RW1 #=GS A5VDD4/7-110_211-253_274-303 DE Ribosomal RNA small subunit methyltransferase H #=GS A5VDD4/7-110_211-253_274-303 DR GENE3D; 9ec531e71479076e63c730b272a6ab15/7-110_211-253_274-303; #=GS A5VDD4/7-110_211-253_274-303 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingomonas; Sphingomonas wittichii; #=GS A5VDD4/7-110_211-253_274-303 DR EC; 2.1.1.199; #=GS A0A1G2WD65/6-103_207-249_270-299 AC A0A1G2WD65 #=GS A0A1G2WD65/6-103_207-249_270-299 OS Phenylobacterium sp. RIFCSPHIGHO2_01_FULL_69_31 #=GS A0A1G2WD65/6-103_207-249_270-299 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1G2WD65/6-103_207-249_270-299 DR GENE3D; a070fd343a984033925fcccee3f281ff/6-103_207-249_270-299; #=GS A0A1G2WD65/6-103_207-249_270-299 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Caulobacterales; Caulobacteraceae; Phenylobacterium; Phenylobacterium sp. RIFCSPHIGHO2_01_FULL_69_31; #=GS A0A1G2WD65/6-103_207-249_270-299 DR EC; 2.1.1.199; #=GS V4ND13/6-109_213-255_276-305 AC V4ND13 #=GS V4ND13/6-109_213-255_276-305 OS Asticcacaulis sp. YBE204 #=GS V4ND13/6-109_213-255_276-305 DE Ribosomal RNA small subunit methyltransferase H #=GS V4ND13/6-109_213-255_276-305 DR GENE3D; a81ae5fb97e849217c16d61d6f2d07df/6-109_213-255_276-305; #=GS V4ND13/6-109_213-255_276-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Caulobacterales; Caulobacteraceae; Asticcacaulis; Asticcacaulis sp. YBE204; #=GS V4ND13/6-109_213-255_276-305 DR EC; 2.1.1.199; #=GS A0A192A086/14-114_222-268_289-318 AC A0A192A086 #=GS A0A192A086/14-114_222-268_289-318 OS Ralstonia insidiosa #=GS A0A192A086/14-114_222-268_289-318 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A192A086/14-114_222-268_289-318 DR GENE3D; ae871d29882b75b22098beee746928fa/14-114_222-268_289-318; #=GS A0A192A086/14-114_222-268_289-318 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Ralstonia; Ralstonia insidiosa; #=GS A0A192A086/14-114_222-268_289-318 DR EC; 2.1.1.199; #=GS H5WEK8/14-114_222-268_289-318 AC H5WEK8 #=GS H5WEK8/14-114_222-268_289-318 OS Ralstonia solanacearum K60-1 #=GS H5WEK8/14-114_222-268_289-318 DE Ribosomal RNA small subunit methyltransferase H #=GS H5WEK8/14-114_222-268_289-318 DR GENE3D; af70adfedd34a7b483334484e3df63f7/14-114_222-268_289-318; #=GS H5WEK8/14-114_222-268_289-318 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Ralstonia; Ralstonia solanacearum; #=GS H5WEK8/14-114_222-268_289-318 DR EC; 2.1.1.199; #=GS A0A0B4CX50/10-113_217-259_280-309 AC A0A0B4CX50 #=GS A0A0B4CX50/10-113_217-259_280-309 OS Brevundimonas nasdae #=GS A0A0B4CX50/10-113_217-259_280-309 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0B4CX50/10-113_217-259_280-309 DR GENE3D; afe85597b76de9f90775fdb3b20f8d83/10-113_217-259_280-309; #=GS A0A0B4CX50/10-113_217-259_280-309 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Caulobacterales; Caulobacteraceae; Brevundimonas; Brevundimonas nasdae; #=GS A0A0B4CX50/10-113_217-259_280-309 DR EC; 2.1.1.199; #=GS D8NXV9/14-114_222-268_289-318 AC D8NXV9 #=GS D8NXV9/14-114_222-268_289-318 OS Ralstonia solanacearum PSI07 #=GS D8NXV9/14-114_222-268_289-318 DE Ribosomal RNA small subunit methyltransferase H #=GS D8NXV9/14-114_222-268_289-318 DR GENE3D; b4b08fde22070abab837254f570064e2/14-114_222-268_289-318; #=GS D8NXV9/14-114_222-268_289-318 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Ralstonia; Ralstonia solanacearum; #=GS D8NXV9/14-114_222-268_289-318 DR EC; 2.1.1.199; #=GS G2ZR03/14-114_222-268_289-318 AC G2ZR03 #=GS G2ZR03/14-114_222-268_289-318 OS blood disease bacterium R229 #=GS G2ZR03/14-114_222-268_289-318 DE Ribosomal RNA small subunit methyltransferase H #=GS G2ZR03/14-114_222-268_289-318 DR GENE3D; b4b08fde22070abab837254f570064e2/14-114_222-268_289-318; #=GS G2ZR03/14-114_222-268_289-318 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Ralstonia; blood disease bacterium R229; #=GS G2ZR03/14-114_222-268_289-318 DR EC; 2.1.1.199; #=GS L2EB69/17-115_223-269_290-319 AC L2EB69 #=GS L2EB69/17-115_223-269_290-319 OS Cupriavidus sp. HMR-1 #=GS L2EB69/17-115_223-269_290-319 DE Ribosomal RNA small subunit methyltransferase H #=GS L2EB69/17-115_223-269_290-319 DR GENE3D; b84014027b7167ad64f8ca3d7826e869/17-115_223-269_290-319; #=GS L2EB69/17-115_223-269_290-319 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Cupriavidus; Cupriavidus sp. HMR-1; #=GS L2EB69/17-115_223-269_290-319 DR EC; 2.1.1.199; #=GS A0A0Q8MJT4/5-101_205-247_268-296 AC A0A0Q8MJT4 #=GS A0A0Q8MJT4/5-101_205-247_268-296 OS Phenylobacterium sp. Root700 #=GS A0A0Q8MJT4/5-101_205-247_268-296 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q8MJT4/5-101_205-247_268-296 DR GENE3D; b8b9c226c895207eb1930dea9deedb13/5-101_205-247_268-296; #=GS A0A0Q8MJT4/5-101_205-247_268-296 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Caulobacterales; Caulobacteraceae; Phenylobacterium; Phenylobacterium sp. Root700; #=GS A0A0Q8MJT4/5-101_205-247_268-296 DR EC; 2.1.1.199; #=GS A0A172Y2Y0/5-108_212-254_275-304 AC A0A172Y2Y0 #=GS A0A172Y2Y0/5-108_212-254_275-304 OS Brevundimonas naejangsanensis #=GS A0A172Y2Y0/5-108_212-254_275-304 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A172Y2Y0/5-108_212-254_275-304 DR GENE3D; b91bbd448873457b4aa76d38063eb9c1/5-108_212-254_275-304; #=GS A0A172Y2Y0/5-108_212-254_275-304 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Caulobacterales; Caulobacteraceae; Brevundimonas; Brevundimonas naejangsanensis; #=GS A0A172Y2Y0/5-108_212-254_275-304 DR EC; 2.1.1.199; #=GS A0A0F5PE77/7-110_211-253_274-303 AC A0A0F5PE77 #=GS A0A0F5PE77/7-110_211-253_274-303 OS Sphingomonas sp. SRS2 #=GS A0A0F5PE77/7-110_211-253_274-303 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0F5PE77/7-110_211-253_274-303 DR GENE3D; c1c88c40630fe0708e1a4168a554a9d9/7-110_211-253_274-303; #=GS A0A0F5PE77/7-110_211-253_274-303 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingomonas; Sphingomonas sp. SRS2; #=GS A0A0F5PE77/7-110_211-253_274-303 DR EC; 2.1.1.199; #=GS A0A095DFR3/14-117_218-260_281-309 AC A0A095DFR3 #=GS A0A095DFR3/14-117_218-260_281-309 OS Sphingopyxis sp. LC363 #=GS A0A095DFR3/14-117_218-260_281-309 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A095DFR3/14-117_218-260_281-309 DR GENE3D; c6d71ec88af3a74391bd92cd47d8bee9/14-117_218-260_281-309; #=GS A0A095DFR3/14-117_218-260_281-309 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingopyxis; Sphingopyxis sp. LC363; #=GS A0A095DFR3/14-117_218-260_281-309 DR EC; 2.1.1.199; #=GS E8LKU7/8-109_213-259_281-311 AC E8LKU7 #=GS E8LKU7/8-109_213-259_281-311 OS Succinatimonas hippei YIT 12066 #=GS E8LKU7/8-109_213-259_281-311 DE Ribosomal RNA small subunit methyltransferase H #=GS E8LKU7/8-109_213-259_281-311 DR GENE3D; c74f4a5d8e98df8097564a8b287ac5dd/8-109_213-259_281-311; #=GS E8LKU7/8-109_213-259_281-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Aeromonadales; Succinivibrionaceae; Succinatimonas; Succinatimonas hippei; #=GS E8LKU7/8-109_213-259_281-311 DR EC; 2.1.1.199; #=GS A0A0S4TXA0/14-114_222-268_289-318 AC A0A0S4TXA0 #=GS A0A0S4TXA0/14-114_222-268_289-318 OS Ralstonia solanacearum #=GS A0A0S4TXA0/14-114_222-268_289-318 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0S4TXA0/14-114_222-268_289-318 DR GENE3D; c9d3586ddbfb0c395d47087288d18bc8/14-114_222-268_289-318; #=GS A0A0S4TXA0/14-114_222-268_289-318 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Ralstonia; Ralstonia solanacearum; #=GS A0A0S4TXA0/14-114_222-268_289-318 DR EC; 2.1.1.199; #=GS M4RYN4/10-113_214-256_277-306 AC M4RYN4 #=GS M4RYN4/10-113_214-256_277-306 OS Sphingomonas sp. MM-1 #=GS M4RYN4/10-113_214-256_277-306 DE Ribosomal RNA small subunit methyltransferase H #=GS M4RYN4/10-113_214-256_277-306 DR GENE3D; ca98e0127552e1dd2433538f57e50501/10-113_214-256_277-306; #=GS M4RYN4/10-113_214-256_277-306 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingomonas; Sphingomonas sp. MM-1; #=GS M4RYN4/10-113_214-256_277-306 DR EC; 2.1.1.199; #=GS G3A1R5/14-114_222-268_289-318 AC G3A1R5 #=GS G3A1R5/14-114_222-268_289-318 OS Ralstonia syzygii R24 #=GS G3A1R5/14-114_222-268_289-318 DE Ribosomal RNA small subunit methyltransferase H #=GS G3A1R5/14-114_222-268_289-318 DR GENE3D; ceebea9d41b62cfcea74cc980f2d4388/14-114_222-268_289-318; #=GS G3A1R5/14-114_222-268_289-318 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Ralstonia; Ralstonia syzygii; #=GS G3A1R5/14-114_222-268_289-318 DR EC; 2.1.1.199; #=GS A0A127RY51/14-114_222-268_289-318 AC A0A127RY51 #=GS A0A127RY51/14-114_222-268_289-318 OS Ralstonia solanacearum #=GS A0A127RY51/14-114_222-268_289-318 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A127RY51/14-114_222-268_289-318 DR GENE3D; ceebea9d41b62cfcea74cc980f2d4388/14-114_222-268_289-318; #=GS A0A127RY51/14-114_222-268_289-318 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Ralstonia; Ralstonia solanacearum; #=GS A0A127RY51/14-114_222-268_289-318 DR EC; 2.1.1.199; #=GS A0A1F8IL43/6-109_213-255_276-305 AC A0A1F8IL43 #=GS A0A1F8IL43/6-109_213-255_276-305 OS Caulobacterales bacterium RIFCSPHIGHO2_01_FULL_67_30 #=GS A0A1F8IL43/6-109_213-255_276-305 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1F8IL43/6-109_213-255_276-305 DR GENE3D; cf14acfa93d62aeb7a8bb1848daacb38/6-109_213-255_276-305; #=GS A0A1F8IL43/6-109_213-255_276-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Caulobacterales; Caulobacterales bacterium RIFCSPHIGHO2_01_FULL_67_30; #=GS A0A1F8IL43/6-109_213-255_276-305 DR EC; 2.1.1.199; #=GS A0A022FS45/17-115_223-269_290-319 AC A0A022FS45 #=GS A0A022FS45/17-115_223-269_290-319 OS Cupriavidus sp. SK-4 #=GS A0A022FS45/17-115_223-269_290-319 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A022FS45/17-115_223-269_290-319 DR GENE3D; d18e93bd3ad45b0afbaa2bfb72ebd162/17-115_223-269_290-319; #=GS A0A022FS45/17-115_223-269_290-319 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Cupriavidus; Cupriavidus sp. SK-4; #=GS A0A022FS45/17-115_223-269_290-319 DR EC; 2.1.1.199; #=GS A0A1G3KXG4/14-117_218-260_281-309 AC A0A1G3KXG4 #=GS A0A1G3KXG4/14-117_218-260_281-309 OS Sphingopyxis sp. RIFCSPHIGHO2_12_FULL_65_19 #=GS A0A1G3KXG4/14-117_218-260_281-309 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1G3KXG4/14-117_218-260_281-309 DR GENE3D; d43adadb7d18ca146fda9e829e3ae5b6/14-117_218-260_281-309; #=GS A0A1G3KXG4/14-117_218-260_281-309 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingopyxis; Sphingopyxis sp. RIFCSPHIGHO2_12_FULL_65_19; #=GS A0A1G3KXG4/14-117_218-260_281-309 DR EC; 2.1.1.199; #=GS A0A0B1XW18/14-114_222-268_289-318 AC A0A0B1XW18 #=GS A0A0B1XW18/14-114_222-268_289-318 OS Ralstonia sp. A12 #=GS A0A0B1XW18/14-114_222-268_289-318 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0B1XW18/14-114_222-268_289-318 DR GENE3D; d59539e8861f4ca81418f579feafddf5/14-114_222-268_289-318; #=GS A0A0B1XW18/14-114_222-268_289-318 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Ralstonia; Ralstonia sp. A12; #=GS A0A0B1XW18/14-114_222-268_289-318 DR EC; 2.1.1.199; #=GS W0A4E5/12-115_216-258_279-308 AC W0A4E5 #=GS W0A4E5/12-115_216-258_279-308 OS Sphingomonas sanxanigenens DSM 19645 = NX02 #=GS W0A4E5/12-115_216-258_279-308 DE Ribosomal RNA small subunit methyltransferase H #=GS W0A4E5/12-115_216-258_279-308 DR GENE3D; d5e1028b32a508b1f9bad5aaf9ec7b86/12-115_216-258_279-308; #=GS W0A4E5/12-115_216-258_279-308 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingomonas; Sphingomonas sanxanigenens; #=GS W0A4E5/12-115_216-258_279-308 DR EC; 2.1.1.199; #=GS A0A142VVQ8/14-117_218-260_281-309 AC A0A142VVQ8 #=GS A0A142VVQ8/14-117_218-260_281-309 OS Sphingopyxis terrae NBRC 15098 #=GS A0A142VVQ8/14-117_218-260_281-309 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A142VVQ8/14-117_218-260_281-309 DR GENE3D; d60e42f10e262f04daa387871973448e/14-117_218-260_281-309; #=GS A0A142VVQ8/14-117_218-260_281-309 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingopyxis; Sphingopyxis terrae; #=GS A0A142VVQ8/14-117_218-260_281-309 DR EC; 2.1.1.199; #=GS E8RRY5/6-109_213-255_276-305 AC E8RRY5 #=GS E8RRY5/6-109_213-255_276-305 OS Asticcacaulis excentricus CB 48 #=GS E8RRY5/6-109_213-255_276-305 DE Ribosomal RNA small subunit methyltransferase H #=GS E8RRY5/6-109_213-255_276-305 DR GENE3D; d719fa3a756dd579e9000260b0b85a27/6-109_213-255_276-305; #=GS E8RRY5/6-109_213-255_276-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Caulobacterales; Caulobacteraceae; Asticcacaulis; Asticcacaulis excentricus; #=GS E8RRY5/6-109_213-255_276-305 DR EC; 2.1.1.199; #=GS A0A168N462/10-113_217-259_280-309 AC A0A168N462 #=GS A0A168N462/10-113_217-259_280-309 OS Brevundimonas sp. GW460-12-10-14-LB2 #=GS A0A168N462/10-113_217-259_280-309 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A168N462/10-113_217-259_280-309 DR GENE3D; d8c09de8b07e3b29547ae0cebcb710c7/10-113_217-259_280-309; #=GS A0A168N462/10-113_217-259_280-309 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Caulobacterales; Caulobacteraceae; Brevundimonas; Brevundimonas sp. GW460-12-10-14-LB2; #=GS A0A168N462/10-113_217-259_280-309 DR EC; 2.1.1.199; #=GS A0A0M5IJF4/10-113_214-256_277-305 AC A0A0M5IJF4 #=GS A0A0M5IJF4/10-113_214-256_277-305 OS Sphingopyxis sp. 113P3 #=GS A0A0M5IJF4/10-113_214-256_277-305 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0M5IJF4/10-113_214-256_277-305 DR GENE3D; d9eabfc75de939098480fcd3a2cb411a/10-113_214-256_277-305; #=GS A0A0M5IJF4/10-113_214-256_277-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingopyxis; Sphingopyxis sp. 113P3; #=GS A0A0M5IJF4/10-113_214-256_277-305 DR EC; 2.1.1.199; #=GS B3R6W7/17-115_223-269_290-319 AC B3R6W7 #=GS B3R6W7/17-115_223-269_290-319 OS Cupriavidus taiwanensis LMG 19424 #=GS B3R6W7/17-115_223-269_290-319 DE Ribosomal RNA small subunit methyltransferase H #=GS B3R6W7/17-115_223-269_290-319 DR GENE3D; daf8a136ab928e0435f38413cde5eb21/17-115_223-269_290-319; #=GS B3R6W7/17-115_223-269_290-319 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Cupriavidus; Cupriavidus taiwanensis; #=GS B3R6W7/17-115_223-269_290-319 DR EC; 2.1.1.199; #=GS A0A1F8I5T7/4-107_211-253_274-303 AC A0A1F8I5T7 #=GS A0A1F8I5T7/4-107_211-253_274-303 OS Caulobacterales bacterium RIFCSPHIGHO2_01_FULL_70_19 #=GS A0A1F8I5T7/4-107_211-253_274-303 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1F8I5T7/4-107_211-253_274-303 DR GENE3D; db07e8196ea4638e3227e4d28d4cbad6/4-107_211-253_274-303; #=GS A0A1F8I5T7/4-107_211-253_274-303 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Caulobacterales; Caulobacterales bacterium RIFCSPHIGHO2_01_FULL_70_19; #=GS A0A1F8I5T7/4-107_211-253_274-303 DR EC; 2.1.1.199; #=GS A0A0W1F3K5/14-117_218-260_281-309 AC A0A0W1F3K5 #=GS A0A0W1F3K5/14-117_218-260_281-309 OS Sphingopyxis sp. H038 #=GS A0A0W1F3K5/14-117_218-260_281-309 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0W1F3K5/14-117_218-260_281-309 DR GENE3D; df8158816b59b647f33988d24438f11c/14-117_218-260_281-309; #=GS A0A0W1F3K5/14-117_218-260_281-309 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingopyxis; Sphingopyxis sp. H038; #=GS A0A0W1F3K5/14-117_218-260_281-309 DR EC; 2.1.1.199; #=GS A0A0N1BLM2/5-108_212-254_275-304 AC A0A0N1BLM2 #=GS A0A0N1BLM2/5-108_212-254_275-304 OS Brevundimonas sp. AAP58 #=GS A0A0N1BLM2/5-108_212-254_275-304 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0N1BLM2/5-108_212-254_275-304 DR GENE3D; e036bbcf6f899379a5cf0f4db7219da9/5-108_212-254_275-304; #=GS A0A0N1BLM2/5-108_212-254_275-304 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Caulobacterales; Caulobacteraceae; Brevundimonas; Brevundimonas sp. AAP58; #=GS A0A0N1BLM2/5-108_212-254_275-304 DR EC; 2.1.1.199; #=GS M2U2D3/11-112_213-255_276-305 AC M2U2D3 #=GS M2U2D3/11-112_213-255_276-305 OS Pacificimonas flava #=GS M2U2D3/11-112_213-255_276-305 DE Ribosomal RNA small subunit methyltransferase H #=GS M2U2D3/11-112_213-255_276-305 DR GENE3D; e53ad16ac1ee98dce0291b0ddb3ef506/11-112_213-255_276-305; #=GS M2U2D3/11-112_213-255_276-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Pacificimonas; Pacificimonas flava; #=GS M2U2D3/11-112_213-255_276-305 DR EC; 2.1.1.199; #=GS A0A1F8I6M1/6-109_213-255_276-305 AC A0A1F8I6M1 #=GS A0A1F8I6M1/6-109_213-255_276-305 OS Caulobacterales bacterium GWE1_67_11 #=GS A0A1F8I6M1/6-109_213-255_276-305 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1F8I6M1/6-109_213-255_276-305 DR GENE3D; e59afc7dbcac54907b79c092b8096962/6-109_213-255_276-305; #=GS A0A1F8I6M1/6-109_213-255_276-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Caulobacterales; Caulobacterales bacterium GWE1_67_11; #=GS A0A1F8I6M1/6-109_213-255_276-305 DR EC; 2.1.1.199; #=GS A0A069IWN3/6-109_213-255_276-305 AC A0A069IWN3 #=GS A0A069IWN3/6-109_213-255_276-305 OS Brevundimonas sp. EAKA #=GS A0A069IWN3/6-109_213-255_276-305 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A069IWN3/6-109_213-255_276-305 DR GENE3D; e59afc7dbcac54907b79c092b8096962/6-109_213-255_276-305; #=GS A0A069IWN3/6-109_213-255_276-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Caulobacterales; Caulobacteraceae; Brevundimonas; Brevundimonas sp. EAKA; #=GS A0A069IWN3/6-109_213-255_276-305 DR EC; 2.1.1.199; #=GS A0A1B6ZBU4/6-106_207-249_270-299 AC A0A1B6ZBU4 #=GS A0A1B6ZBU4/6-106_207-249_270-299 OS Sphingomonadales bacterium EhC05 #=GS A0A1B6ZBU4/6-106_207-249_270-299 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1B6ZBU4/6-106_207-249_270-299 DR GENE3D; e59bbcb521de337626b80cc4dba572b8/6-106_207-249_270-299; #=GS A0A1B6ZBU4/6-106_207-249_270-299 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadales bacterium EhC05; #=GS A0A1B6ZBU4/6-106_207-249_270-299 DR EC; 2.1.1.199; #=GS D8NNL2/14-114_222-268_289-318 AC D8NNL2 #=GS D8NNL2/14-114_222-268_289-318 OS Ralstonia solanacearum CFBP2957 #=GS D8NNL2/14-114_222-268_289-318 DE Ribosomal RNA small subunit methyltransferase H #=GS D8NNL2/14-114_222-268_289-318 DR GENE3D; e8ffe3fd4186f156d95fda292b50eaf5/14-114_222-268_289-318; #=GS D8NNL2/14-114_222-268_289-318 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Ralstonia; Ralstonia solanacearum; #=GS D8NNL2/14-114_222-268_289-318 DR EC; 2.1.1.199; #=GS A0A177RT87/14-114_222-268_289-318 AC A0A177RT87 #=GS A0A177RT87/14-114_222-268_289-318 OS Ralstonia solanacearum #=GS A0A177RT87/14-114_222-268_289-318 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A177RT87/14-114_222-268_289-318 DR GENE3D; e8ffe3fd4186f156d95fda292b50eaf5/14-114_222-268_289-318; #=GS A0A177RT87/14-114_222-268_289-318 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Ralstonia; Ralstonia solanacearum; #=GS A0A177RT87/14-114_222-268_289-318 DR EC; 2.1.1.199; #=GS A0A0S4VUK5/14-114_222-268_289-318 AC A0A0S4VUK5 #=GS A0A0S4VUK5/14-114_222-268_289-318 OS Ralstonia solanacearum #=GS A0A0S4VUK5/14-114_222-268_289-318 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0S4VUK5/14-114_222-268_289-318 DR GENE3D; ea5ab0d27b0ebc441fbbef0d5612c65c/14-114_222-268_289-318; #=GS A0A0S4VUK5/14-114_222-268_289-318 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Ralstonia; Ralstonia solanacearum; #=GS A0A0S4VUK5/14-114_222-268_289-318 DR EC; 2.1.1.199; #=GS A0A1L3DAR3/14-114_222-268_289-318 AC A0A1L3DAR3 #=GS A0A1L3DAR3/14-114_222-268_289-318 OS Ralstonia solanacearum FJAT-1458 #=GS A0A1L3DAR3/14-114_222-268_289-318 DE 16S rRNA (Cytosine(1402)-N(4))-methyltransferase #=GS A0A1L3DAR3/14-114_222-268_289-318 DR GENE3D; ea5ab0d27b0ebc441fbbef0d5612c65c/14-114_222-268_289-318; #=GS A0A1L3DAR3/14-114_222-268_289-318 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Ralstonia; Ralstonia solanacearum; #=GS A0A1L3DAR3/14-114_222-268_289-318 DR EC; 2.1.1.199; #=GS M4UI43/14-114_222-268_289-318 AC M4UI43 #=GS M4UI43/14-114_222-268_289-318 OS Ralstonia solanacearum FQY_4 #=GS M4UI43/14-114_222-268_289-318 DE Ribosomal RNA small subunit methyltransferase H #=GS M4UI43/14-114_222-268_289-318 DR GENE3D; ea5ab0d27b0ebc441fbbef0d5612c65c/14-114_222-268_289-318; #=GS M4UI43/14-114_222-268_289-318 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Ralstonia; Ralstonia solanacearum; #=GS M4UI43/14-114_222-268_289-318 DR EC; 2.1.1.199; #=GS A0A1J0IK46/14-114_222-268_289-318 AC A0A1J0IK46 #=GS A0A1J0IK46/14-114_222-268_289-318 OS Ralstonia solanacearum OE1-1 #=GS A0A1J0IK46/14-114_222-268_289-318 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1J0IK46/14-114_222-268_289-318 DR GENE3D; ea5ab0d27b0ebc441fbbef0d5612c65c/14-114_222-268_289-318; #=GS A0A1J0IK46/14-114_222-268_289-318 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Ralstonia; Ralstonia solanacearum; #=GS A0A1J0IK46/14-114_222-268_289-318 DR EC; 2.1.1.199; #=GS A0A161H750/14-114_222-268_289-318 AC A0A161H750 #=GS A0A161H750/14-114_222-268_289-318 OS Ralstonia mannitolilytica #=GS A0A161H750/14-114_222-268_289-318 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A161H750/14-114_222-268_289-318 DR GENE3D; f10a19849f5d8603bbc4fcb240fe35fd/14-114_222-268_289-318; #=GS A0A161H750/14-114_222-268_289-318 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Ralstonia; Ralstonia mannitolilytica; #=GS A0A161H750/14-114_222-268_289-318 DR EC; 2.1.1.199; #=GS A0A1E4QTV8/17-115_223-269_290-318 AC A0A1E4QTV8 #=GS A0A1E4QTV8/17-115_223-269_290-318 OS Cupriavidus sp. UYMMa02A #=GS A0A1E4QTV8/17-115_223-269_290-318 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1E4QTV8/17-115_223-269_290-318 DR GENE3D; f5ded7d58af87def9e18807e594e75a7/17-115_223-269_290-318; #=GS A0A1E4QTV8/17-115_223-269_290-318 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Cupriavidus; Cupriavidus sp. UYMMa02A; #=GS A0A1E4QTV8/17-115_223-269_290-318 DR EC; 2.1.1.199; #=GS A0A0F0DNR5/14-114_222-268_289-318 AC A0A0F0DNR5 #=GS A0A0F0DNR5/14-114_222-268_289-318 OS Burkholderiaceae bacterium 26 #=GS A0A0F0DNR5/14-114_222-268_289-318 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0F0DNR5/14-114_222-268_289-318 DR GENE3D; f6e19f5d5b7d1c587a270acdf559b41b/14-114_222-268_289-318; #=GS A0A0F0DNR5/14-114_222-268_289-318 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderiaceae bacterium 26; #=GS A0A0F0DNR5/14-114_222-268_289-318 DR EC; 2.1.1.199; #=GS A0A0W1DWW0/10-113_214-256_277-305 AC A0A0W1DWW0 #=GS A0A0W1DWW0/10-113_214-256_277-305 OS Sphingopyxis sp. H050 #=GS A0A0W1DWW0/10-113_214-256_277-305 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0W1DWW0/10-113_214-256_277-305 DR GENE3D; f7c9fe0d9658d092e4b7b91be3deefcf/10-113_214-256_277-305; #=GS A0A0W1DWW0/10-113_214-256_277-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingopyxis; Sphingopyxis sp. H050; #=GS A0A0W1DWW0/10-113_214-256_277-305 DR EC; 2.1.1.199; #=GS K6XL98/10-112_216-310 AC K6XL98 #=GS K6XL98/10-112_216-310 OS Paraglaciecola arctica BSs20135 #=GS K6XL98/10-112_216-310 DE Ribosomal RNA small subunit methyltransferase H #=GS K6XL98/10-112_216-310 DR GENE3D; 00030394b25ebf356345327065dd4f95/10-112_216-310; #=GS K6XL98/10-112_216-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Alteromonadaceae; Paraglaciecola; Paraglaciecola arctica; #=GS K6XL98/10-112_216-310 DR EC; 2.1.1.199; #=GS A0A1G3IIF3/11-116_222-264_285-315 AC A0A1G3IIF3 #=GS A0A1G3IIF3/11-116_222-264_285-315 OS Rhodospirillales bacterium RIFCSPLOWO2_12_FULL_67_15 #=GS A0A1G3IIF3/11-116_222-264_285-315 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1G3IIF3/11-116_222-264_285-315 DR GENE3D; 0022ce80d70ae98ccd36c936d76f7e98/11-116_222-264_285-315; #=GS A0A1G3IIF3/11-116_222-264_285-315 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodospirillales; Rhodospirillales bacterium RIFCSPLOWO2_12_FULL_67_15; #=GS A0A1G3IIF3/11-116_222-264_285-315 DR EC; 2.1.1.199; #=GS A0A1B4WS34/12-115_219-313 AC A0A1B4WS34 #=GS A0A1B4WS34/12-115_219-313 OS Pseudomonas sp. LAB-08 #=GS A0A1B4WS34/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1B4WS34/12-115_219-313 DR GENE3D; 0024316ad21748e00f189844e59ca213/12-115_219-313; #=GS A0A1B4WS34/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. LAB-08; #=GS A0A1B4WS34/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A1F4CE57/10-110_214-306 AC A0A1F4CE57 #=GS A0A1F4CE57/10-110_214-306 OS Betaproteobacteria bacterium RIFCSPLOWO2_12_FULL_62_13b #=GS A0A1F4CE57/10-110_214-306 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1F4CE57/10-110_214-306 DR GENE3D; 00324c85a29f42b5b295a235f5a13c93/10-110_214-306; #=GS A0A1F4CE57/10-110_214-306 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Betaproteobacteria bacterium RIFCSPLOWO2_12_FULL_62_13b; #=GS A0A1F4CE57/10-110_214-306 DR EC; 2.1.1.199; #=GS F5S8L6/11-113_217-310 AC F5S8L6 #=GS F5S8L6/11-113_217-310 OS Kingella kingae ATCC 23330 #=GS F5S8L6/11-113_217-310 DE Ribosomal RNA small subunit methyltransferase H #=GS F5S8L6/11-113_217-310 DR GENE3D; 0057ed99d57b7c5f13cddda48b6c86b1/11-113_217-310; #=GS F5S8L6/11-113_217-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Neisseriales; Neisseriaceae; Kingella; Kingella kingae; #=GS F5S8L6/11-113_217-310 DR EC; 2.1.1.199; #=GS F9SHI8/10-111_219-315 AC F9SHI8 #=GS F9SHI8/10-111_219-315 OS Vibrio splendidus ATCC 33789 #=GS F9SHI8/10-111_219-315 DE Ribosomal RNA small subunit methyltransferase H #=GS F9SHI8/10-111_219-315 DR GENE3D; 0063f03c72b9255efb23bf9d37225ee1/10-111_219-315; #=GS F9SHI8/10-111_219-315 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Vibrionales; Vibrionaceae; Vibrio; Vibrio splendidus; #=GS F9SHI8/10-111_219-315 DR EC; 2.1.1.199; #=GS A0A1L9ILY9/10-111_219-315 AC A0A1L9ILY9 #=GS A0A1L9ILY9/10-111_219-315 OS Vibrio vulnificus #=GS A0A1L9ILY9/10-111_219-315 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1L9ILY9/10-111_219-315 DR GENE3D; 008d4c51b2d9dd16421dc7a67801cc4d/10-111_219-315; #=GS A0A1L9ILY9/10-111_219-315 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Vibrionales; Vibrionaceae; Vibrio; Vibrio vulnificus; #=GS A0A1L9ILY9/10-111_219-315 DR EC; 2.1.1.199; #=GS A0A1C6PEM3/10-112_217-306 AC A0A1C6PEM3 #=GS A0A1C6PEM3/10-112_217-306 OS Variovorax sp. HW608 #=GS A0A1C6PEM3/10-112_217-306 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1C6PEM3/10-112_217-306 DR GENE3D; 0096eafdb8eace38a78cd6ad98d0425b/10-112_217-306; #=GS A0A1C6PEM3/10-112_217-306 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Comamonadaceae; Variovorax; Variovorax sp. HW608; #=GS A0A1C6PEM3/10-112_217-306 DR EC; 2.1.1.199; #=GS A0A1G0K7F6/9-112_216-308 AC A0A1G0K7F6 #=GS A0A1G0K7F6/9-112_216-308 OS Gammaproteobacteria bacterium RIFCSPLOWO2_02_FULL_52_10 #=GS A0A1G0K7F6/9-112_216-308 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1G0K7F6/9-112_216-308 DR GENE3D; 00ad5ec6447348a244d51ada940e9db6/9-112_216-308; #=GS A0A1G0K7F6/9-112_216-308 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Gammaproteobacteria bacterium RIFCSPLOWO2_02_FULL_52_10; #=GS A0A1G0K7F6/9-112_216-308 DR EC; 2.1.1.199; #=GS A0A1G0K646/9-112_216-308 AC A0A1G0K646 #=GS A0A1G0K646/9-112_216-308 OS Gammaproteobacteria bacterium RIFCSPLOWO2_12_FULL_52_10 #=GS A0A1G0K646/9-112_216-308 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1G0K646/9-112_216-308 DR GENE3D; 00ad5ec6447348a244d51ada940e9db6/9-112_216-308; #=GS A0A1G0K646/9-112_216-308 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Gammaproteobacteria bacterium RIFCSPLOWO2_12_FULL_52_10; #=GS A0A1G0K646/9-112_216-308 DR EC; 2.1.1.199; #=GS A0A1G1AU21/10-110_215-308 AC A0A1G1AU21 #=GS A0A1G1AU21/10-110_215-308 OS Methylophilales bacterium RIFCSPHIGHO2_02_FULL_57_10 #=GS A0A1G1AU21/10-110_215-308 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1G1AU21/10-110_215-308 DR GENE3D; 00c922c5f163d99809fe75536161638a/10-110_215-308; #=GS A0A1G1AU21/10-110_215-308 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Methylophilales; Methylophilales bacterium RIFCSPHIGHO2_02_FULL_57_10; #=GS A0A1G1AU21/10-110_215-308 DR EC; 2.1.1.199; #=GS A0A149VSQ0/16-116_220-313 AC A0A149VSQ0 #=GS A0A149VSQ0/16-116_220-313 OS Ferrovum sp. PN-J185 #=GS A0A149VSQ0/16-116_220-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A149VSQ0/16-116_220-313 DR GENE3D; 00db164f1fdf328891443d34d59eeea9/16-116_220-313; #=GS A0A149VSQ0/16-116_220-313 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Ferrovales; Ferrovaceae; Ferrovum; Ferrovum sp. PN-J185; #=GS A0A149VSQ0/16-116_220-313 DR EC; 2.1.1.199; #=GS A0A1G0GTE3/5-109_213-309 AC A0A1G0GTE3 #=GS A0A1G0GTE3/5-109_213-309 OS Gammaproteobacteria bacterium RIFCSPHIGHO2_12_FULL_36_30 #=GS A0A1G0GTE3/5-109_213-309 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1G0GTE3/5-109_213-309 DR GENE3D; 011abda2b1b021477f47797d9ce1f7de/5-109_213-309; #=GS A0A1G0GTE3/5-109_213-309 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Gammaproteobacteria bacterium RIFCSPHIGHO2_12_FULL_36_30; #=GS A0A1G0GTE3/5-109_213-309 DR EC; 2.1.1.199; #=GS B1J1Y2/12-115_219-313 AC B1J1Y2 #=GS B1J1Y2/12-115_219-313 OS Pseudomonas putida W619 #=GS B1J1Y2/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS B1J1Y2/12-115_219-313 DR GENE3D; 0128a1ee7a5c13301dc6113ccd0336d3/12-115_219-313; #=GS B1J1Y2/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas putida group; Pseudomonas putida; #=GS B1J1Y2/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A0K1XG94/12-115_219-313 AC A0A0K1XG94 #=GS A0A0K1XG94/12-115_219-313 OS Oblitimonas alkaliphila #=GS A0A0K1XG94/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0K1XG94/12-115_219-313 DR GENE3D; 0130473dbdf800f066363cfddeb676d9/12-115_219-313; #=GS A0A0K1XG94/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Oblitimonas; Oblitimonas alkaliphila; #=GS A0A0K1XG94/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A1H6N6S4/12-115_219-313 AC A0A1H6N6S4 #=GS A0A1H6N6S4/12-115_219-313 OS Pseudomonas fuscovaginae #=GS A0A1H6N6S4/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1H6N6S4/12-115_219-313 DR GENE3D; 01684ef4c5db92b7de12e08ce9b6e1e3/12-115_219-313; #=GS A0A1H6N6S4/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas fuscovaginae; #=GS A0A1H6N6S4/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A1B9YG86/8-112_215-306 AC A0A1B9YG86 #=GS A0A1B9YG86/8-112_215-306 OS Bradyrhizobium sp. LMTR 3 #=GS A0A1B9YG86/8-112_215-306 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1B9YG86/8-112_215-306 DR GENE3D; 016e1aa0f798f1790bd9e9179244e8b8/8-112_215-306; #=GS A0A1B9YG86/8-112_215-306 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhizobiales; Bradyrhizobiaceae; Bradyrhizobium; Bradyrhizobium sp. LMTR 3; #=GS A0A1B9YG86/8-112_215-306 DR EC; 2.1.1.199; #=GS A0A059FQ49/15-118_222-314 AC A0A059FQ49 #=GS A0A059FQ49/15-118_222-314 OS Hyphomonas johnsonii MHS-2 #=GS A0A059FQ49/15-118_222-314 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A059FQ49/15-118_222-314 DR GENE3D; 016ea86649b2b7b247c29eeafd983c63/15-118_222-314; #=GS A0A059FQ49/15-118_222-314 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Hyphomonadaceae; Hyphomonas; Hyphomonas johnsonii; #=GS A0A059FQ49/15-118_222-314 DR EC; 2.1.1.199; #=GS Q31I68/15-117_221-313 AC Q31I68 #=GS Q31I68/15-117_221-313 OS Thiomicrospira crunogena XCL-2 #=GS Q31I68/15-117_221-313 DE Ribosomal RNA small subunit methyltransferase H #=GS Q31I68/15-117_221-313 DR GENE3D; 01d873d5c6f3c30e559fdf45b3c9c72e/15-117_221-313; #=GS Q31I68/15-117_221-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Thiotrichales; Piscirickettsiaceae; Thiomicrospira; Thiomicrospira crunogena; #=GS Q31I68/15-117_221-313 DR EC; 2.1.1.199; #=GS A0A1B4AYS0/10-110_218-310 AC A0A1B4AYS0 #=GS A0A1B4AYS0/10-110_218-310 OS Burkholderia oklahomensis C6786 #=GS A0A1B4AYS0/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1B4AYS0/10-110_218-310 DR GENE3D; 01ead299449bcb6f36257b5182e97bea/10-110_218-310; #=GS A0A1B4AYS0/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; pseudomallei group; Burkholderia oklahomensis; #=GS A0A1B4AYS0/10-110_218-310 DR EC; 2.1.1.199; #=GS A0A1B4AFJ8/10-110_218-310 AC A0A1B4AFJ8 #=GS A0A1B4AFJ8/10-110_218-310 OS Burkholderia oklahomensis EO147 #=GS A0A1B4AFJ8/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1B4AFJ8/10-110_218-310 DR GENE3D; 01ead299449bcb6f36257b5182e97bea/10-110_218-310; #=GS A0A1B4AFJ8/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; pseudomallei group; Burkholderia oklahomensis; #=GS A0A1B4AFJ8/10-110_218-310 DR EC; 2.1.1.199; #=GS A0A088WWB3/10-110_218-310 AC A0A088WWB3 #=GS A0A088WWB3/10-110_218-310 OS Burkholderia oklahomensis #=GS A0A088WWB3/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A088WWB3/10-110_218-310 DR GENE3D; 01ead299449bcb6f36257b5182e97bea/10-110_218-310; #=GS A0A088WWB3/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; pseudomallei group; Burkholderia oklahomensis; #=GS A0A088WWB3/10-110_218-310 DR EC; 2.1.1.199; #=GS H0BUG8/10-110_215-304 AC H0BUG8 #=GS H0BUG8/10-110_215-304 OS Acidovorax sp. NO-1 #=GS H0BUG8/10-110_215-304 DE Ribosomal RNA small subunit methyltransferase H #=GS H0BUG8/10-110_215-304 DR GENE3D; 01eaf1fc16a447a1285239617ec6ecc0/10-110_215-304; #=GS H0BUG8/10-110_215-304 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Comamonadaceae; Acidovorax; Acidovorax sp. NO-1; #=GS H0BUG8/10-110_215-304 DR EC; 2.1.1.199; #=GS A0A1E8F9P6/10-112_216-310 AC A0A1E8F9P6 #=GS A0A1E8F9P6/10-112_216-310 OS Alteromonas lipolytica #=GS A0A1E8F9P6/10-112_216-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1E8F9P6/10-112_216-310 DR GENE3D; 01eb6182a47e57bc52a0d5ad6b7978e4/10-112_216-310; #=GS A0A1E8F9P6/10-112_216-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Alteromonadaceae; Alteromonas; Alteromonas lipolytica; #=GS A0A1E8F9P6/10-112_216-310 DR EC; 2.1.1.199; #=GS A0A1J8PMR3/10-113_217-310 AC A0A1J8PMR3 #=GS A0A1J8PMR3/10-113_217-310 OS Rickettsiella grylli #=GS A0A1J8PMR3/10-113_217-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1J8PMR3/10-113_217-310 DR GENE3D; 022dc944db4fb2fefd4b27d0cf7fbba4/10-113_217-310; #=GS A0A1J8PMR3/10-113_217-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Legionellales; Coxiellaceae; Rickettsiella; Rickettsiella grylli; #=GS A0A1J8PMR3/10-113_217-310 DR EC; 2.1.1.199; #=GS A0A0J5P8H2/11-112_218-312 AC A0A0J5P8H2 #=GS A0A0J5P8H2/11-112_218-312 OS Muribacter muris #=GS A0A0J5P8H2/11-112_218-312 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0J5P8H2/11-112_218-312 DR GENE3D; 02488e9239484871b06359da298fc2c7/11-112_218-312; #=GS A0A0J5P8H2/11-112_218-312 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Muribacter; Muribacter muris; #=GS A0A0J5P8H2/11-112_218-312 DR EC; 2.1.1.199; #=GS A0A0F4QPR8/10-112_216-310 AC A0A0F4QPR8 #=GS A0A0F4QPR8/10-112_216-310 OS Pseudoalteromonas rubra #=GS A0A0F4QPR8/10-112_216-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0F4QPR8/10-112_216-310 DR GENE3D; 02748eba0784015a9940a9e5c8fe2cce/10-112_216-310; #=GS A0A0F4QPR8/10-112_216-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Pseudoalteromonadaceae; Pseudoalteromonas; Pseudoalteromonas rubra; #=GS A0A0F4QPR8/10-112_216-310 DR EC; 2.1.1.199; #=GS A0A0D0KNU7/10-113_217-311 AC A0A0D0KNU7 #=GS A0A0D0KNU7/10-113_217-311 OS Pseudomonas fulva #=GS A0A0D0KNU7/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0D0KNU7/10-113_217-311 DR GENE3D; 029d09dc6b82a21d7fe6c70fec414357/10-113_217-311; #=GS A0A0D0KNU7/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas putida group; Pseudomonas fulva; #=GS A0A0D0KNU7/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A0X3Y910/9-111_216-310 AC A0A0X3Y910 #=GS A0A0X3Y910/9-111_216-310 OS Rheinheimera sp. EpRS3 #=GS A0A0X3Y910/9-111_216-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0X3Y910/9-111_216-310 DR GENE3D; 02b40c1c48eece7c812b56c7c82773d8/9-111_216-310; #=GS A0A0X3Y910/9-111_216-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Chromatiales; Chromatiaceae; Rheinheimera; Rheinheimera sp. EpRS3; #=GS A0A0X3Y910/9-111_216-310 DR EC; 2.1.1.199; #=GS F1ZD60/10-115_216-307 AC F1ZD60 #=GS F1ZD60/10-115_216-307 OS Novosphingobium nitrogenifigens DSM 19370 #=GS F1ZD60/10-115_216-307 DE Ribosomal RNA small subunit methyltransferase H #=GS F1ZD60/10-115_216-307 DR GENE3D; 02e1123df5ae8edacff10d8a3d619438/10-115_216-307; #=GS F1ZD60/10-115_216-307 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Novosphingobium; Novosphingobium nitrogenifigens; #=GS F1ZD60/10-115_216-307 DR EC; 2.1.1.199; #=GS A0A0P9IRU2/10-113_217-311 AC A0A0P9IRU2 #=GS A0A0P9IRU2/10-113_217-311 OS Pseudomonas coronafaciens pv. atropurpurea #=GS A0A0P9IRU2/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0P9IRU2/10-113_217-311 DR GENE3D; 02eff44a2928ff325820adc4a307b899/10-113_217-311; #=GS A0A0P9IRU2/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas coronafaciens; #=GS A0A0P9IRU2/10-113_217-311 DR EC; 2.1.1.199; #=GS A4SI48/10-111_215-309 AC A4SI48 #=GS A4SI48/10-111_215-309 OS Aeromonas salmonicida subsp. salmonicida A449 #=GS A4SI48/10-111_215-309 DE Ribosomal RNA small subunit methyltransferase H #=GS A4SI48/10-111_215-309 DR GENE3D; 02f0fbf3609c1d8502a7b22f98b6473f/10-111_215-309; #=GS A4SI48/10-111_215-309 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Aeromonadales; Aeromonadaceae; Aeromonas; Aeromonas salmonicida; Aeromonas salmonicida subsp. salmonicida; #=GS A4SI48/10-111_215-309 DR EC; 2.1.1.199; #=GS A0A023E8I9/10-111_215-309 AC A0A023E8I9 #=GS A0A023E8I9/10-111_215-309 OS Aeromonas salmonicida subsp. masoucida NBRC 13784 #=GS A0A023E8I9/10-111_215-309 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A023E8I9/10-111_215-309 DR GENE3D; 02f0fbf3609c1d8502a7b22f98b6473f/10-111_215-309; #=GS A0A023E8I9/10-111_215-309 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Aeromonadales; Aeromonadaceae; Aeromonas; Aeromonas salmonicida; Aeromonas salmonicida subsp. masoucida; #=GS A0A023E8I9/10-111_215-309 DR EC; 2.1.1.199; #=GS A0A0Q6BMQ3/26-126_231-324 AC A0A0Q6BMQ3 #=GS A0A0Q6BMQ3/26-126_231-324 OS Methylophilus sp. Leaf416 #=GS A0A0Q6BMQ3/26-126_231-324 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q6BMQ3/26-126_231-324 DR GENE3D; 0336eb3c84e9be9ed72ebf6cece3b04e/26-126_231-324; #=GS A0A0Q6BMQ3/26-126_231-324 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Methylophilales; Methylophilaceae; Methylophilus; Methylophilus sp. Leaf416; #=GS A0A0Q6BMQ3/26-126_231-324 DR EC; 2.1.1.199; #=GS A0A0E3ZRA7/15-116_226-320 AC A0A0E3ZRA7 #=GS A0A0E3ZRA7/15-116_226-320 OS Pasteurella multocida subsp. multocida OH4807 #=GS A0A0E3ZRA7/15-116_226-320 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0E3ZRA7/15-116_226-320 DR GENE3D; 0363f6a1f4aa738b7a86810e22f0992e/15-116_226-320; #=GS A0A0E3ZRA7/15-116_226-320 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Pasteurella; Pasteurella multocida; Pasteurella multocida subsp. multocida; #=GS A0A0E3ZRA7/15-116_226-320 DR EC; 2.1.1.199; #=GS A0A172WLE2/12-115_219-313 AC A0A172WLE2 #=GS A0A172WLE2/12-115_219-313 OS Pseudomonas stutzeri #=GS A0A172WLE2/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A172WLE2/12-115_219-313 DR GENE3D; 037ecd477bd119efb692ac8095b67e2d/12-115_219-313; #=GS A0A172WLE2/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas stutzeri group; Pseudomonas stutzeri subgroup; Pseudomonas stutzeri; #=GS A0A172WLE2/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A1G0CU16/10-110_214-307 AC A0A1G0CU16 #=GS A0A1G0CU16/10-110_214-307 OS Gallionellales bacterium GWA2_60_18 #=GS A0A1G0CU16/10-110_214-307 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1G0CU16/10-110_214-307 DR GENE3D; 039e2ea8d885ff48ed42e1cb6384bcdb/10-110_214-307; #=GS A0A1G0CU16/10-110_214-307 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Gallionellales; Gallionellales bacterium GWA2_60_18; #=GS A0A1G0CU16/10-110_214-307 DR EC; 2.1.1.199; #=GS V4YQ94/10-106_211-300 AC V4YQ94 #=GS V4YQ94/10-106_211-300 OS Betaproteobacteria bacterium MOLA814 #=GS V4YQ94/10-106_211-300 DE Ribosomal RNA small subunit methyltransferase H #=GS V4YQ94/10-106_211-300 DR GENE3D; 03eddef1acfdafc85854f7b0397c1e0c/10-106_211-300; #=GS V4YQ94/10-106_211-300 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Betaproteobacteria bacterium MOLA814; #=GS V4YQ94/10-106_211-300 DR EC; 2.1.1.199; #=GS G3IUI4/6-110_214-307 AC G3IUI4 #=GS G3IUI4/6-110_214-307 OS Methylobacter tundripaludum SV96 #=GS G3IUI4/6-110_214-307 DE Ribosomal RNA small subunit methyltransferase H #=GS G3IUI4/6-110_214-307 DR GENE3D; 04125418da8c2bf7341283d7e6b7aadd/6-110_214-307; #=GS G3IUI4/6-110_214-307 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Methylococcales; Methylococcaceae; Methylobacter; Methylobacter tundripaludum; #=GS G3IUI4/6-110_214-307 DR EC; 2.1.1.199; #=GS A0A176IMR8/11-109_213-304 AC A0A176IMR8 #=GS A0A176IMR8/11-109_213-304 OS Oceanibulbus sp. HI0082 #=GS A0A176IMR8/11-109_213-304 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A176IMR8/11-109_213-304 DR GENE3D; 047f199db230fb2f7d6d969b42800fc9/11-109_213-304; #=GS A0A176IMR8/11-109_213-304 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Oceanibulbus; Oceanibulbus sp. HI0082; #=GS A0A176IMR8/11-109_213-304 DR EC; 2.1.1.199; #=GS A0A0G3XJG3/6-111_212-303 AC A0A0G3XJG3 #=GS A0A0G3XJG3/6-111_212-303 OS Croceicoccus naphthovorans #=GS A0A0G3XJG3/6-111_212-303 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0G3XJG3/6-111_212-303 DR GENE3D; 04916f6eb4068451f99b435b7ddf4a0a/6-111_212-303; #=GS A0A0G3XJG3/6-111_212-303 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Erythrobacteraceae; Croceicoccus; Croceicoccus naphthovorans; #=GS A0A0G3XJG3/6-111_212-303 DR EC; 2.1.1.199; #=GS A0A0A2Y944/14-115_225-319 AC A0A0A2Y944 #=GS A0A0A2Y944/14-115_225-319 OS Gallibacterium anatis IPDH697-78 #=GS A0A0A2Y944/14-115_225-319 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0A2Y944/14-115_225-319 DR GENE3D; 04cad4e897fe3dd8841829e72e4cdd62/14-115_225-319; #=GS A0A0A2Y944/14-115_225-319 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Gallibacterium; Gallibacterium anatis; #=GS A0A0A2Y944/14-115_225-319 DR EC; 2.1.1.199; #=GS A0A157L0S1/43-132_236-328 AC A0A157L0S1 #=GS A0A157L0S1/43-132_236-328 OS Bordetella ansorpii #=GS A0A157L0S1/43-132_236-328 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A157L0S1/43-132_236-328 DR GENE3D; 04e9c9c99a003e5f2595d51e16c67d02/43-132_236-328; #=GS A0A157L0S1/43-132_236-328 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Alcaligenaceae; Bordetella; Bordetella ansorpii; #=GS A0A157L0S1/43-132_236-328 DR EC; 2.1.1.199; #=GS A0A107A7X6/10-110_218-310 AC A0A107A7X6 #=GS A0A107A7X6/10-110_218-310 OS Burkholderia stagnalis #=GS A0A107A7X6/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A107A7X6/10-110_218-310 DR GENE3D; 04ea061b902f297241e85dde541941eb/10-110_218-310; #=GS A0A107A7X6/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia cepacia complex; Burkholderia stagnalis; #=GS A0A107A7X6/10-110_218-310 DR EC; 2.1.1.199; #=GS A0A1A9NKD1/19-119_224-317 AC A0A1A9NKD1 #=GS A0A1A9NKD1/19-119_224-317 OS Methylobacillus sp. MM2 #=GS A0A1A9NKD1/19-119_224-317 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1A9NKD1/19-119_224-317 DR GENE3D; 04ee6a657d31fe6a81cade3832c36ccf/19-119_224-317; #=GS A0A1A9NKD1/19-119_224-317 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Methylophilales; Methylophilaceae; Methylobacillus; Methylobacillus sp. MM2; #=GS A0A1A9NKD1/19-119_224-317 DR EC; 2.1.1.199; #=GS A0A0Q0V5F4/10-108_210-299 AC A0A0Q0V5F4 #=GS A0A0Q0V5F4/10-108_210-299 OS Loktanella sp. 1ANDIMAR09 #=GS A0A0Q0V5F4/10-108_210-299 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q0V5F4/10-108_210-299 DR GENE3D; 0503466e3b884b101f0404f13ba7d305/10-108_210-299; #=GS A0A0Q0V5F4/10-108_210-299 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Loktanella; Loktanella sp. 1ANDIMAR09; #=GS A0A0Q0V5F4/10-108_210-299 DR EC; 2.1.1.199; #=GS D6CRA4/17-117_222-316 AC D6CRA4 #=GS D6CRA4/17-117_222-316 OS Thiomonas arsenitoxydans #=GS D6CRA4/17-117_222-316 DE Ribosomal RNA small subunit methyltransferase H #=GS D6CRA4/17-117_222-316 DR GENE3D; 051fe1de1a81939fcc98bf24a41a7825/17-117_222-316; #=GS D6CRA4/17-117_222-316 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Thiomonas; Thiomonas arsenitoxydans; #=GS D6CRA4/17-117_222-316 DR EC; 2.1.1.199; #=GS A0A160SLH6/17-117_222-316 AC A0A160SLH6 #=GS A0A160SLH6/17-117_222-316 OS Thiomonas sp. ACO7 #=GS A0A160SLH6/17-117_222-316 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A160SLH6/17-117_222-316 DR GENE3D; 051fe1de1a81939fcc98bf24a41a7825/17-117_222-316; #=GS A0A160SLH6/17-117_222-316 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Thiomonas; Thiomonas sp. ACO7; #=GS A0A160SLH6/17-117_222-316 DR EC; 2.1.1.199; #=GS A0A0D7PS01/68-172_275-366 AC A0A0D7PS01 #=GS A0A0D7PS01/68-172_275-366 OS Bradyrhizobium sp. LTSP885 #=GS A0A0D7PS01/68-172_275-366 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0D7PS01/68-172_275-366 DR GENE3D; 0526f682a6be5b157dbeb26eafb6320d/68-172_275-366; #=GS A0A0D7PS01/68-172_275-366 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhizobiales; Bradyrhizobiaceae; Bradyrhizobium; Bradyrhizobium sp. LTSP885; #=GS A0A0D7PS01/68-172_275-366 DR EC; 2.1.1.199; #=GS A0A0G3GKU1/12-115_219-313 AC A0A0G3GKU1 #=GS A0A0G3GKU1/12-115_219-313 OS Pseudomonas chlororaphis #=GS A0A0G3GKU1/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0G3GKU1/12-115_219-313 DR GENE3D; 0560d667d1a8eca0c395b2466951803b/12-115_219-313; #=GS A0A0G3GKU1/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas chlororaphis group; Pseudomonas chlororaphis; #=GS A0A0G3GKU1/12-115_219-313 DR EC; 2.1.1.199; #=GS X5ESX0/1-102_206-299 AC X5ESX0 #=GS X5ESX0/1-102_206-299 OS Neisseria meningitidis #=GS X5ESX0/1-102_206-299 DE Ribosomal RNA small subunit methyltransferase H #=GS X5ESX0/1-102_206-299 DR GENE3D; 058f995129cfc9300d1f89c9e7020fa3/1-102_206-299; #=GS X5ESX0/1-102_206-299 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Neisseriales; Neisseriaceae; Neisseria; Neisseria meningitidis; #=GS X5ESX0/1-102_206-299 DR EC; 2.1.1.199; #=GS A0A178I2B8/15-116_219-308 AC A0A178I2B8 #=GS A0A178I2B8/15-116_219-308 OS Devosia sp. S37 #=GS A0A178I2B8/15-116_219-308 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A178I2B8/15-116_219-308 DR GENE3D; 05d3883f72000c675924ade3f011f230/15-116_219-308; #=GS A0A178I2B8/15-116_219-308 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhizobiales; Hyphomicrobiaceae; Devosia; Devosia sp. S37; #=GS A0A178I2B8/15-116_219-308 DR EC; 2.1.1.199; #=GS A0A1B4V1A1/9-112_216-307 AC A0A1B4V1A1 #=GS A0A1B4V1A1/9-112_216-307 OS Sulfurifustis variabilis #=GS A0A1B4V1A1/9-112_216-307 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1B4V1A1/9-112_216-307 DR GENE3D; 0623bea5b12fff117000550e532f31df/9-112_216-307; #=GS A0A1B4V1A1/9-112_216-307 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Acidiferrobacterales; Acidiferrobacteraceae; Sulfurifustis; Sulfurifustis variabilis; #=GS A0A1B4V1A1/9-112_216-307 DR EC; 2.1.1.199; #=GS A0A1G0KXQ7/8-110_214-306 AC A0A1G0KXQ7 #=GS A0A1G0KXQ7/8-110_214-306 OS Gammaproteobacteria bacterium RIFOXYD12_FULL_61_37 #=GS A0A1G0KXQ7/8-110_214-306 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1G0KXQ7/8-110_214-306 DR GENE3D; 063ec387d813c27b22a5a0d13792d888/8-110_214-306; #=GS A0A1G0KXQ7/8-110_214-306 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Gammaproteobacteria bacterium RIFOXYD12_FULL_61_37; #=GS A0A1G0KXQ7/8-110_214-306 DR EC; 2.1.1.199; #=GS A0A0N8QXD0/10-113_217-311 AC A0A0N8QXD0 #=GS A0A0N8QXD0/10-113_217-311 OS Pseudomonas cannabina #=GS A0A0N8QXD0/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0N8QXD0/10-113_217-311 DR GENE3D; 06516be91f1052a92576c51825760b04/10-113_217-311; #=GS A0A0N8QXD0/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas cannabina; #=GS A0A0N8QXD0/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A0P9M7P4/10-113_217-311 AC A0A0P9M7P4 #=GS A0A0P9M7P4/10-113_217-311 OS Pseudomonas congelans #=GS A0A0P9M7P4/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0P9M7P4/10-113_217-311 DR GENE3D; 066e7dff240199771c87b42114505ca3/10-113_217-311; #=GS A0A0P9M7P4/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas fluorescens group; Pseudomonas congelans; #=GS A0A0P9M7P4/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A119DGS1/10-110_218-310 AC A0A119DGS1 #=GS A0A119DGS1/10-110_218-310 OS Burkholderia territorii #=GS A0A119DGS1/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A119DGS1/10-110_218-310 DR GENE3D; 068ac0e22d1667c7edfa46672551b317/10-110_218-310; #=GS A0A119DGS1/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia cepacia complex; Burkholderia territorii; #=GS A0A119DGS1/10-110_218-310 DR EC; 2.1.1.199; #=GS V4JKA6/10-112_216-310 AC V4JKA6 #=GS V4JKA6/10-112_216-310 OS Pseudoalteromonas luteoviolacea 2ta16 #=GS V4JKA6/10-112_216-310 DE Ribosomal RNA small subunit methyltransferase H #=GS V4JKA6/10-112_216-310 DR GENE3D; 068f193e77066f4badae8a0aa9b9a12e/10-112_216-310; #=GS V4JKA6/10-112_216-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Pseudoalteromonadaceae; Pseudoalteromonas; Pseudoalteromonas luteoviolacea; #=GS V4JKA6/10-112_216-310 DR EC; 2.1.1.199; #=GS A0A176EEE0/6-111_212-301 AC A0A176EEE0 #=GS A0A176EEE0/6-111_212-301 OS Erythrobacter sp. HI0028 #=GS A0A176EEE0/6-111_212-301 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A176EEE0/6-111_212-301 DR GENE3D; 06a3e6446275324ae2c3793b35eb49c1/6-111_212-301; #=GS A0A176EEE0/6-111_212-301 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Erythrobacteraceae; Erythrobacter; Erythrobacter sp. HI0028; #=GS A0A176EEE0/6-111_212-301 DR EC; 2.1.1.199; #=GS A0A0N0JJV1/7-112_213-304 AC A0A0N0JJV1 #=GS A0A0N0JJV1/7-112_213-304 OS Novosphingobium sp. AAP1 #=GS A0A0N0JJV1/7-112_213-304 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0N0JJV1/7-112_213-304 DR GENE3D; 06afe7cb0d0656841f0efe6b5babe225/7-112_213-304; #=GS A0A0N0JJV1/7-112_213-304 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Novosphingobium; Novosphingobium sp. AAP1; #=GS A0A0N0JJV1/7-112_213-304 DR EC; 2.1.1.199; #=GS K5XHJ6/12-115_219-313 AC K5XHJ6 #=GS K5XHJ6/12-115_219-313 OS Pseudomonas sp. Chol1 #=GS K5XHJ6/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS K5XHJ6/12-115_219-313 DR GENE3D; 06f13700773bc8d93906c7f730fddede/12-115_219-313; #=GS K5XHJ6/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. Chol1; #=GS K5XHJ6/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A0K9L4W2/15-116_226-320 AC A0A0K9L4W2 #=GS A0A0K9L4W2/15-116_226-320 OS Haemophilus influenzae #=GS A0A0K9L4W2/15-116_226-320 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0K9L4W2/15-116_226-320 DR GENE3D; 06fa57949c7ee55b65e49faa11698903/15-116_226-320; #=GS A0A0K9L4W2/15-116_226-320 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Haemophilus; Haemophilus influenzae; #=GS A0A0K9L4W2/15-116_226-320 DR EC; 2.1.1.199; #=GS A0A158KWR2/14-114_222-314 AC A0A158KWR2 #=GS A0A158KWR2/14-114_222-314 OS Burkholderia arvi #=GS A0A158KWR2/14-114_222-314 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A158KWR2/14-114_222-314 DR GENE3D; 0701cde0904707f9288f29c5265997c7/14-114_222-314; #=GS A0A158KWR2/14-114_222-314 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia arvi; #=GS A0A158KWR2/14-114_222-314 DR EC; 2.1.1.199; #=GS H3NY76/9-107_211-303 AC H3NY76 #=GS H3NY76/9-107_211-303 OS gamma proteobacterium HIMB55 #=GS H3NY76/9-107_211-303 DE Ribosomal RNA small subunit methyltransferase H #=GS H3NY76/9-107_211-303 DR GENE3D; 070d76145c176212a3e2b2ac0e8648b3/9-107_211-303; #=GS H3NY76/9-107_211-303 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Cellvibrionales; Halieaceae; gamma proteobacterium HIMB55; #=GS H3NY76/9-107_211-303 DR EC; 2.1.1.199; #=GS Q3K736/12-115_219-313 AC Q3K736 #=GS Q3K736/12-115_219-313 OS Pseudomonas fluorescens Pf0-1 #=GS Q3K736/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS Q3K736/12-115_219-313 DR GENE3D; 0712a1e4f5d883dd8d45af773c1a2a8c/12-115_219-313; #=GS Q3K736/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas fluorescens group; Pseudomonas fluorescens; #=GS Q3K736/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A0P9UMR5/10-113_217-311 AC A0A0P9UMR5 #=GS A0A0P9UMR5/10-113_217-311 OS Pseudomonas syringae pv. maculicola #=GS A0A0P9UMR5/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0P9UMR5/10-113_217-311 DR GENE3D; 071fc5e0a5876a17d49db236c4259046/10-113_217-311; #=GS A0A0P9UMR5/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 3; #=GS A0A0P9UMR5/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A1E7VLY2/14-117_221-313 AC A0A1E7VLY2 #=GS A0A1E7VLY2/14-117_221-313 OS Duganella sp. HH105 #=GS A0A1E7VLY2/14-117_221-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1E7VLY2/14-117_221-313 DR GENE3D; 07616b3cee2aa000f42b9b9d6594cefa/14-117_221-313; #=GS A0A1E7VLY2/14-117_221-313 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Oxalobacteraceae; Duganella; Duganella sp. HH105; #=GS A0A1E7VLY2/14-117_221-313 DR EC; 2.1.1.199; #=GS A0A1G0I344/11-113_219-311 AC A0A1G0I344 #=GS A0A1G0I344/11-113_219-311 OS Gammaproteobacteria bacterium RIFCSPHIGHO2_12_FULL_42_10 #=GS A0A1G0I344/11-113_219-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1G0I344/11-113_219-311 DR GENE3D; 07730c41b9a5c9deebe50b50ebe22aae/11-113_219-311; #=GS A0A1G0I344/11-113_219-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Gammaproteobacteria bacterium RIFCSPHIGHO2_12_FULL_42_10; #=GS A0A1G0I344/11-113_219-311 DR EC; 2.1.1.199; #=GS A0A1E3MUH6/10-111_218-314 AC A0A1E3MUH6 #=GS A0A1E3MUH6/10-111_218-314 OS Salinivibrio sp. DV #=GS A0A1E3MUH6/10-111_218-314 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1E3MUH6/10-111_218-314 DR GENE3D; 078be45d1751688d85efe38e135dd43c/10-111_218-314; #=GS A0A1E3MUH6/10-111_218-314 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Vibrionales; Vibrionaceae; Salinivibrio; Salinivibrio sp. DV; #=GS A0A1E3MUH6/10-111_218-314 DR EC; 2.1.1.199; #=GS A0A1J4QG33/10-111_215-309 AC A0A1J4QG33 #=GS A0A1J4QG33/10-111_215-309 OS Oceanisphaera psychrotolerans #=GS A0A1J4QG33/10-111_215-309 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1J4QG33/10-111_215-309 DR GENE3D; 07902f56ada9a5eaab3496cdfc6b2566/10-111_215-309; #=GS A0A1J4QG33/10-111_215-309 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Aeromonadales; Aeromonadaceae; Oceanisphaera; Oceanisphaera psychrotolerans; #=GS A0A1J4QG33/10-111_215-309 DR EC; 2.1.1.199; #=GS G2KMC3/8-113_220-262_284-312 AC G2KMC3 #=GS G2KMC3/8-113_220-262_284-312 OS Micavibrio aeruginosavorus ARL-13 #=GS G2KMC3/8-113_220-262_284-312 DE Ribosomal RNA small subunit methyltransferase H #=GS G2KMC3/8-113_220-262_284-312 DR GENE3D; 07e9082afd5d2d059ca550f99857531c/8-113_220-262_284-312; #=GS G2KMC3/8-113_220-262_284-312 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Micavibrio; Micavibrio aeruginosavorus; #=GS G2KMC3/8-113_220-262_284-312 DR EC; 2.1.1.199; #=GS A0A1F4PGD3/33-116_221-310 AC A0A1F4PGD3 #=GS A0A1F4PGD3/33-116_221-310 OS Burkholderiales bacterium RIFOXYC12_FULL_60_6 #=GS A0A1F4PGD3/33-116_221-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1F4PGD3/33-116_221-310 DR GENE3D; 080912c88fd2ad1b91e98a187bda7ece/33-116_221-310; #=GS A0A1F4PGD3/33-116_221-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiales bacterium RIFOXYC12_FULL_60_6; #=GS A0A1F4PGD3/33-116_221-310 DR EC; 2.1.1.199; #=GS I8UAH5/9-111_216-310 AC I8UAH5 #=GS I8UAH5/9-111_216-310 OS Alishewanella agri BL06 #=GS I8UAH5/9-111_216-310 DE Ribosomal RNA small subunit methyltransferase H #=GS I8UAH5/9-111_216-310 DR GENE3D; 081705719b18da2762783ebf87cd903b/9-111_216-310; #=GS I8UAH5/9-111_216-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Alteromonadaceae; Alishewanella; Alishewanella agri; #=GS I8UAH5/9-111_216-310 DR EC; 2.1.1.199; #=GS A0A097AVK8/10-111_219-315 AC A0A097AVK8 #=GS A0A097AVK8/10-111_219-315 OS Vibrio coralliilyticus #=GS A0A097AVK8/10-111_219-315 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A097AVK8/10-111_219-315 DR GENE3D; 082ea6808102b20867db4acc9739656d/10-111_219-315; #=GS A0A097AVK8/10-111_219-315 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Vibrionales; Vibrionaceae; Vibrio; Vibrio coralliilyticus; #=GS A0A097AVK8/10-111_219-315 DR EC; 2.1.1.199; #=GS U0EVM3/10-111_219-315 AC U0EVM3 #=GS U0EVM3/10-111_219-315 OS Vibrio coralliilyticus OCN008 #=GS U0EVM3/10-111_219-315 DE Ribosomal RNA small subunit methyltransferase H #=GS U0EVM3/10-111_219-315 DR GENE3D; 082ea6808102b20867db4acc9739656d/10-111_219-315; #=GS U0EVM3/10-111_219-315 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Vibrionales; Vibrionaceae; Vibrio; Vibrio coralliilyticus; #=GS U0EVM3/10-111_219-315 DR EC; 2.1.1.199; #=GS A0A0T6VAA6/12-115_219-313 AC A0A0T6VAA6 #=GS A0A0T6VAA6/12-115_219-313 OS Pseudomonas sp. TTU2014-096BSC #=GS A0A0T6VAA6/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0T6VAA6/12-115_219-313 DR GENE3D; 08329df03ef18b3298b75614725c5a04/12-115_219-313; #=GS A0A0T6VAA6/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. TTU2014-096BSC; #=GS A0A0T6VAA6/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A193G1F2/42-131_235-327 AC A0A193G1F2 #=GS A0A193G1F2/42-131_235-327 OS Bordetella bronchialis #=GS A0A193G1F2/42-131_235-327 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A193G1F2/42-131_235-327 DR GENE3D; 0833e4d43f9e884012d67d4dfea7eafb/42-131_235-327; #=GS A0A193G1F2/42-131_235-327 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Alcaligenaceae; Bordetella; Bordetella bronchialis; #=GS A0A193G1F2/42-131_235-327 DR EC; 2.1.1.199; #=GS T0AXE8/10-110_214-307 AC T0AXE8 #=GS T0AXE8/10-110_214-307 OS Thauera terpenica 58Eu #=GS T0AXE8/10-110_214-307 DE Ribosomal RNA small subunit methyltransferase H #=GS T0AXE8/10-110_214-307 DR GENE3D; 084095753f6bf1d5480ebf3c9d7233ad/10-110_214-307; #=GS T0AXE8/10-110_214-307 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Rhodocyclales; Rhodocyclaceae; Thauera; Thauera terpenica; #=GS T0AXE8/10-110_214-307 DR EC; 2.1.1.199; #=GS B3PCM8/9-112_216-308 AC B3PCM8 #=GS B3PCM8/9-112_216-308 OS Cellvibrio japonicus Ueda107 #=GS B3PCM8/9-112_216-308 DE Ribosomal RNA small subunit methyltransferase H #=GS B3PCM8/9-112_216-308 DR GENE3D; 085a0bf8d842ffd24dc4ecc954222804/9-112_216-308; #=GS B3PCM8/9-112_216-308 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Cellvibrionales; Cellvibrionaceae; Cellvibrio; Cellvibrio japonicus; #=GS B3PCM8/9-112_216-308 DR EC; 2.1.1.199; #=GS A0A0R2U648/8-111_215-307 AC A0A0R2U648 #=GS A0A0R2U648/8-111_215-307 OS SAR92 bacterium BACL26 MAG-121220-bin70 #=GS A0A0R2U648/8-111_215-307 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0R2U648/8-111_215-307 DR GENE3D; 087e45b34db2495d4face9eb02aec354/8-111_215-307; #=GS A0A0R2U648/8-111_215-307 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Cellvibrionales; Porticoccaceae; SAR92 bacterium BACL26 MAG-121220-bin70; #=GS A0A0R2U648/8-111_215-307 DR EC; 2.1.1.199; #=GS A0A154QH22/11-111_215-306 AC A0A154QH22 #=GS A0A154QH22/11-111_215-306 OS Rhodanobacter thiooxydans #=GS A0A154QH22/11-111_215-306 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A154QH22/11-111_215-306 DR GENE3D; 08930cd01637893b269906e1e6a46b1a/11-111_215-306; #=GS A0A154QH22/11-111_215-306 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Xanthomonadales; Rhodanobacteraceae; Rhodanobacter; Rhodanobacter thiooxydans; #=GS A0A154QH22/11-111_215-306 DR EC; 2.1.1.199; #=GS A0A0W1QGG0/6-109_210-301 AC A0A0W1QGG0 #=GS A0A0W1QGG0/6-109_210-301 OS Sphingomonas sp. WG #=GS A0A0W1QGG0/6-109_210-301 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0W1QGG0/6-109_210-301 DR GENE3D; 08a685646121b1c8f0a6fc0ceece04ef/6-109_210-301; #=GS A0A0W1QGG0/6-109_210-301 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingomonas; Sphingomonas sp. WG; #=GS A0A0W1QGG0/6-109_210-301 DR EC; 2.1.1.199; #=GS L0GYF2/9-112_216-308 AC L0GYF2 #=GS L0GYF2/9-112_216-308 OS Thioflavicoccus mobilis 8321 #=GS L0GYF2/9-112_216-308 DE Ribosomal RNA small subunit methyltransferase H #=GS L0GYF2/9-112_216-308 DR GENE3D; 08be8caad6839d7cefadc109ea8df355/9-112_216-308; #=GS L0GYF2/9-112_216-308 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Chromatiales; Chromatiaceae; Thioflavicoccus; Thioflavicoccus mobilis; #=GS L0GYF2/9-112_216-308 DR EC; 2.1.1.199; #=GS A0A0Q4BRR7/6-115_221-310 AC A0A0Q4BRR7 #=GS A0A0Q4BRR7/6-115_221-310 OS Novosphingobium sp. Leaf2 #=GS A0A0Q4BRR7/6-115_221-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q4BRR7/6-115_221-310 DR GENE3D; 08d1d1caef4e3761e1b5dc02b6676aa2/6-115_221-310; #=GS A0A0Q4BRR7/6-115_221-310 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Novosphingobium; Novosphingobium sp. Leaf2; #=GS A0A0Q4BRR7/6-115_221-310 DR EC; 2.1.1.199; #=GS A9H0G9/9-118_221-263_286-316 AC A9H0G9 #=GS A9H0G9/9-118_221-263_286-316 OS Gluconacetobacter diazotrophicus PA1 5 #=GS A9H0G9/9-118_221-263_286-316 DE Ribosomal RNA small subunit methyltransferase H #=GS A9H0G9/9-118_221-263_286-316 DR GENE3D; 08da4e4474f0b35e4acc4abd58662582/9-118_221-263_286-316; #=GS A9H0G9/9-118_221-263_286-316 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodospirillales; Acetobacteraceae; Gluconacetobacter; Gluconacetobacter diazotrophicus; #=GS A9H0G9/9-118_221-263_286-316 DR EC; 2.1.1.199; #=GS A0A0D1ETB8/10-111_219-315 AC A0A0D1ETB8 #=GS A0A0D1ETB8/10-111_219-315 OS Vibrio parahaemolyticus 49 #=GS A0A0D1ETB8/10-111_219-315 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0D1ETB8/10-111_219-315 DR GENE3D; 08e4bbbb6ad5958f19afc939c208b316/10-111_219-315; #=GS A0A0D1ETB8/10-111_219-315 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Vibrionales; Vibrionaceae; Vibrio; Vibrio harveyi group; Vibrio parahaemolyticus; #=GS A0A0D1ETB8/10-111_219-315 DR EC; 2.1.1.199; #=GS A0A0C2BL29/15-118_222-314 AC A0A0C2BL29 #=GS A0A0C2BL29/15-118_222-314 OS Herbaspirillum sp. TSA66 #=GS A0A0C2BL29/15-118_222-314 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0C2BL29/15-118_222-314 DR GENE3D; 092dbcce0ec41265ab9f1daeb72768ce/15-118_222-314; #=GS A0A0C2BL29/15-118_222-314 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Oxalobacteraceae; Herbaspirillum; Herbaspirillum sp. TSA66; #=GS A0A0C2BL29/15-118_222-314 DR EC; 2.1.1.199; #=GS A0A1F1SG21/11-113_217-310 AC A0A1F1SG21 #=GS A0A1F1SG21/11-113_217-310 OS Neisseria sp. HMSC31F04 #=GS A0A1F1SG21/11-113_217-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1F1SG21/11-113_217-310 DR GENE3D; 0931d93b664e0bb3d387b1e8b7dad49a/11-113_217-310; #=GS A0A1F1SG21/11-113_217-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Neisseriales; Neisseriaceae; Neisseria; Neisseria sp. HMSC31F04; #=GS A0A1F1SG21/11-113_217-310 DR EC; 2.1.1.199; #=GS A0A0C1GNA6/12-110_214-304 AC A0A0C1GNA6 #=GS A0A0C1GNA6/12-110_214-304 OS Leisingera sp. ANG-M1 #=GS A0A0C1GNA6/12-110_214-304 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0C1GNA6/12-110_214-304 DR GENE3D; 0938e7fd0e572324398ea4e8ee23fe64/12-110_214-304; #=GS A0A0C1GNA6/12-110_214-304 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Leisingera; Leisingera sp. ANG-M1; #=GS A0A0C1GNA6/12-110_214-304 DR EC; 2.1.1.199; #=GS A0A0L6FZ80/12-115_219-313 AC A0A0L6FZ80 #=GS A0A0L6FZ80/12-115_219-313 OS Pseudomonas sp. 250J #=GS A0A0L6FZ80/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0L6FZ80/12-115_219-313 DR GENE3D; 0958bbf031ebe5201ea7d7d5ca53dd18/12-115_219-313; #=GS A0A0L6FZ80/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. 250J; #=GS A0A0L6FZ80/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A1E2TSH5/12-115_219-313 AC A0A1E2TSH5 #=GS A0A1E2TSH5/12-115_219-313 OS Pseudomonas mosselii #=GS A0A1E2TSH5/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1E2TSH5/12-115_219-313 DR GENE3D; 0958bbf031ebe5201ea7d7d5ca53dd18/12-115_219-313; #=GS A0A1E2TSH5/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas putida group; Pseudomonas mosselii; #=GS A0A1E2TSH5/12-115_219-313 DR EC; 2.1.1.199; #=GS D0J7D6/10-110_215-304 AC D0J7D6 #=GS D0J7D6/10-110_215-304 OS Comamonas testosteroni CNB-2 #=GS D0J7D6/10-110_215-304 DE Ribosomal RNA small subunit methyltransferase H #=GS D0J7D6/10-110_215-304 DR GENE3D; 0966a831d7221fe3cc93eec2054a02cd/10-110_215-304; #=GS D0J7D6/10-110_215-304 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Comamonadaceae; Comamonas; Comamonas testosteroni; #=GS D0J7D6/10-110_215-304 DR EC; 2.1.1.199; #=GS A0A0D2VYP6/14-118_221-263_285-315 AC A0A0D2VYP6 #=GS A0A0D2VYP6/14-118_221-263_285-315 OS Skermanella aerolata KACC 11604 #=GS A0A0D2VYP6/14-118_221-263_285-315 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0D2VYP6/14-118_221-263_285-315 DR GENE3D; 098331f7c6c957be64c9c9fea2aba541/14-118_221-263_285-315; #=GS A0A0D2VYP6/14-118_221-263_285-315 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodospirillales; Rhodospirillaceae; Skermanella; Skermanella aerolata; #=GS A0A0D2VYP6/14-118_221-263_285-315 DR EC; 2.1.1.199; #=GS A0A103FMS5/10-110_218-310 AC A0A103FMS5 #=GS A0A103FMS5/10-110_218-310 OS Burkholderia sp. BDU8 #=GS A0A103FMS5/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A103FMS5/10-110_218-310 DR GENE3D; 0984d90e69859ed2c3d0eb91fb57f555/10-110_218-310; #=GS A0A103FMS5/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; pseudomallei group; Burkholderia sp. BDU8; #=GS A0A103FMS5/10-110_218-310 DR EC; 2.1.1.199; #=GS K0G5D8/11-112_218-312 AC K0G5D8 #=GS K0G5D8/11-112_218-312 OS Actinobacillus suis H91-0380 #=GS K0G5D8/11-112_218-312 DE Ribosomal RNA small subunit methyltransferase H #=GS K0G5D8/11-112_218-312 DR GENE3D; 09997d260825e7b578277aaf87fb8902/11-112_218-312; #=GS K0G5D8/11-112_218-312 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Actinobacillus; Actinobacillus suis; #=GS K0G5D8/11-112_218-312 DR EC; 2.1.1.199; #=GS A0A0Y7LL20/15-116_226-320 AC A0A0Y7LL20 #=GS A0A0Y7LL20/15-116_226-320 OS Haemophilus influenzae #=GS A0A0Y7LL20/15-116_226-320 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Y7LL20/15-116_226-320 DR GENE3D; 099ec184585d8e66183de82795697155/15-116_226-320; #=GS A0A0Y7LL20/15-116_226-320 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Haemophilus; Haemophilus influenzae; #=GS A0A0Y7LL20/15-116_226-320 DR EC; 2.1.1.199; #=GS A0A0F2KV60/7-116_220-262_284-314 AC A0A0F2KV60 #=GS A0A0F2KV60/7-116_220-262_284-314 OS Azospirillum thiophilum #=GS A0A0F2KV60/7-116_220-262_284-314 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0F2KV60/7-116_220-262_284-314 DR GENE3D; 09b0eff43ca5c4c24ba69b4f0bf6f36a/7-116_220-262_284-314; #=GS A0A0F2KV60/7-116_220-262_284-314 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodospirillales; Rhodospirillaceae; Azospirillum; Azospirillum thiophilum; #=GS A0A0F2KV60/7-116_220-262_284-314 DR EC; 2.1.1.199; #=GS F9GZ21/15-116_226-320 AC F9GZ21 #=GS F9GZ21/15-116_226-320 OS Haemophilus haemolyticus M21621 #=GS F9GZ21/15-116_226-320 DE Ribosomal RNA small subunit methyltransferase H #=GS F9GZ21/15-116_226-320 DR GENE3D; 09e2d59a18be55ad7c678e6fb357df55/15-116_226-320; #=GS F9GZ21/15-116_226-320 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Haemophilus; Haemophilus haemolyticus; #=GS F9GZ21/15-116_226-320 DR EC; 2.1.1.199; #=GS V9TTD8/6-114_218-260_285-314 AC V9TTD8 #=GS V9TTD8/6-114_218-260_285-314 OS Candidatus Endolissoclinum faulkneri L5 #=GS V9TTD8/6-114_218-260_285-314 DE Ribosomal RNA small subunit methyltransferase H #=GS V9TTD8/6-114_218-260_285-314 DR GENE3D; 09fc15c2647bcf8127798a669e26bad0/6-114_218-260_285-314; #=GS V9TTD8/6-114_218-260_285-314 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodospirillales; Rhodospirillaceae; Candidatus Endolissoclinum; Candidatus Endolissoclinum faulkneri; #=GS V9TTD8/6-114_218-260_285-314 DR EC; 2.1.1.199; #=GS A0A142G1G0/15-116_226-320 AC A0A142G1G0 #=GS A0A142G1G0/15-116_226-320 OS Aggregatibacter actinomycetemcomitans #=GS A0A142G1G0/15-116_226-320 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A142G1G0/15-116_226-320 DR GENE3D; 0a25f3f180a677d6af8215eb09f9484b/15-116_226-320; #=GS A0A142G1G0/15-116_226-320 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Aggregatibacter; Aggregatibacter actinomycetemcomitans; #=GS A0A142G1G0/15-116_226-320 DR EC; 2.1.1.199; #=GS A0A173JCS5/12-115_219-313 AC A0A173JCS5 #=GS A0A173JCS5/12-115_219-313 OS Pseudomonas sp. GR 6-02 #=GS A0A173JCS5/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A173JCS5/12-115_219-313 DR GENE3D; 0a485e1e9c14214c34259e061cc92108/12-115_219-313; #=GS A0A173JCS5/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. GR 6-02; #=GS A0A173JCS5/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A0L0QXG3/42-132_236-328 AC A0A0L0QXG3 #=GS A0A0L0QXG3/42-132_236-328 OS Achromobacter spanius #=GS A0A0L0QXG3/42-132_236-328 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0L0QXG3/42-132_236-328 DR GENE3D; 0a68bbc4c574dcf9ab9325034c80a98c/42-132_236-328; #=GS A0A0L0QXG3/42-132_236-328 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Alcaligenaceae; Achromobacter; Achromobacter spanius; #=GS A0A0L0QXG3/42-132_236-328 DR EC; 2.1.1.199; #=GS A0A1G3ICD5/6-110_213-307 AC A0A1G3ICD5 #=GS A0A1G3ICD5/6-110_213-307 OS Rhodospirillales bacterium RIFCSPLOWO2_12_FULL_58_28 #=GS A0A1G3ICD5/6-110_213-307 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1G3ICD5/6-110_213-307 DR GENE3D; 0aad028a79f14155a683cb26e30f3db7/6-110_213-307; #=GS A0A1G3ICD5/6-110_213-307 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodospirillales; Rhodospirillales bacterium RIFCSPLOWO2_12_FULL_58_28; #=GS A0A1G3ICD5/6-110_213-307 DR EC; 2.1.1.199; #=GS A0A0A7PWY7/12-115_219-313 AC A0A0A7PWY7 #=GS A0A0A7PWY7/12-115_219-313 OS Pseudomonas putida S12 #=GS A0A0A7PWY7/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0A7PWY7/12-115_219-313 DR GENE3D; 0ac1902d1b87512043d1aa13f5d8ce85/12-115_219-313; #=GS A0A0A7PWY7/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas putida group; Pseudomonas putida; #=GS A0A0A7PWY7/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A1N6ZKZ6/12-115_219-313 AC A0A1N6ZKZ6 #=GS A0A1N6ZKZ6/12-115_219-313 OS Pseudomonas putida #=GS A0A1N6ZKZ6/12-115_219-313 DE 16S rRNA (Cytosine1402-N4)-methyltransferase #=GS A0A1N6ZKZ6/12-115_219-313 DR GENE3D; 0ac1902d1b87512043d1aa13f5d8ce85/12-115_219-313; #=GS A0A1N6ZKZ6/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas putida group; Pseudomonas putida; #=GS A0A1N6ZKZ6/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A0D0QNA7/10-111_215-309 AC A0A0D0QNA7 #=GS A0A0D0QNA7/10-111_215-309 OS Aeromonas sp. L_1B5_3 #=GS A0A0D0QNA7/10-111_215-309 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0D0QNA7/10-111_215-309 DR GENE3D; 0acb2fa9f6b8c1fc0321d518605f7c4a/10-111_215-309; #=GS A0A0D0QNA7/10-111_215-309 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Aeromonadales; Aeromonadaceae; Aeromonas; Aeromonas sp. L_1B5_3; #=GS A0A0D0QNA7/10-111_215-309 DR EC; 2.1.1.199; #=GS A0A126YIZ7/10-110_218-310 AC A0A126YIZ7 #=GS A0A126YIZ7/10-110_218-310 OS Burkholderia sp. PAMC 28687 #=GS A0A126YIZ7/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A126YIZ7/10-110_218-310 DR GENE3D; 0ad1459e4f3b12f9feb7e1095705955d/10-110_218-310; #=GS A0A126YIZ7/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia sp. PAMC 28687; #=GS A0A126YIZ7/10-110_218-310 DR EC; 2.1.1.199; #=GS J8TBY7/12-114_218-311 AC J8TBY7 #=GS J8TBY7/12-114_218-311 OS Neisseria meningitidis 93004 #=GS J8TBY7/12-114_218-311 DE Ribosomal RNA small subunit methyltransferase H #=GS J8TBY7/12-114_218-311 DR GENE3D; 0adbd06e771a86faeccc96150229a997/12-114_218-311; #=GS J8TBY7/12-114_218-311 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Neisseriales; Neisseriaceae; Neisseria; Neisseria meningitidis; #=GS J8TBY7/12-114_218-311 DR EC; 2.1.1.199; #=GS A0A0D6EAJ9/18-119_223-316 AC A0A0D6EAJ9 #=GS A0A0D6EAJ9/18-119_223-316 OS Halomonas sp. R57-5 #=GS A0A0D6EAJ9/18-119_223-316 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0D6EAJ9/18-119_223-316 DR GENE3D; 0ae32189b5063667c4665852cc3e2453/18-119_223-316; #=GS A0A0D6EAJ9/18-119_223-316 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Oceanospirillales; Halomonadaceae; Halomonas; Halomonas sp. R57-5; #=GS A0A0D6EAJ9/18-119_223-316 DR EC; 2.1.1.199; #=GS A0A058YE89/43-132_236-328 AC A0A058YE89 #=GS A0A058YE89/43-132_236-328 OS Bordetella bronchiseptica 99-R-0433 #=GS A0A058YE89/43-132_236-328 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A058YE89/43-132_236-328 DR GENE3D; 0b340bd80898931dc38cb98ccaa56132/43-132_236-328; #=GS A0A058YE89/43-132_236-328 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Alcaligenaceae; Bordetella; Bordetella bronchiseptica; #=GS A0A058YE89/43-132_236-328 DR EC; 2.1.1.199; #=GS A9EL23/10-112_216-310 AC A9EL23 #=GS A9EL23/10-112_216-310 OS Shewanella benthica KT99 #=GS A9EL23/10-112_216-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A9EL23/10-112_216-310 DR GENE3D; 0b4ef62f018f5cb57ff2f70d475440fa/10-112_216-310; #=GS A9EL23/10-112_216-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Shewanellaceae; Shewanella; Shewanella benthica; #=GS A9EL23/10-112_216-310 DR EC; 2.1.1.199; #=GS A0A0F4THI0/12-115_219-313 AC A0A0F4THI0 #=GS A0A0F4THI0/12-115_219-313 OS Pseudomonas fluorescens #=GS A0A0F4THI0/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0F4THI0/12-115_219-313 DR GENE3D; 0b5f5cf2ad750df057d0f92f530af28a/12-115_219-313; #=GS A0A0F4THI0/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas fluorescens group; Pseudomonas fluorescens; #=GS A0A0F4THI0/12-115_219-313 DR EC; 2.1.1.199; #=GS J2QRQ8/12-115_219-313 AC J2QRQ8 #=GS J2QRQ8/12-115_219-313 OS Pseudomonas sp. GM33 #=GS J2QRQ8/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS J2QRQ8/12-115_219-313 DR GENE3D; 0b5f5cf2ad750df057d0f92f530af28a/12-115_219-313; #=GS J2QRQ8/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. GM33; #=GS J2QRQ8/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A163A124/6-109_210-300 AC A0A163A124 #=GS A0A163A124/6-109_210-300 OS Sphingomonas hankookensis #=GS A0A163A124/6-109_210-300 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A163A124/6-109_210-300 DR GENE3D; 0b6760b466b9257ef37ab84868dada6e/6-109_210-300; #=GS A0A163A124/6-109_210-300 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingomonas; Sphingomonas hankookensis; #=GS A0A163A124/6-109_210-300 DR EC; 2.1.1.199; #=GS A0A166SLT9/10-108_212-303 AC A0A166SLT9 #=GS A0A166SLT9/10-108_212-303 OS Oceanibulbus sp. HI0023 #=GS A0A166SLT9/10-108_212-303 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A166SLT9/10-108_212-303 DR GENE3D; 0b7c9741ab46f05f3f743be9c5ab6c8d/10-108_212-303; #=GS A0A166SLT9/10-108_212-303 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Oceanibulbus; Oceanibulbus sp. HI0023; #=GS A0A166SLT9/10-108_212-303 DR EC; 2.1.1.199; #=GS A0A0J5QGX6/16-114_218-309 AC A0A0J5QGX6 #=GS A0A0J5QGX6/16-114_218-309 OS Puniceibacterium sp. IMCC21224 #=GS A0A0J5QGX6/16-114_218-309 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0J5QGX6/16-114_218-309 DR GENE3D; 0b992025e7b0a53aa0c38c0c1b066288/16-114_218-309; #=GS A0A0J5QGX6/16-114_218-309 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Puniceibacterium; Puniceibacterium sp. IMCC21224; #=GS A0A0J5QGX6/16-114_218-309 DR EC; 2.1.1.199; #=GS A0A0W0UH30/6-109_213-305 AC A0A0W0UH30 #=GS A0A0W0UH30/6-109_213-305 OS Legionella jamestowniensis #=GS A0A0W0UH30/6-109_213-305 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0W0UH30/6-109_213-305 DR GENE3D; 0bb355767416fbeed826fb8618f49a61/6-109_213-305; #=GS A0A0W0UH30/6-109_213-305 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Legionellales; Legionellaceae; Legionella; Legionella jamestowniensis; #=GS A0A0W0UH30/6-109_213-305 DR EC; 2.1.1.199; #=GS Q47A96/10-110_214-307 AC Q47A96 #=GS Q47A96/10-110_214-307 OS Dechloromonas aromatica RCB #=GS Q47A96/10-110_214-307 DE Ribosomal RNA small subunit methyltransferase H #=GS Q47A96/10-110_214-307 DR GENE3D; 0bb38a32caaae2419e6c2a2e6262ace6/10-110_214-307; #=GS Q47A96/10-110_214-307 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Rhodocyclales; Rhodocyclaceae; Dechloromonas; Dechloromonas aromatica; #=GS Q47A96/10-110_214-307 DR EC; 2.1.1.199; #=GS A0A1K1R7S5/12-115_219-313 AC A0A1K1R7S5 #=GS A0A1K1R7S5/12-115_219-313 OS Pseudomonas sp. NFACC04-2 #=GS A0A1K1R7S5/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1K1R7S5/12-115_219-313 DR GENE3D; 0c076f6bd735cb66d8345323a2a826fb/12-115_219-313; #=GS A0A1K1R7S5/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. NFACC04-2; #=GS A0A1K1R7S5/12-115_219-313 DR EC; 2.1.1.199; #=GS V9VUN5/12-110_214-304 AC V9VUN5 #=GS V9VUN5/12-110_214-304 OS Leisingera methylohalidivorans DSM 14336 #=GS V9VUN5/12-110_214-304 DE Ribosomal RNA small subunit methyltransferase H #=GS V9VUN5/12-110_214-304 DR GENE3D; 0c6a667292efdd8b4f919a14027d805a/12-110_214-304; #=GS V9VUN5/12-110_214-304 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Leisingera; Leisingera methylohalidivorans; #=GS V9VUN5/12-110_214-304 DR EC; 2.1.1.199; #=GS A0A1H0RPK6/12-115_219-313 AC A0A1H0RPK6 #=GS A0A1H0RPK6/12-115_219-313 OS Pseudomonas reinekei #=GS A0A1H0RPK6/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1H0RPK6/12-115_219-313 DR GENE3D; 0c764de2d9645d7af7e22a641aa3290a/12-115_219-313; #=GS A0A1H0RPK6/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas reinekei; #=GS A0A1H0RPK6/12-115_219-313 DR EC; 2.1.1.199; #=GS G2IM05/14-117_219-309 AC G2IM05 #=GS G2IM05/14-117_219-309 OS Sphingobium sp. SYK-6 #=GS G2IM05/14-117_219-309 DE Ribosomal RNA small subunit methyltransferase H #=GS G2IM05/14-117_219-309 DR GENE3D; 0c7762dd8489502b8e71f481a22341ba/14-117_219-309; #=GS G2IM05/14-117_219-309 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingobium; Sphingobium sp. SYK-6; #=GS G2IM05/14-117_219-309 DR EC; 2.1.1.199; #=GS I0HMQ0/11-111_216-305 AC I0HMQ0 #=GS I0HMQ0/11-111_216-305 OS Rubrivivax gelatinosus IL144 #=GS I0HMQ0/11-111_216-305 DE Ribosomal RNA small subunit methyltransferase H #=GS I0HMQ0/11-111_216-305 DR GENE3D; 0c7d650c43a80259ad39a4a1c693d22c/11-111_216-305; #=GS I0HMQ0/11-111_216-305 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Rubrivivax; Rubrivivax gelatinosus; #=GS I0HMQ0/11-111_216-305 DR EC; 2.1.1.199; #=GS A0A061QJU5/18-128_235-277_298-326 AC A0A061QJU5 #=GS A0A061QJU5/18-128_235-277_298-326 OS alpha proteobacterium Q-1 #=GS A0A061QJU5/18-128_235-277_298-326 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A061QJU5/18-128_235-277_298-326 DR GENE3D; 0ca61eba6c49b60e037ef77dd506b6b4/18-128_235-277_298-326; #=GS A0A061QJU5/18-128_235-277_298-326 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; alpha proteobacterium Q-1; #=GS A0A061QJU5/18-128_235-277_298-326 DR EC; 2.1.1.199; #=GS W1RVJ7/11-113_217-309 AC W1RVJ7 #=GS W1RVJ7/11-113_217-309 OS Marinomonas profundimaris #=GS W1RVJ7/11-113_217-309 DE Ribosomal RNA small subunit methyltransferase H #=GS W1RVJ7/11-113_217-309 DR GENE3D; 0cadaf65e54e90f16330e79ef0392142/11-113_217-309; #=GS W1RVJ7/11-113_217-309 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Oceanospirillales; Oceanospirillaceae; Marinomonas; Marinomonas profundimaris; #=GS W1RVJ7/11-113_217-309 DR EC; 2.1.1.199; #=GS A0A0D1LUZ8/12-115_219-313 AC A0A0D1LUZ8 #=GS A0A0D1LUZ8/12-115_219-313 OS Pseudomonas putida #=GS A0A0D1LUZ8/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0D1LUZ8/12-115_219-313 DR GENE3D; 0cb8f2d4a0e2e9cc5748add1a457ae09/12-115_219-313; #=GS A0A0D1LUZ8/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas putida group; Pseudomonas putida; #=GS A0A0D1LUZ8/12-115_219-313 DR EC; 2.1.1.199; #=GS V9HLL4/12-115_219-312 AC V9HLL4 #=GS V9HLL4/12-115_219-312 OS Simonsiella muelleri ATCC 29453 #=GS V9HLL4/12-115_219-312 DE Ribosomal RNA small subunit methyltransferase H #=GS V9HLL4/12-115_219-312 DR GENE3D; 0cfadcb278505b591a89e43e43538922/12-115_219-312; #=GS V9HLL4/12-115_219-312 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Neisseriales; Neisseriaceae; Simonsiella; Simonsiella muelleri; #=GS V9HLL4/12-115_219-312 DR EC; 2.1.1.199; #=GS E0N6Q2/12-114_218-311 AC E0N6Q2 #=GS E0N6Q2/12-114_218-311 OS Neisseria meningitidis ATCC 13091 #=GS E0N6Q2/12-114_218-311 DE Ribosomal RNA small subunit methyltransferase H #=GS E0N6Q2/12-114_218-311 DR GENE3D; 0d196a3dd5cb1de27397cc9ec2a8c597/12-114_218-311; #=GS E0N6Q2/12-114_218-311 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Neisseriales; Neisseriaceae; Neisseria; Neisseria meningitidis; #=GS E0N6Q2/12-114_218-311 DR EC; 2.1.1.199; #=GS A0A136HPK0/10-113_217-310 AC A0A136HPK0 #=GS A0A136HPK0/10-113_217-310 OS Neptuniibacter sp. Phe_28 #=GS A0A136HPK0/10-113_217-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A136HPK0/10-113_217-310 DR GENE3D; 0d41183c3945b3e1ed3369ab7c863a71/10-113_217-310; #=GS A0A136HPK0/10-113_217-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Oceanospirillales; Oceanospirillaceae; Neptuniibacter; Neptuniibacter sp. Phe_28; #=GS A0A136HPK0/10-113_217-310 DR EC; 2.1.1.199; #=GS A0A191UCT3/23-114_219-310 AC A0A191UCT3 #=GS A0A191UCT3/23-114_219-310 OS Polynucleobacter wuianus #=GS A0A191UCT3/23-114_219-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A191UCT3/23-114_219-310 DR GENE3D; 0d73da6bfbdecf77c9b02cd7e0d81d74/23-114_219-310; #=GS A0A191UCT3/23-114_219-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Polynucleobacter; Polynucleobacter wuianus; #=GS A0A191UCT3/23-114_219-310 DR EC; 2.1.1.199; #=GS A0A147JAK1/6-104_205-296 AC A0A147JAK1 #=GS A0A147JAK1/6-104_205-296 OS Sphingomonas sanguinis #=GS A0A147JAK1/6-104_205-296 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A147JAK1/6-104_205-296 DR GENE3D; 0db2544168a434419a224f06ad9221fe/6-104_205-296; #=GS A0A147JAK1/6-104_205-296 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingomonas; Sphingomonas sanguinis; #=GS A0A147JAK1/6-104_205-296 DR EC; 2.1.1.199; #=GS C5T631/10-110_215-304 AC C5T631 #=GS C5T631/10-110_215-304 OS Acidovorax delafieldii 2AN #=GS C5T631/10-110_215-304 DE Ribosomal RNA small subunit methyltransferase H #=GS C5T631/10-110_215-304 DR GENE3D; 0dc705cffb3f3b9ee8ec0bfaf87aea19/10-110_215-304; #=GS C5T631/10-110_215-304 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Comamonadaceae; Acidovorax; Acidovorax delafieldii; #=GS C5T631/10-110_215-304 DR EC; 2.1.1.199; #=GS A0A084XYV7/10-113_217-310 AC A0A084XYV7 #=GS A0A084XYV7/10-113_217-310 OS Candidatus Accumulibacter sp. SK-01 #=GS A0A084XYV7/10-113_217-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A084XYV7/10-113_217-310 DR GENE3D; 0e292d03b5804bc5ccd1fe3d9f42c585/10-113_217-310; #=GS A0A084XYV7/10-113_217-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Candidatus Accumulibacter; Candidatus Accumulibacter sp. SK-01; #=GS A0A084XYV7/10-113_217-310 DR EC; 2.1.1.199; #=GS K2B2F0/8-111_215-308 AC K2B2F0 #=GS K2B2F0/8-111_215-308 OS groundwater metagenome #=GS K2B2F0/8-111_215-308 DE Uncharacterized protein #=GS K2B2F0/8-111_215-308 DR GENE3D; 0e2c721c511876c8a6c90c4a2d9deb93/8-111_215-308; #=GS K2B2F0/8-111_215-308 DR ORG; groundwater metagenome; #=GS K2B2F0/8-111_215-308 DR EC; 2.1.1.199; #=GS A0A1G0FEP7/8-111_215-308 AC A0A1G0FEP7 #=GS A0A1G0FEP7/8-111_215-308 OS Gammaproteobacteria bacterium RIFCSPHIGHO2_12_38_15 #=GS A0A1G0FEP7/8-111_215-308 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1G0FEP7/8-111_215-308 DR GENE3D; 0e2c721c511876c8a6c90c4a2d9deb93/8-111_215-308; #=GS A0A1G0FEP7/8-111_215-308 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Gammaproteobacteria bacterium RIFCSPHIGHO2_12_38_15; #=GS A0A1G0FEP7/8-111_215-308 DR EC; 2.1.1.199; #=GS A0A1G0J427/8-111_215-308 AC A0A1G0J427 #=GS A0A1G0J427/8-111_215-308 OS Gammaproteobacteria bacterium RIFCSPLOWO2_02_FULL_38_11 #=GS A0A1G0J427/8-111_215-308 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1G0J427/8-111_215-308 DR GENE3D; 0e2c721c511876c8a6c90c4a2d9deb93/8-111_215-308; #=GS A0A1G0J427/8-111_215-308 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Gammaproteobacteria bacterium RIFCSPLOWO2_02_FULL_38_11; #=GS A0A1G0J427/8-111_215-308 DR EC; 2.1.1.199; #=GS A0A0S2KF73/19-118_222-314 AC A0A0S2KF73 #=GS A0A0S2KF73/19-118_222-314 OS Pseudohongiella spirulinae #=GS A0A0S2KF73/19-118_222-314 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0S2KF73/19-118_222-314 DR GENE3D; 0e6a02616db938a795d3cb08b6e0138a/19-118_222-314; #=GS A0A0S2KF73/19-118_222-314 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudohongiella; Pseudohongiella spirulinae; #=GS A0A0S2KF73/19-118_222-314 DR EC; 2.1.1.199; #=GS A0A0S8F764/13-116_220-312 AC A0A0S8F764 #=GS A0A0S8F764/13-116_220-312 OS Thiotrichales bacterium SG8_50 #=GS A0A0S8F764/13-116_220-312 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0S8F764/13-116_220-312 DR GENE3D; 0e883008713cf71a90b8b4e6a6ebd57b/13-116_220-312; #=GS A0A0S8F764/13-116_220-312 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Thiotrichales; Thiotrichales bacterium SG8_50; #=GS A0A0S8F764/13-116_220-312 DR EC; 2.1.1.199; #=GS F9ZZQ7/7-111_215-308 AC F9ZZQ7 #=GS F9ZZQ7/7-111_215-308 OS Methylomonas methanica MC09 #=GS F9ZZQ7/7-111_215-308 DE Ribosomal RNA small subunit methyltransferase H #=GS F9ZZQ7/7-111_215-308 DR GENE3D; 0ea15f49d823f998fb6153d9a5866f09/7-111_215-308; #=GS F9ZZQ7/7-111_215-308 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Methylococcales; Methylococcaceae; Methylomonas; Methylomonas methanica; #=GS F9ZZQ7/7-111_215-308 DR EC; 2.1.1.199; #=GS A0A1A7QKE7/6-109_210-298 AC A0A1A7QKE7 #=GS A0A1A7QKE7/6-109_210-298 OS Erythrobacter sp. QSSC1-22B #=GS A0A1A7QKE7/6-109_210-298 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1A7QKE7/6-109_210-298 DR GENE3D; 0efbc1a420307a3cf4e5780f4b1a0ab8/6-109_210-298; #=GS A0A1A7QKE7/6-109_210-298 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Erythrobacteraceae; Erythrobacter; Erythrobacter sp. QSSC1-22B; #=GS A0A1A7QKE7/6-109_210-298 DR EC; 2.1.1.199; #=GS A0A066ZZW1/12-115_219-313 AC A0A066ZZW1 #=GS A0A066ZZW1/12-115_219-313 OS Pseudomonas sp. P482 #=GS A0A066ZZW1/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A066ZZW1/12-115_219-313 DR GENE3D; 0f05795d97f95d88e4395f89f99c211d/12-115_219-313; #=GS A0A066ZZW1/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. P482; #=GS A0A066ZZW1/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A192D4T2/8-111_212-302 AC A0A192D4T2 #=GS A0A192D4T2/8-111_212-302 OS Porphyrobacter neustonensis #=GS A0A192D4T2/8-111_212-302 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A192D4T2/8-111_212-302 DR GENE3D; 0f47680bf96be55b78b3d9e646a84f88/8-111_212-302; #=GS A0A192D4T2/8-111_212-302 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Erythrobacteraceae; Porphyrobacter; Porphyrobacter neustonensis; #=GS A0A192D4T2/8-111_212-302 DR EC; 2.1.1.199; #=GS A0A1D8S8S5/10-111_219-315 AC A0A1D8S8S5 #=GS A0A1D8S8S5/10-111_219-315 OS Vibrio mimicus #=GS A0A1D8S8S5/10-111_219-315 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1D8S8S5/10-111_219-315 DR GENE3D; 0f5bf6c10a19a3cd913b57d495ec0076/10-111_219-315; #=GS A0A1D8S8S5/10-111_219-315 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Vibrionales; Vibrionaceae; Vibrio; Vibrio mimicus; #=GS A0A1D8S8S5/10-111_219-315 DR EC; 2.1.1.199; #=GS B6BB01/12-110_214-304 AC B6BB01 #=GS B6BB01/12-110_214-304 OS Rhodobacterales bacterium Y4I #=GS B6BB01/12-110_214-304 DE Ribosomal RNA small subunit methyltransferase H #=GS B6BB01/12-110_214-304 DR GENE3D; 0f5fb69dd368321e4cc1e87debf5d8ab/12-110_214-304; #=GS B6BB01/12-110_214-304 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacterales bacterium Y4I; #=GS B6BB01/12-110_214-304 DR EC; 2.1.1.199; #=GS A0A139BP90/10-110_214-307 AC A0A139BP90 #=GS A0A139BP90/10-110_214-307 OS Candidatus Gallionella acididurans #=GS A0A139BP90/10-110_214-307 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A139BP90/10-110_214-307 DR GENE3D; 0f633487cc1e348cc565338cc753e2bc/10-110_214-307; #=GS A0A139BP90/10-110_214-307 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Gallionellales; Gallionellaceae; Gallionella; Candidatus Gallionella acididurans; #=GS A0A139BP90/10-110_214-307 DR EC; 2.1.1.199; #=GS E0E5G3/11-112_218-312 AC E0E5G3 #=GS E0E5G3/11-112_218-312 OS Actinobacillus pleuropneumoniae serovar 1 str. 4074 #=GS E0E5G3/11-112_218-312 DE Ribosomal RNA small subunit methyltransferase H #=GS E0E5G3/11-112_218-312 DR GENE3D; 0f7d8363192f2c5046815963d0781f58/11-112_218-312; #=GS E0E5G3/11-112_218-312 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Actinobacillus; Actinobacillus pleuropneumoniae; #=GS E0E5G3/11-112_218-312 DR EC; 2.1.1.199; #=GS E0EVC2/11-112_218-312 AC E0EVC2 #=GS E0EVC2/11-112_218-312 OS Actinobacillus pleuropneumoniae serovar 9 str. CVJ13261 #=GS E0EVC2/11-112_218-312 DE Ribosomal RNA small subunit methyltransferase H #=GS E0EVC2/11-112_218-312 DR GENE3D; 0f7d8363192f2c5046815963d0781f58/11-112_218-312; #=GS E0EVC2/11-112_218-312 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Actinobacillus; Actinobacillus pleuropneumoniae; #=GS E0EVC2/11-112_218-312 DR EC; 2.1.1.199; #=GS E0F7R8/11-112_218-312 AC E0F7R8 #=GS E0F7R8/11-112_218-312 OS Actinobacillus pleuropneumoniae serovar 11 str. 56153 #=GS E0F7R8/11-112_218-312 DE Ribosomal RNA small subunit methyltransferase H #=GS E0F7R8/11-112_218-312 DR GENE3D; 0f7d8363192f2c5046815963d0781f58/11-112_218-312; #=GS E0F7R8/11-112_218-312 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Actinobacillus; Actinobacillus pleuropneumoniae; #=GS E0F7R8/11-112_218-312 DR EC; 2.1.1.199; #=GS A0A0P7WD38/10-106_210-301 AC A0A0P7WD38 #=GS A0A0P7WD38/10-106_210-301 OS Rhodobacteraceae bacterium HLUCCA08 #=GS A0A0P7WD38/10-106_210-301 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0P7WD38/10-106_210-301 DR GENE3D; 0fac25cbb2a83e9f118cad5d53e58681/10-106_210-301; #=GS A0A0P7WD38/10-106_210-301 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Rhodobacteraceae bacterium HLUCCA08; #=GS A0A0P7WD38/10-106_210-301 DR EC; 2.1.1.199; #=GS A0A1G0AQN7/6-106_210-303 AC A0A1G0AQN7 #=GS A0A1G0AQN7/6-106_210-303 OS Gallionellales bacterium GWA2_54_124 #=GS A0A1G0AQN7/6-106_210-303 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1G0AQN7/6-106_210-303 DR GENE3D; 100bd4cfc1491f55895a39d25846b778/6-106_210-303; #=GS A0A1G0AQN7/6-106_210-303 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Gallionellales; Gallionellales bacterium GWA2_54_124; #=GS A0A1G0AQN7/6-106_210-303 DR EC; 2.1.1.199; #=GS A0A1K1MAL1/5-105_212-307 AC A0A1K1MAL1 #=GS A0A1K1MAL1/5-105_212-307 OS Nitrosovibrio sp. Nv17 #=GS A0A1K1MAL1/5-105_212-307 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1K1MAL1/5-105_212-307 DR GENE3D; 10370e9ee6fe98d78101bde7766a0b96/5-105_212-307; #=GS A0A1K1MAL1/5-105_212-307 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Nitrosomonadales; Nitrosomonadaceae; Nitrosovibrio; Nitrosovibrio sp. Nv17; #=GS A0A1K1MAL1/5-105_212-307 DR EC; 2.1.1.199; #=GS E1X6V1/15-116_226-320 AC E1X6V1 #=GS E1X6V1/15-116_226-320 OS Haemophilus influenzae 10810 #=GS E1X6V1/15-116_226-320 DE Ribosomal RNA small subunit methyltransferase H #=GS E1X6V1/15-116_226-320 DR GENE3D; 10456618cfee73fdd714f843e6a3000e/15-116_226-320; #=GS E1X6V1/15-116_226-320 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Haemophilus; Haemophilus influenzae; #=GS E1X6V1/15-116_226-320 DR EC; 2.1.1.199; #=GS A0A110K7I7/15-116_226-320 AC A0A110K7I7 #=GS A0A110K7I7/15-116_226-320 OS Streptococcus pneumoniae #=GS A0A110K7I7/15-116_226-320 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A110K7I7/15-116_226-320 DR GENE3D; 10456618cfee73fdd714f843e6a3000e/15-116_226-320; #=GS A0A110K7I7/15-116_226-320 DR ORG; Bacteria; Firmicutes; Bacilli; Lactobacillales; Streptococcaceae; Streptococcus; Streptococcus pneumoniae; #=GS A0A110K7I7/15-116_226-320 DR EC; 2.1.1.199; #=GS A0A0D6FZF7/42-132_236-328 AC A0A0D6FZF7 #=GS A0A0D6FZF7/42-132_236-328 OS Achromobacter xylosoxidans #=GS A0A0D6FZF7/42-132_236-328 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0D6FZF7/42-132_236-328 DR GENE3D; 1089bd81103d24b940eda2165af29133/42-132_236-328; #=GS A0A0D6FZF7/42-132_236-328 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Alcaligenaceae; Achromobacter; Achromobacter xylosoxidans; #=GS A0A0D6FZF7/42-132_236-328 DR EC; 2.1.1.199; #=GS F0EVW9/11-113_217-310 AC F0EVW9 #=GS F0EVW9/11-113_217-310 OS Kingella denitrificans ATCC 33394 #=GS F0EVW9/11-113_217-310 DE Ribosomal RNA small subunit methyltransferase H #=GS F0EVW9/11-113_217-310 DR GENE3D; 109cb07f93f8eea384ea43c6daf68825/11-113_217-310; #=GS F0EVW9/11-113_217-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Neisseriales; Neisseriaceae; Kingella; Kingella denitrificans; #=GS F0EVW9/11-113_217-310 DR EC; 2.1.1.199; #=GS A0A1F6U652/9-112_216-308 AC A0A1F6U652 #=GS A0A1F6U652/9-112_216-308 OS Candidatus Muproteobacteria bacterium RIFCSPHIGHO2_02_FULL_65_16 #=GS A0A1F6U652/9-112_216-308 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1F6U652/9-112_216-308 DR GENE3D; 10b501370829def3075c11e81b59a5aa/9-112_216-308; #=GS A0A1F6U652/9-112_216-308 DR ORG; Bacteria; Proteobacteria; Candidatus Muproteobacteria; Candidatus Muproteobacteria bacterium RIFCSPHIGHO2_02_FULL_65_16; #=GS A0A1F6U652/9-112_216-308 DR EC; 2.1.1.199; #=GS A0A117USV9/11-116_217-308 AC A0A117USV9 #=GS A0A117USV9/11-116_217-308 OS Novosphingobium fuchskuhlense #=GS A0A117USV9/11-116_217-308 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A117USV9/11-116_217-308 DR GENE3D; 10bdf6e3403983dcd9e86bc003ff8d8d/11-116_217-308; #=GS A0A117USV9/11-116_217-308 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Novosphingobium; Novosphingobium fuchskuhlense; #=GS A0A117USV9/11-116_217-308 DR EC; 2.1.1.199; #=GS A0A1E4B3E4/7-110_211-302 AC A0A1E4B3E4 #=GS A0A1E4B3E4/7-110_211-302 OS Erythrobacter sp. SCN 62-14 #=GS A0A1E4B3E4/7-110_211-302 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1E4B3E4/7-110_211-302 DR GENE3D; 10f2ade0df709724bd5086b3a7db513e/7-110_211-302; #=GS A0A1E4B3E4/7-110_211-302 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Erythrobacteraceae; Erythrobacter; Erythrobacter sp. SCN 62-14; #=GS A0A1E4B3E4/7-110_211-302 DR EC; 2.1.1.199; #=GS A0A109LMG6/12-115_219-313 AC A0A109LMG6 #=GS A0A109LMG6/12-115_219-313 OS Pseudomonas fluorescens #=GS A0A109LMG6/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A109LMG6/12-115_219-313 DR GENE3D; 1110a5809d91c1e70960a5f37ba5198d/12-115_219-313; #=GS A0A109LMG6/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas fluorescens group; Pseudomonas fluorescens; #=GS A0A109LMG6/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A1K1Z9X5/12-115_219-313 AC A0A1K1Z9X5 #=GS A0A1K1Z9X5/12-115_219-313 OS Pseudomonas sp. NFPP02 #=GS A0A1K1Z9X5/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1K1Z9X5/12-115_219-313 DR GENE3D; 1110a5809d91c1e70960a5f37ba5198d/12-115_219-313; #=GS A0A1K1Z9X5/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. NFPP02; #=GS A0A1K1Z9X5/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A016XE69/32-118_223-311 AC A0A016XE69 #=GS A0A016XE69/32-118_223-311 OS Hylemonella gracilis str. Niagara R #=GS A0A016XE69/32-118_223-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A016XE69/32-118_223-311 DR GENE3D; 112c5719396d967e2d6d719a03449006/32-118_223-311; #=GS A0A016XE69/32-118_223-311 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Comamonadaceae; Hylemonella; Hylemonella gracilis; #=GS A0A016XE69/32-118_223-311 DR EC; 2.1.1.199; #=GS A0A1G0KD43/8-111_215-307 AC A0A1G0KD43 #=GS A0A1G0KD43/8-111_215-307 OS Gammaproteobacteria bacterium RIFCSPLOWO2_02_FULL_61_13 #=GS A0A1G0KD43/8-111_215-307 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1G0KD43/8-111_215-307 DR GENE3D; 115b3719f7ffceeec4d49061b7bf2191/8-111_215-307; #=GS A0A1G0KD43/8-111_215-307 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Gammaproteobacteria bacterium RIFCSPLOWO2_02_FULL_61_13; #=GS A0A1G0KD43/8-111_215-307 DR EC; 2.1.1.199; #=GS M4NHG3/11-111_215-306 AC M4NHG3 #=GS M4NHG3/11-111_215-306 OS Rhodanobacter denitrificans #=GS M4NHG3/11-111_215-306 DE Ribosomal RNA small subunit methyltransferase H #=GS M4NHG3/11-111_215-306 DR GENE3D; 116406e96a5ef397cb9c5aa154cfa526/11-111_215-306; #=GS M4NHG3/11-111_215-306 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Xanthomonadales; Rhodanobacteraceae; Rhodanobacter; Rhodanobacter denitrificans; #=GS M4NHG3/11-111_215-306 DR EC; 2.1.1.199; #=GS A0A0S8BP21/9-112_216-308 AC A0A0S8BP21 #=GS A0A0S8BP21/9-112_216-308 OS Acidithiobacillales bacterium SG8_45 #=GS A0A0S8BP21/9-112_216-308 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0S8BP21/9-112_216-308 DR GENE3D; 118c76409f54ed29c4787733f8abb2ff/9-112_216-308; #=GS A0A0S8BP21/9-112_216-308 DR ORG; Bacteria; Proteobacteria; Acidithiobacillia; Acidithiobacillales; Acidithiobacillales bacterium SG8_45; #=GS A0A0S8BP21/9-112_216-308 DR EC; 2.1.1.199; #=GS I4N995/12-115_219-313 AC I4N995 #=GS I4N995/12-115_219-313 OS Pseudomonas sp. M47T1 #=GS I4N995/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS I4N995/12-115_219-313 DR GENE3D; 11c65edfdd943a4deea3b0d1a5abb864/12-115_219-313; #=GS I4N995/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. M47T1; #=GS I4N995/12-115_219-313 DR EC; 2.1.1.199; #=GS F7QR60/71-175_278-368 AC F7QR60 #=GS F7QR60/71-175_278-368 OS Bradyrhizobiaceae bacterium SG-6C #=GS F7QR60/71-175_278-368 DE Ribosomal RNA small subunit methyltransferase H #=GS F7QR60/71-175_278-368 DR GENE3D; 11d031be59cf14725059d92c36780757/71-175_278-368; #=GS F7QR60/71-175_278-368 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhizobiales; Bradyrhizobiaceae; Bradyrhizobiaceae bacterium SG-6C; #=GS F7QR60/71-175_278-368 DR EC; 2.1.1.199; #=GS T1X706/10-109_214-303 AC T1X706 #=GS T1X706/10-109_214-303 OS Variovorax paradoxus B4 #=GS T1X706/10-109_214-303 DE Ribosomal RNA small subunit methyltransferase H #=GS T1X706/10-109_214-303 DR GENE3D; 11e7baacc648108eb263ce1de7055653/10-109_214-303; #=GS T1X706/10-109_214-303 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Comamonadaceae; Variovorax; Variovorax paradoxus; #=GS T1X706/10-109_214-303 DR EC; 2.1.1.199; #=GS K2JLP8/7-108_212-306 AC K2JLP8 #=GS K2JLP8/7-108_212-306 OS Gallaecimonas xiamenensis 3-C-1 #=GS K2JLP8/7-108_212-306 DE Ribosomal RNA small subunit methyltransferase H #=GS K2JLP8/7-108_212-306 DR GENE3D; 11f819f502b1a7afed9dbccf67776cae/7-108_212-306; #=GS K2JLP8/7-108_212-306 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Gallaecimonas; Gallaecimonas xiamenensis; #=GS K2JLP8/7-108_212-306 DR EC; 2.1.1.199; #=GS A0A1F4HDZ9/10-106_211-300 AC A0A1F4HDZ9 #=GS A0A1F4HDZ9/10-106_211-300 OS Burkholderiales bacterium RIFCSPHIGHO2_12_FULL_61_11 #=GS A0A1F4HDZ9/10-106_211-300 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1F4HDZ9/10-106_211-300 DR GENE3D; 1207cdd9e886d20c6c3f54322197b6ad/10-106_211-300; #=GS A0A1F4HDZ9/10-106_211-300 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiales bacterium RIFCSPHIGHO2_12_FULL_61_11; #=GS A0A1F4HDZ9/10-106_211-300 DR EC; 2.1.1.199; #=GS A0A0V0PYF9/6-105_207-296 AC A0A0V0PYF9 #=GS A0A0V0PYF9/6-105_207-296 OS Paracoccus sp. MKU1 #=GS A0A0V0PYF9/6-105_207-296 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0V0PYF9/6-105_207-296 DR GENE3D; 120b2171ddd857ac1c15cceeba4c8b41/6-105_207-296; #=GS A0A0V0PYF9/6-105_207-296 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Paracoccus; Paracoccus sp. MKU1; #=GS A0A0V0PYF9/6-105_207-296 DR EC; 2.1.1.199; #=GS A0A0K1QYR9/12-115_219-313 AC A0A0K1QYR9 #=GS A0A0K1QYR9/12-115_219-313 OS Pseudomonas fluorescens NCIMB 11764 #=GS A0A0K1QYR9/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0K1QYR9/12-115_219-313 DR GENE3D; 122d52532418201fff3e67a753b1da62/12-115_219-313; #=GS A0A0K1QYR9/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas fluorescens group; Pseudomonas fluorescens; #=GS A0A0K1QYR9/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A081V0C1/10-110_218-310 AC A0A081V0C1 #=GS A0A081V0C1/10-110_218-310 OS Burkholderia cepacia #=GS A0A081V0C1/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A081V0C1/10-110_218-310 DR GENE3D; 12485cea6c6ee4af103fba751f181ae0/10-110_218-310; #=GS A0A081V0C1/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia cepacia complex; Burkholderia cepacia; #=GS A0A081V0C1/10-110_218-310 DR EC; 2.1.1.199; #=GS W6VM88/12-115_219-313 AC W6VM88 #=GS W6VM88/12-115_219-313 OS Pseudomonas sp. GM41(2012) #=GS W6VM88/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS W6VM88/12-115_219-313 DR GENE3D; 125e47d703163bb2dafa6bb5643ade9a/12-115_219-313; #=GS W6VM88/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. GM41(2012); #=GS W6VM88/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A1B5F2P6/12-115_219-313 AC A0A1B5F2P6 #=GS A0A1B5F2P6/12-115_219-313 OS Pseudomonas sp. 22 E 5 #=GS A0A1B5F2P6/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1B5F2P6/12-115_219-313 DR GENE3D; 12b330bde1ec2b61d926947c15352982/12-115_219-313; #=GS A0A1B5F2P6/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. 22 E 5; #=GS A0A1B5F2P6/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A165KNP9/11-111_216-305 AC A0A165KNP9 #=GS A0A165KNP9/11-111_216-305 OS Acidovorax sp. GW101-3H11 #=GS A0A165KNP9/11-111_216-305 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A165KNP9/11-111_216-305 DR GENE3D; 12b9ae092446b1573da0c127d4bee6d0/11-111_216-305; #=GS A0A165KNP9/11-111_216-305 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Comamonadaceae; Acidovorax; Acidovorax sp. GW101-3H11; #=GS A0A165KNP9/11-111_216-305 DR EC; 2.1.1.199; #=GS A0A1G0HHN4/6-109_213-305 AC A0A1G0HHN4 #=GS A0A1G0HHN4/6-109_213-305 OS Gammaproteobacteria bacterium RIFCSPHIGHO2_12_FULL_41_15 #=GS A0A1G0HHN4/6-109_213-305 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1G0HHN4/6-109_213-305 DR GENE3D; 12cd6b8eb014f0ff0e4c466664264ae1/6-109_213-305; #=GS A0A1G0HHN4/6-109_213-305 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Gammaproteobacteria bacterium RIFCSPHIGHO2_12_FULL_41_15; #=GS A0A1G0HHN4/6-109_213-305 DR EC; 2.1.1.199; #=GS A1VSU4/11-107_212-301 AC A1VSU4 #=GS A1VSU4/11-107_212-301 OS Polaromonas naphthalenivorans CJ2 #=GS A1VSU4/11-107_212-301 DE Ribosomal RNA small subunit methyltransferase H #=GS A1VSU4/11-107_212-301 DR GENE3D; 12fe3e1c844c2d06218ee431f4676ef2/11-107_212-301; #=GS A1VSU4/11-107_212-301 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Comamonadaceae; Polaromonas; Polaromonas naphthalenivorans; #=GS A1VSU4/11-107_212-301 DR EC; 2.1.1.199; #=GS A0A1J5C2B9/28-112_217-306 AC A0A1J5C2B9 #=GS A0A1J5C2B9/28-112_217-306 OS Comamonadaceae bacterium CG2_30_57_122 #=GS A0A1J5C2B9/28-112_217-306 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1J5C2B9/28-112_217-306 DR GENE3D; 137bea6ca16f4c3798a2c9250589a60b/28-112_217-306; #=GS A0A1J5C2B9/28-112_217-306 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Comamonadaceae; Comamonadaceae bacterium CG2_30_57_122; #=GS A0A1J5C2B9/28-112_217-306 DR EC; 2.1.1.199; #=GS A1K3T8/10-110_214-307 AC A1K3T8 #=GS A1K3T8/10-110_214-307 OS Azoarcus sp. BH72 #=GS A1K3T8/10-110_214-307 DE Ribosomal RNA small subunit methyltransferase H #=GS A1K3T8/10-110_214-307 DR GENE3D; 13f3655cdf1ed55fe8e6a11b51ac3bd2/10-110_214-307; #=GS A1K3T8/10-110_214-307 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Rhodocyclales; Rhodocyclaceae; Azoarcus; Azoarcus sp. BH72; #=GS A1K3T8/10-110_214-307 DR EC; 2.1.1.199; #=GS W7QB77/18-119_223-316 AC W7QB77 #=GS W7QB77/18-119_223-316 OS Halomonas sp. BC04 #=GS W7QB77/18-119_223-316 DE Ribosomal RNA small subunit methyltransferase H #=GS W7QB77/18-119_223-316 DR GENE3D; 1418d89fd12df77caa88061bde4285e2/18-119_223-316; #=GS W7QB77/18-119_223-316 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Oceanospirillales; Halomonadaceae; Halomonas; Halomonas sp. BC04; #=GS W7QB77/18-119_223-316 DR EC; 2.1.1.199; #=GS Q1QNV1/8-112_215-306 AC Q1QNV1 #=GS Q1QNV1/8-112_215-306 OS Nitrobacter hamburgensis X14 #=GS Q1QNV1/8-112_215-306 DE Ribosomal RNA small subunit methyltransferase H #=GS Q1QNV1/8-112_215-306 DR GENE3D; 14311dd6681728dfc1f5a5ebc108b0d7/8-112_215-306; #=GS Q1QNV1/8-112_215-306 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhizobiales; Bradyrhizobiaceae; Nitrobacter; Nitrobacter hamburgensis; #=GS Q1QNV1/8-112_215-306 DR EC; 2.1.1.199; #=GS A0A0R2UYG0/12-114_216-305 AC A0A0R2UYG0 #=GS A0A0R2UYG0/12-114_216-305 OS Pelagibacteraceae bacterium BACL20 MAG-120920-bin64 #=GS A0A0R2UYG0/12-114_216-305 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0R2UYG0/12-114_216-305 DR GENE3D; 1435e9b790da534bfdee042d8466624d/12-114_216-305; #=GS A0A0R2UYG0/12-114_216-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Pelagibacterales; Pelagibacteraceae; Pelagibacteraceae bacterium BACL20 MAG-120920-bin64; #=GS A0A0R2UYG0/12-114_216-305 DR EC; 2.1.1.199; #=GS A0A0P1DFP6/10-113_217-311 AC A0A0P1DFP6 #=GS A0A0P1DFP6/10-113_217-311 OS Pseudomonas aeruginosa DK1 #=GS A0A0P1DFP6/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0P1DFP6/10-113_217-311 DR GENE3D; 1445bf6035a23de79223b53174bfa096/10-113_217-311; #=GS A0A0P1DFP6/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas aeruginosa group; Pseudomonas aeruginosa; #=GS A0A0P1DFP6/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A080VHR8/10-113_217-311 AC A0A080VHR8 #=GS A0A080VHR8/10-113_217-311 OS Pseudomonas aeruginosa #=GS A0A080VHR8/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A080VHR8/10-113_217-311 DR GENE3D; 1445bf6035a23de79223b53174bfa096/10-113_217-311; #=GS A0A080VHR8/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas aeruginosa group; Pseudomonas aeruginosa; #=GS A0A080VHR8/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A0K8P4K5/7-117_222-311 AC A0A0K8P4K5 #=GS A0A0K8P4K5/7-117_222-311 OS Ideonella sakaiensis #=GS A0A0K8P4K5/7-117_222-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0K8P4K5/7-117_222-311 DR GENE3D; 14774f67e8b8efd2b54fb1ceddbaaa09/7-117_222-311; #=GS A0A0K8P4K5/7-117_222-311 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Ideonella; Ideonella sakaiensis; #=GS A0A0K8P4K5/7-117_222-311 DR EC; 2.1.1.199; #=GS A0A1L5PVI9/12-115_219-313 AC A0A1L5PVI9 #=GS A0A1L5PVI9/12-115_219-313 OS Pseudomonas sp. DRA525 #=GS A0A1L5PVI9/12-115_219-313 DE 16S rRNA (Cytosine(1402)-N(4))-methyltransferase #=GS A0A1L5PVI9/12-115_219-313 DR GENE3D; 147d48904c3da58426cd3f3dd0366282/12-115_219-313; #=GS A0A1L5PVI9/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. DRA525; #=GS A0A1L5PVI9/12-115_219-313 DR EC; 2.1.1.199; #=GS V9WYU1/12-115_219-313 AC V9WYU1 #=GS V9WYU1/12-115_219-313 OS Pseudomonas sp. FGI182 #=GS V9WYU1/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS V9WYU1/12-115_219-313 DR GENE3D; 147d48904c3da58426cd3f3dd0366282/12-115_219-313; #=GS V9WYU1/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. FGI182; #=GS V9WYU1/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A143DEZ0/8-113_216-305 AC A0A143DEZ0 #=GS A0A143DEZ0/8-113_216-305 OS Haematospirillum jordaniae #=GS A0A143DEZ0/8-113_216-305 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A143DEZ0/8-113_216-305 DR GENE3D; 147ea426d1c4b8136bb2b053cd0e314a/8-113_216-305; #=GS A0A143DEZ0/8-113_216-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodospirillales; Rhodospirillaceae; Haematospirillum; Haematospirillum jordaniae; #=GS A0A143DEZ0/8-113_216-305 DR EC; 2.1.1.199; #=GS A0A1A6LCP5/10-111_219-315 AC A0A1A6LCP5 #=GS A0A1A6LCP5/10-111_219-315 OS Vibrio splendidus #=GS A0A1A6LCP5/10-111_219-315 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1A6LCP5/10-111_219-315 DR GENE3D; 148f5c91c98f0383a64728377ee52228/10-111_219-315; #=GS A0A1A6LCP5/10-111_219-315 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Vibrionales; Vibrionaceae; Vibrio; Vibrio splendidus; #=GS A0A1A6LCP5/10-111_219-315 DR EC; 2.1.1.199; #=GS A0A158IIT8/14-114_222-314 AC A0A158IIT8 #=GS A0A158IIT8/14-114_222-314 OS Burkholderia turbans #=GS A0A158IIT8/14-114_222-314 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A158IIT8/14-114_222-314 DR GENE3D; 149e575c10a9cc13fe2cc781ff0ce489/14-114_222-314; #=GS A0A158IIT8/14-114_222-314 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia turbans; #=GS A0A158IIT8/14-114_222-314 DR EC; 2.1.1.199; #=GS A0A1B8TLV4/12-115_219-313 AC A0A1B8TLV4 #=GS A0A1B8TLV4/12-115_219-313 OS Pseudomonas sp. AU12215 #=GS A0A1B8TLV4/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1B8TLV4/12-115_219-313 DR GENE3D; 14c945b84f5cfe96c726fb530f99cf66/12-115_219-313; #=GS A0A1B8TLV4/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. AU12215; #=GS A0A1B8TLV4/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A0S9LUB3/10-113_218-310 AC A0A0S9LUB3 #=GS A0A0S9LUB3/10-113_218-310 OS Pseudorhodoferax sp. Leaf265 #=GS A0A0S9LUB3/10-113_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0S9LUB3/10-113_218-310 DR GENE3D; 14d2d07dfcb40a74424bde9639f65dd4/10-113_218-310; #=GS A0A0S9LUB3/10-113_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Comamonadaceae; Pseudorhodoferax; Pseudorhodoferax sp. Leaf265; #=GS A0A0S9LUB3/10-113_218-310 DR EC; 2.1.1.199; #=GS A0A1C6LWR9/11-113_217-310 AC A0A1C6LWR9 #=GS A0A1C6LWR9/11-113_217-310 OS Vogesella sp. LIG4 #=GS A0A1C6LWR9/11-113_217-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1C6LWR9/11-113_217-310 DR GENE3D; 14d900ecdcfb4e79555ebcdd3c487fe9/11-113_217-310; #=GS A0A1C6LWR9/11-113_217-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Neisseriales; Chromobacteriaceae; Vogesella; Vogesella sp. LIG4; #=GS A0A1C6LWR9/11-113_217-310 DR EC; 2.1.1.199; #=GS A0A0N0M1W0/10-112_216-310 AC A0A0N0M1W0 #=GS A0A0N0M1W0/10-112_216-310 OS Pseudoalteromonas porphyrae #=GS A0A0N0M1W0/10-112_216-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0N0M1W0/10-112_216-310 DR GENE3D; 15511a4652b6d0b912a91b1db6fa3251/10-112_216-310; #=GS A0A0N0M1W0/10-112_216-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Pseudoalteromonadaceae; Pseudoalteromonas; Pseudoalteromonas porphyrae; #=GS A0A0N0M1W0/10-112_216-310 DR EC; 2.1.1.199; #=GS A0A1F4N8Q6/13-122_227-316 AC A0A1F4N8Q6 #=GS A0A1F4N8Q6/13-122_227-316 OS Burkholderiales bacterium RIFCSPLOWO2_12_FULL_64_99 #=GS A0A1F4N8Q6/13-122_227-316 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1F4N8Q6/13-122_227-316 DR GENE3D; 155b0c63bc077b69e75986efb30dea53/13-122_227-316; #=GS A0A1F4N8Q6/13-122_227-316 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiales bacterium RIFCSPLOWO2_12_FULL_64_99; #=GS A0A1F4N8Q6/13-122_227-316 DR EC; 2.1.1.199; #=GS B2JHG8/14-114_222-314 AC B2JHG8 #=GS B2JHG8/14-114_222-314 OS Paraburkholderia phymatum STM815 #=GS B2JHG8/14-114_222-314 DE Ribosomal RNA small subunit methyltransferase H #=GS B2JHG8/14-114_222-314 DR GENE3D; 156d547c0bfa84db6d2080c817658688/14-114_222-314; #=GS B2JHG8/14-114_222-314 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Paraburkholderia; Paraburkholderia phymatum; #=GS B2JHG8/14-114_222-314 DR EC; 2.1.1.199; #=GS A0A084ES22/6-107_208-298 AC A0A084ES22 #=GS A0A084ES22/6-107_208-298 OS Sphingobium yanoikuyae #=GS A0A084ES22/6-107_208-298 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A084ES22/6-107_208-298 DR GENE3D; 1570c3e2b91fb8a984806b178506c6a6/6-107_208-298; #=GS A0A084ES22/6-107_208-298 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingobium; Sphingobium yanoikuyae; #=GS A0A084ES22/6-107_208-298 DR EC; 2.1.1.199; #=GS I1DUI1/9-111_216-310 AC I1DUI1 #=GS I1DUI1/9-111_216-310 OS Rheinheimera nanhaiensis E407-8 #=GS I1DUI1/9-111_216-310 DE Ribosomal RNA small subunit methyltransferase H #=GS I1DUI1/9-111_216-310 DR GENE3D; 158123bb0d2be6eb8a7a45166df6eb0c/9-111_216-310; #=GS I1DUI1/9-111_216-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Chromatiales; Chromatiaceae; Rheinheimera; Rheinheimera nanhaiensis; #=GS I1DUI1/9-111_216-310 DR EC; 2.1.1.199; #=GS A0A177SQX6/12-115_219-313 AC A0A177SQX6 #=GS A0A177SQX6/12-115_219-313 OS Pseudomonas putida #=GS A0A177SQX6/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A177SQX6/12-115_219-313 DR GENE3D; 15c983385dd68ee90c5f65879a267be1/12-115_219-313; #=GS A0A177SQX6/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas putida group; Pseudomonas putida; #=GS A0A177SQX6/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A0J5XML3/10-111_215-311 AC A0A0J5XML3 #=GS A0A0J5XML3/10-111_215-311 OS Pectobacterium carotovorum subsp. carotovorum UGC32 #=GS A0A0J5XML3/10-111_215-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0J5XML3/10-111_215-311 DR GENE3D; 15df89e4257f044acdcb609e2358c4c5/10-111_215-311; #=GS A0A0J5XML3/10-111_215-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Enterobacterales; Pectobacteriaceae; Pectobacterium; Pectobacterium carotovorum; Pectobacterium carotovorum subsp. carotovorum; #=GS A0A0J5XML3/10-111_215-311 DR EC; 2.1.1.199; #=GS A9NA25/7-110_214-305 AC A9NA25 #=GS A9NA25/7-110_214-305 OS Coxiella burnetii RSA 331 #=GS A9NA25/7-110_214-305 DE Ribosomal RNA small subunit methyltransferase H #=GS A9NA25/7-110_214-305 DR GENE3D; 15e56d823ad7f1f4c41184cd7991e78a/7-110_214-305; #=GS A9NA25/7-110_214-305 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Legionellales; Coxiellaceae; Coxiella; Coxiella burnetii; #=GS A9NA25/7-110_214-305 DR EC; 2.1.1.199; #=GS A0A1L8A846/7-110_214-305 AC A0A1L8A846 #=GS A0A1L8A846/7-110_214-305 OS Coxiella burnetii 'MSU Goat Q177' #=GS A0A1L8A846/7-110_214-305 DE 16S rRNA (Cytosine(1402)-N(4))-methyltransferase #=GS A0A1L8A846/7-110_214-305 DR GENE3D; 15e56d823ad7f1f4c41184cd7991e78a/7-110_214-305; #=GS A0A1L8A846/7-110_214-305 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Legionellales; Coxiellaceae; Coxiella; Coxiella burnetii; #=GS A0A1L8A846/7-110_214-305 DR EC; 2.1.1.199; #=GS B6J5L7/7-110_214-305 AC B6J5L7 #=GS B6J5L7/7-110_214-305 OS Coxiella burnetii CbuK_Q154 #=GS B6J5L7/7-110_214-305 DE Ribosomal RNA small subunit methyltransferase H #=GS B6J5L7/7-110_214-305 DR GENE3D; 15e56d823ad7f1f4c41184cd7991e78a/7-110_214-305; #=GS B6J5L7/7-110_214-305 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Legionellales; Coxiellaceae; Coxiella; Coxiella burnetii; #=GS B6J5L7/7-110_214-305 DR EC; 2.1.1.199; #=GS A0A0Q0FDB8/10-112_216-310 AC A0A0Q0FDB8 #=GS A0A0Q0FDB8/10-112_216-310 OS Pseudoalteromonas sp. P1-25 #=GS A0A0Q0FDB8/10-112_216-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q0FDB8/10-112_216-310 DR GENE3D; 15e693a927098e0556670ce59bd5ec9f/10-112_216-310; #=GS A0A0Q0FDB8/10-112_216-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Pseudoalteromonadaceae; Pseudoalteromonas; Pseudoalteromonas sp. P1-25; #=GS A0A0Q0FDB8/10-112_216-310 DR EC; 2.1.1.199; #=GS Q0F4W6/13-116_220-311 AC Q0F4W6 #=GS Q0F4W6/13-116_220-311 OS Rhodobacterales bacterium HTCC2255 #=GS Q0F4W6/13-116_220-311 DE Ribosomal RNA small subunit methyltransferase H #=GS Q0F4W6/13-116_220-311 DR GENE3D; 15e809efcff50dba8ab4e792512a3288/13-116_220-311; #=GS Q0F4W6/13-116_220-311 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacterales bacterium HTCC2255; #=GS Q0F4W6/13-116_220-311 DR EC; 2.1.1.199; #=GS Y0KK09/28-128_233-326 AC Y0KK09 #=GS Y0KK09/28-128_233-326 OS Methylophilaceae bacterium 11 #=GS Y0KK09/28-128_233-326 DE Ribosomal RNA small subunit methyltransferase H #=GS Y0KK09/28-128_233-326 DR GENE3D; 1607b252c1e05fb6e2df6ed056e32b36/28-128_233-326; #=GS Y0KK09/28-128_233-326 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Methylophilales; Methylophilaceae; Methylophilaceae bacterium 11; #=GS Y0KK09/28-128_233-326 DR EC; 2.1.1.199; #=GS Q0BIK9/10-110_218-310 AC Q0BIK9 #=GS Q0BIK9/10-110_218-310 OS Burkholderia ambifaria AMMD #=GS Q0BIK9/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS Q0BIK9/10-110_218-310 DR GENE3D; 161076b3644370da99bf8ba01ee227d8/10-110_218-310; #=GS Q0BIK9/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia cepacia complex; Burkholderia ambifaria; #=GS Q0BIK9/10-110_218-310 DR EC; 2.1.1.199; #=GS A0A0N7M2L6/12-110_214-304 AC A0A0N7M2L6 #=GS A0A0N7M2L6/12-110_214-304 OS Phaeobacter sp. CECT 5382 #=GS A0A0N7M2L6/12-110_214-304 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0N7M2L6/12-110_214-304 DR GENE3D; 163b9f229c21e301835017d2360d15c2/12-110_214-304; #=GS A0A0N7M2L6/12-110_214-304 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Phaeobacter; Phaeobacter sp. CECT 5382; #=GS A0A0N7M2L6/12-110_214-304 DR EC; 2.1.1.199; #=GS A0A1D8IRL0/11-114_218-311 AC A0A1D8IRL0 #=GS A0A1D8IRL0/11-114_218-311 OS Acidihalobacter prosperus #=GS A0A1D8IRL0/11-114_218-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1D8IRL0/11-114_218-311 DR GENE3D; 165e048a838a392273ebd554b9e9d57d/11-114_218-311; #=GS A0A1D8IRL0/11-114_218-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Chromatiales; Ectothiorhodospiraceae; Acidihalobacter; Acidihalobacter prosperus; #=GS A0A1D8IRL0/11-114_218-311 DR EC; 2.1.1.199; #=GS A0A085VFU8/10-113_217-311 AC A0A085VFU8 #=GS A0A085VFU8/10-113_217-311 OS Pseudomonas syringae #=GS A0A085VFU8/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A085VFU8/10-113_217-311 DR GENE3D; 1666359adc53dbec2669078fe8ce2245/10-113_217-311; #=GS A0A085VFU8/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 1; Pseudomonas syringae; #=GS A0A085VFU8/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A176Z2R9/6-110_213-304 AC A0A176Z2R9 #=GS A0A176Z2R9/6-110_213-304 OS Bradyrhizobium sp. BR 10245 #=GS A0A176Z2R9/6-110_213-304 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A176Z2R9/6-110_213-304 DR GENE3D; 166de8b314e542d15153ed5cc8c70e86/6-110_213-304; #=GS A0A176Z2R9/6-110_213-304 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhizobiales; Bradyrhizobiaceae; Bradyrhizobium; Bradyrhizobium sp. BR 10245; #=GS A0A176Z2R9/6-110_213-304 DR EC; 2.1.1.199; #=GS A0A061JMS9/12-115_219-313 AC A0A061JMS9 #=GS A0A061JMS9/12-115_219-313 OS Pseudomonas stutzeri KOS6 #=GS A0A061JMS9/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A061JMS9/12-115_219-313 DR GENE3D; 16704fe2d9a5544f461777a03178d1f8/12-115_219-313; #=GS A0A061JMS9/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas stutzeri group; Pseudomonas stutzeri subgroup; Pseudomonas stutzeri; #=GS A0A061JMS9/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A0P7Z2L8/71-172_276-369 AC A0A0P7Z2L8 #=GS A0A0P7Z2L8/71-172_276-369 OS Halomonas sp. HL-48 #=GS A0A0P7Z2L8/71-172_276-369 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0P7Z2L8/71-172_276-369 DR GENE3D; 1683d2d4d8310ba37bb3521ea8a10f22/71-172_276-369; #=GS A0A0P7Z2L8/71-172_276-369 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Oceanospirillales; Halomonadaceae; Halomonas; Halomonas sp. HL-48; #=GS A0A0P7Z2L8/71-172_276-369 DR EC; 2.1.1.199; #=GS A0A0R2W925/12-111_215-307 AC A0A0R2W925 #=GS A0A0R2W925/12-111_215-307 OS SAR92 bacterium BACL16 MAG-120619-bin48 #=GS A0A0R2W925/12-111_215-307 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0R2W925/12-111_215-307 DR GENE3D; 16ac99f47ad99796c23f797755175d64/12-111_215-307; #=GS A0A0R2W925/12-111_215-307 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Cellvibrionales; Porticoccaceae; SAR92 bacterium BACL16 MAG-120619-bin48; #=GS A0A0R2W925/12-111_215-307 DR EC; 2.1.1.199; #=GS Q12EM3/10-106_211-300 AC Q12EM3 #=GS Q12EM3/10-106_211-300 OS Polaromonas sp. JS666 #=GS Q12EM3/10-106_211-300 DE Ribosomal RNA small subunit methyltransferase H #=GS Q12EM3/10-106_211-300 DR GENE3D; 16b83f42eb05e27ba137049a589b63f1/10-106_211-300; #=GS Q12EM3/10-106_211-300 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Comamonadaceae; Polaromonas; Polaromonas sp. JS666; #=GS Q12EM3/10-106_211-300 DR EC; 2.1.1.199; #=GS A0A1J5SUZ8/6-106_210-303 AC A0A1J5SUZ8 #=GS A0A1J5SUZ8/6-106_210-303 OS mine drainage metagenome #=GS A0A1J5SUZ8/6-106_210-303 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1J5SUZ8/6-106_210-303 DR GENE3D; 16c564ac360730afe081e7465f6660af/6-106_210-303; #=GS A0A1J5SUZ8/6-106_210-303 DR ORG; mine drainage metagenome; #=GS A0A1J5SUZ8/6-106_210-303 DR EC; 2.1.1.199; #=GS A0A0J6ILR9/12-115_219-313 AC A0A0J6ILR9 #=GS A0A0J6ILR9/12-115_219-313 OS Pseudomonas weihenstephanensis #=GS A0A0J6ILR9/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0J6ILR9/12-115_219-313 DR GENE3D; 16e6323065bb9dba3cb6b31bb4f68602/12-115_219-313; #=GS A0A0J6ILR9/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas weihenstephanensis; #=GS A0A0J6ILR9/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A105T4G0/12-115_219-313 AC A0A105T4G0 #=GS A0A105T4G0/12-115_219-313 OS Pseudomonas sp. TAD18 #=GS A0A105T4G0/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A105T4G0/12-115_219-313 DR GENE3D; 16e6323065bb9dba3cb6b31bb4f68602/12-115_219-313; #=GS A0A105T4G0/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. TAD18; #=GS A0A105T4G0/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A0J6LU55/12-115_219-313 AC A0A0J6LU55 #=GS A0A0J6LU55/12-115_219-313 OS Pseudomonas sp. DSM 28140 #=GS A0A0J6LU55/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0J6LU55/12-115_219-313 DR GENE3D; 16e6323065bb9dba3cb6b31bb4f68602/12-115_219-313; #=GS A0A0J6LU55/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. DSM 28140; #=GS A0A0J6LU55/12-115_219-313 DR EC; 2.1.1.199; #=GS I7EKB0/12-110_214-304 AC I7EKB0 #=GS I7EKB0/12-110_214-304 OS Phaeobacter inhibens 2.10 #=GS I7EKB0/12-110_214-304 DE Ribosomal RNA small subunit methyltransferase H #=GS I7EKB0/12-110_214-304 DR GENE3D; 16fbf752a5ee9c406050069a9c35ed18/12-110_214-304; #=GS I7EKB0/12-110_214-304 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Phaeobacter; Phaeobacter inhibens; #=GS I7EKB0/12-110_214-304 DR EC; 2.1.1.199; #=GS I7EKD5/12-110_214-304 AC I7EKD5 #=GS I7EKD5/12-110_214-304 OS Phaeobacter inhibens DSM 17395 #=GS I7EKD5/12-110_214-304 DE Ribosomal RNA small subunit methyltransferase H #=GS I7EKD5/12-110_214-304 DR GENE3D; 16fbf752a5ee9c406050069a9c35ed18/12-110_214-304; #=GS I7EKD5/12-110_214-304 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Phaeobacter; Phaeobacter inhibens; #=GS I7EKD5/12-110_214-304 DR EC; 2.1.1.199; #=GS A0A135IJS4/12-110_214-304 AC A0A135IJS4 #=GS A0A135IJS4/12-110_214-304 OS Phaeobacter inhibens #=GS A0A135IJS4/12-110_214-304 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A135IJS4/12-110_214-304 DR GENE3D; 16fbf752a5ee9c406050069a9c35ed18/12-110_214-304; #=GS A0A135IJS4/12-110_214-304 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Phaeobacter; Phaeobacter inhibens; #=GS A0A135IJS4/12-110_214-304 DR EC; 2.1.1.199; #=GS U2FM17/10-110_218-310 AC U2FM17 #=GS U2FM17/10-110_218-310 OS Burkholderia sp. AU4i #=GS U2FM17/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS U2FM17/10-110_218-310 DR GENE3D; 170d2af82556392337aa81cf4b97716d/10-110_218-310; #=GS U2FM17/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia cepacia complex; Burkholderia sp. AU4i; #=GS U2FM17/10-110_218-310 DR EC; 2.1.1.199; #=GS A0A0J5VJR3/10-110_218-310 AC A0A0J5VJR3 #=GS A0A0J5VJR3/10-110_218-310 OS Burkholderia lata #=GS A0A0J5VJR3/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0J5VJR3/10-110_218-310 DR GENE3D; 170d2af82556392337aa81cf4b97716d/10-110_218-310; #=GS A0A0J5VJR3/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia cepacia complex; Burkholderia lata; #=GS A0A0J5VJR3/10-110_218-310 DR EC; 2.1.1.199; #=GS A0A0J6LKJ9/10-110_218-310 AC A0A0J6LKJ9 #=GS A0A0J6LKJ9/10-110_218-310 OS Burkholderia sp. LK4 #=GS A0A0J6LKJ9/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0J6LKJ9/10-110_218-310 DR GENE3D; 170d2af82556392337aa81cf4b97716d/10-110_218-310; #=GS A0A0J6LKJ9/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia sp. LK4; #=GS A0A0J6LKJ9/10-110_218-310 DR EC; 2.1.1.199; #=GS A0A119AW20/10-110_218-310 AC A0A119AW20 #=GS A0A119AW20/10-110_218-310 OS Burkholderia cepacia #=GS A0A119AW20/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A119AW20/10-110_218-310 DR GENE3D; 170d2af82556392337aa81cf4b97716d/10-110_218-310; #=GS A0A119AW20/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia cepacia complex; Burkholderia cepacia; #=GS A0A119AW20/10-110_218-310 DR EC; 2.1.1.199; #=GS H1LPT9/15-116_226-320 AC H1LPT9 #=GS H1LPT9/15-116_226-320 OS Haemophilus sp. oral taxon 851 str. F0397 #=GS H1LPT9/15-116_226-320 DE Ribosomal RNA small subunit methyltransferase H #=GS H1LPT9/15-116_226-320 DR GENE3D; 171977f1770345393eab2b266a8f1fbb/15-116_226-320; #=GS H1LPT9/15-116_226-320 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Haemophilus; Haemophilus sp. oral taxon 851; #=GS H1LPT9/15-116_226-320 DR EC; 2.1.1.199; #=GS A0A149PZQ2/14-114_222-314 AC A0A149PZQ2 #=GS A0A149PZQ2/14-114_222-314 OS Paraburkholderia monticola #=GS A0A149PZQ2/14-114_222-314 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A149PZQ2/14-114_222-314 DR GENE3D; 173e9e427009fc90a9da64f2928e3989/14-114_222-314; #=GS A0A149PZQ2/14-114_222-314 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Paraburkholderia; Paraburkholderia monticola; #=GS A0A149PZQ2/14-114_222-314 DR EC; 2.1.1.199; #=GS A0A1F3B7V6/10-114_217-259_280-309 AC A0A1F3B7V6 #=GS A0A1F3B7V6/10-114_217-259_280-309 OS Alphaproteobacteria bacterium RIFOXYD12_FULL_60_8 #=GS A0A1F3B7V6/10-114_217-259_280-309 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1F3B7V6/10-114_217-259_280-309 DR GENE3D; 176194f5f3e986e9b3c811bb6c9bfb4a/10-114_217-259_280-309; #=GS A0A1F3B7V6/10-114_217-259_280-309 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Alphaproteobacteria bacterium RIFOXYD12_FULL_60_8; #=GS A0A1F3B7V6/10-114_217-259_280-309 DR EC; 2.1.1.199; #=GS A0A120DHC1/10-111_219-315 AC A0A120DHC1 #=GS A0A120DHC1/10-111_219-315 OS Vibrio toranzoniae #=GS A0A120DHC1/10-111_219-315 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A120DHC1/10-111_219-315 DR GENE3D; 176e893ca84bd29e9280d8a4a4c90114/10-111_219-315; #=GS A0A120DHC1/10-111_219-315 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Vibrionales; Vibrionaceae; Vibrio; Vibrio toranzoniae; #=GS A0A120DHC1/10-111_219-315 DR EC; 2.1.1.199; #=GS J4QMZ4/42-132_236-328 AC J4QMZ4 #=GS J4QMZ4/42-132_236-328 OS Achromobacter piechaudii HLE #=GS J4QMZ4/42-132_236-328 DE Ribosomal RNA small subunit methyltransferase H #=GS J4QMZ4/42-132_236-328 DR GENE3D; 177475c2d5a1c11c6ec31d0a23aab023/42-132_236-328; #=GS J4QMZ4/42-132_236-328 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Alcaligenaceae; Achromobacter; Achromobacter piechaudii; #=GS J4QMZ4/42-132_236-328 DR EC; 2.1.1.199; #=GS D5W4W7/10-110_218-310 AC D5W4W7 #=GS D5W4W7/10-110_218-310 OS Burkholderia sp. CCGE1002 #=GS D5W4W7/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS D5W4W7/10-110_218-310 DR GENE3D; 177e9c727c6986e5aea34554aaa1932f/10-110_218-310; #=GS D5W4W7/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia sp. CCGE1002; #=GS D5W4W7/10-110_218-310 DR EC; 2.1.1.199; #=GS J3HDN7/12-115_219-313 AC J3HDN7 #=GS J3HDN7/12-115_219-313 OS Pseudomonas sp. GM67 #=GS J3HDN7/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS J3HDN7/12-115_219-313 DR GENE3D; 1796e4b69f8d38d61adefb311b96e7c5/12-115_219-313; #=GS J3HDN7/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. GM67; #=GS J3HDN7/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A0C2A3X1/12-115_219-313 AC A0A0C2A3X1 #=GS A0A0C2A3X1/12-115_219-313 OS Pseudomonas fluorescens #=GS A0A0C2A3X1/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0C2A3X1/12-115_219-313 DR GENE3D; 179aea59be3ebcc6dfb393e0bd5f9df1/12-115_219-313; #=GS A0A0C2A3X1/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas fluorescens group; Pseudomonas fluorescens; #=GS A0A0C2A3X1/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A081RJ15/14-115_216-306 AC A0A081RJ15 #=GS A0A081RJ15/14-115_216-306 OS Sphingobium chlorophenolicum #=GS A0A081RJ15/14-115_216-306 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A081RJ15/14-115_216-306 DR GENE3D; 17a3a70a54a526f80518c2489975373f/14-115_216-306; #=GS A0A081RJ15/14-115_216-306 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingobium; Sphingobium chlorophenolicum; #=GS A0A081RJ15/14-115_216-306 DR EC; 2.1.1.199; #=GS A0A0P9JUD6/10-113_217-311 AC A0A0P9JUD6 #=GS A0A0P9JUD6/10-113_217-311 OS Pseudomonas syringae pv. antirrhini #=GS A0A0P9JUD6/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0P9JUD6/10-113_217-311 DR GENE3D; 17a72d5a7d2257d68ea5d81564af5432/10-113_217-311; #=GS A0A0P9JUD6/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 3; #=GS A0A0P9JUD6/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A0P9JET3/10-113_217-311 AC A0A0P9JET3 #=GS A0A0P9JET3/10-113_217-311 OS Pseudomonas syringae pv. berberidis #=GS A0A0P9JET3/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0P9JET3/10-113_217-311 DR GENE3D; 17a72d5a7d2257d68ea5d81564af5432/10-113_217-311; #=GS A0A0P9JET3/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 3; #=GS A0A0P9JET3/10-113_217-311 DR EC; 2.1.1.199; #=GS Q87WX7/10-113_217-311 AC Q87WX7 #=GS Q87WX7/10-113_217-311 OS [Pseudomonas syringae] pv. tomato str. DC3000 #=GS Q87WX7/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS Q87WX7/10-113_217-311 DR GENE3D; 17a72d5a7d2257d68ea5d81564af5432/10-113_217-311; #=GS Q87WX7/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 3; #=GS Q87WX7/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A0N8T4U5/10-113_217-311 AC A0A0N8T4U5 #=GS A0A0N8T4U5/10-113_217-311 OS Pseudomonas syringae pv. tomato #=GS A0A0N8T4U5/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0N8T4U5/10-113_217-311 DR GENE3D; 17a72d5a7d2257d68ea5d81564af5432/10-113_217-311; #=GS A0A0N8T4U5/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 3; #=GS A0A0N8T4U5/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A0N0FQ43/10-113_217-311 AC A0A0N0FQ43 #=GS A0A0N0FQ43/10-113_217-311 OS Pseudomonas syringae pv. maculicola #=GS A0A0N0FQ43/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0N0FQ43/10-113_217-311 DR GENE3D; 17a72d5a7d2257d68ea5d81564af5432/10-113_217-311; #=GS A0A0N0FQ43/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 3; #=GS A0A0N0FQ43/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A0P9KFC4/10-113_217-311 AC A0A0P9KFC4 #=GS A0A0P9KFC4/10-113_217-311 OS Pseudomonas syringae pv. apii #=GS A0A0P9KFC4/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0P9KFC4/10-113_217-311 DR GENE3D; 17a72d5a7d2257d68ea5d81564af5432/10-113_217-311; #=GS A0A0P9KFC4/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 3; #=GS A0A0P9KFC4/10-113_217-311 DR EC; 2.1.1.199; #=GS G4QC63/37-128_232-324 AC G4QC63 #=GS G4QC63/37-128_232-324 OS Taylorella asinigenitalis MCE3 #=GS G4QC63/37-128_232-324 DE Ribosomal RNA small subunit methyltransferase H #=GS G4QC63/37-128_232-324 DR GENE3D; 17ea37b8c8b5198fbdead040c190518f/37-128_232-324; #=GS G4QC63/37-128_232-324 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Alcaligenaceae; Taylorella; Taylorella asinigenitalis; #=GS G4QC63/37-128_232-324 DR EC; 2.1.1.199; #=GS A0A1D7NKB3/5-108_209-299 AC A0A1D7NKB3 #=GS A0A1D7NKB3/5-108_209-299 OS Porphyrobacter sp. LM 6 #=GS A0A1D7NKB3/5-108_209-299 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1D7NKB3/5-108_209-299 DR GENE3D; 18110c354778d2d892118b08b62c4079/5-108_209-299; #=GS A0A1D7NKB3/5-108_209-299 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Erythrobacteraceae; Porphyrobacter; Porphyrobacter sp. LM 6; #=GS A0A1D7NKB3/5-108_209-299 DR EC; 2.1.1.199; #=GS Q2NCZ8/7-112_213-303 AC Q2NCZ8 #=GS Q2NCZ8/7-112_213-303 OS Erythrobacter litoralis HTCC2594 #=GS Q2NCZ8/7-112_213-303 DE Ribosomal RNA small subunit methyltransferase H #=GS Q2NCZ8/7-112_213-303 DR GENE3D; 181c07b052b2e7443c423334ca2e0b34/7-112_213-303; #=GS Q2NCZ8/7-112_213-303 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Erythrobacteraceae; Erythrobacter; Erythrobacter litoralis; #=GS Q2NCZ8/7-112_213-303 DR EC; 2.1.1.199; #=GS A0A074MEV9/7-110_211-301 AC A0A074MEV9 #=GS A0A074MEV9/7-110_211-301 OS Erythrobacter longus #=GS A0A074MEV9/7-110_211-301 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A074MEV9/7-110_211-301 DR GENE3D; 1856f2a4c7ee6d2415ad00c2030637b4/7-110_211-301; #=GS A0A074MEV9/7-110_211-301 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Erythrobacteraceae; Erythrobacter; Erythrobacter longus; #=GS A0A074MEV9/7-110_211-301 DR EC; 2.1.1.199; #=GS A0A0U4WSU4/10-113_217-311 AC A0A0U4WSU4 #=GS A0A0U4WSU4/10-113_217-311 OS Pseudomonas oryzihabitans #=GS A0A0U4WSU4/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0U4WSU4/10-113_217-311 DR GENE3D; 187b21bc7d1f222893a0696995b94f27/10-113_217-311; #=GS A0A0U4WSU4/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas putida group; Pseudomonas oryzihabitans; #=GS A0A0U4WSU4/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A118G3Z0/10-110_218-310 AC A0A118G3Z0 #=GS A0A118G3Z0/10-110_218-310 OS Burkholderia sp. FL-7-2-10-S1-D7 #=GS A0A118G3Z0/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A118G3Z0/10-110_218-310 DR GENE3D; 187f7ff70d37d3ee64a609cc6bf41548/10-110_218-310; #=GS A0A118G3Z0/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia cepacia complex; Burkholderia sp. FL-7-2-10-S1-D7; #=GS A0A118G3Z0/10-110_218-310 DR EC; 2.1.1.199; #=GS A0A0Q0LN16/10-111_219-315 AC A0A0Q0LN16 #=GS A0A0Q0LN16/10-111_219-315 OS Vibrio metoecus #=GS A0A0Q0LN16/10-111_219-315 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q0LN16/10-111_219-315 DR GENE3D; 188473de62061f67bfb701d7cb39087a/10-111_219-315; #=GS A0A0Q0LN16/10-111_219-315 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Vibrionales; Vibrionaceae; Vibrio; Vibrio metoecus; #=GS A0A0Q0LN16/10-111_219-315 DR EC; 2.1.1.199; #=GS A0A0B1YVQ7/10-110_218-310 AC A0A0B1YVQ7 #=GS A0A0B1YVQ7/10-110_218-310 OS Burkholderia sp. A9 #=GS A0A0B1YVQ7/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0B1YVQ7/10-110_218-310 DR GENE3D; 18997b7fb743f67c82885296b84a98a1/10-110_218-310; #=GS A0A0B1YVQ7/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia sp. A9; #=GS A0A0B1YVQ7/10-110_218-310 DR EC; 2.1.1.199; #=GS A0A1E3ZJR8/10-116_220-312 AC A0A1E3ZJR8 #=GS A0A1E3ZJR8/10-116_220-312 OS Bordetella sp. SCN 67-23 #=GS A0A1E3ZJR8/10-116_220-312 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1E3ZJR8/10-116_220-312 DR GENE3D; 18ebbc669f21486269714c1eeaec1fa7/10-116_220-312; #=GS A0A1E3ZJR8/10-116_220-312 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Alcaligenaceae; Bordetella; Bordetella sp. SCN 67-23; #=GS A0A1E3ZJR8/10-116_220-312 DR EC; 2.1.1.199; #=GS A0A017HM57/1-84_186-275 AC A0A017HM57 #=GS A0A017HM57/1-84_186-275 OS Rubellimicrobium mesophilum DSM 19309 #=GS A0A017HM57/1-84_186-275 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A017HM57/1-84_186-275 DR GENE3D; 18eef826ba271d15f8ccfb3eae86419a/1-84_186-275; #=GS A0A017HM57/1-84_186-275 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Rubellimicrobium; Rubellimicrobium mesophilum; #=GS A0A017HM57/1-84_186-275 DR EC; 2.1.1.199; #=GS A0A1E9C2N0/12-115_219-313 AC A0A1E9C2N0 #=GS A0A1E9C2N0/12-115_219-313 OS Pseudomonas sp. HMSC066B11 #=GS A0A1E9C2N0/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1E9C2N0/12-115_219-313 DR GENE3D; 190b8cfeea9fb3f5b63a09b9f181b8fa/12-115_219-313; #=GS A0A1E9C2N0/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. HMSC066B11; #=GS A0A1E9C2N0/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A087F8Y1/10-113_217-311 AC A0A087F8Y1 #=GS A0A087F8Y1/10-113_217-311 OS Pseudomonas sp. 1-7 #=GS A0A087F8Y1/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A087F8Y1/10-113_217-311 DR GENE3D; 1910dc78b559540328e79feb815b1461/10-113_217-311; #=GS A0A087F8Y1/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. 1-7; #=GS A0A087F8Y1/10-113_217-311 DR EC; 2.1.1.199; #=GS B1SZ10/10-110_218-310 AC B1SZ10 #=GS B1SZ10/10-110_218-310 OS Burkholderia ambifaria MEX-5 #=GS B1SZ10/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS B1SZ10/10-110_218-310 DR GENE3D; 19403f7ad3c6f0553b9ab038d40821d1/10-110_218-310; #=GS B1SZ10/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia cepacia complex; Burkholderia ambifaria; #=GS B1SZ10/10-110_218-310 DR EC; 2.1.1.199; #=GS A0A0Q7X0B3/14-117_221-313 AC A0A0Q7X0B3 #=GS A0A0Q7X0B3/14-117_221-313 OS Duganella sp. Root1480D1 #=GS A0A0Q7X0B3/14-117_221-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q7X0B3/14-117_221-313 DR GENE3D; 1942ae8d881281805f131388127087c5/14-117_221-313; #=GS A0A0Q7X0B3/14-117_221-313 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Oxalobacteraceae; Duganella; Duganella sp. Root1480D1; #=GS A0A0Q7X0B3/14-117_221-313 DR EC; 2.1.1.199; #=GS C0EQE1/12-114_218-311 AC C0EQE1 #=GS C0EQE1/12-114_218-311 OS Neisseria flavescens NRL30031/H210 #=GS C0EQE1/12-114_218-311 DE Ribosomal RNA small subunit methyltransferase H #=GS C0EQE1/12-114_218-311 DR GENE3D; 1986bc6639717235e92f2db84a5fb9b6/12-114_218-311; #=GS C0EQE1/12-114_218-311 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Neisseriales; Neisseriaceae; Neisseria; Neisseria flavescens; #=GS C0EQE1/12-114_218-311 DR EC; 2.1.1.199; #=GS A0A1E4MDS5/15-120_221-312 AC A0A1E4MDS5 #=GS A0A1E4MDS5/15-120_221-312 OS Novosphingobium sp. SCN 66-18 #=GS A0A1E4MDS5/15-120_221-312 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1E4MDS5/15-120_221-312 DR GENE3D; 198750b84b57ca7b7f14719fa985db9d/15-120_221-312; #=GS A0A1E4MDS5/15-120_221-312 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Novosphingobium; Novosphingobium sp. SCN 66-18; #=GS A0A1E4MDS5/15-120_221-312 DR EC; 2.1.1.199; #=GS A0A147H9Y5/10-113_217-311 AC A0A147H9Y5 #=GS A0A147H9Y5/10-113_217-311 OS Pseudomonas psychrotolerans #=GS A0A147H9Y5/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A147H9Y5/10-113_217-311 DR GENE3D; 1997a8fc007874ce652186475139b7ba/10-113_217-311; #=GS A0A147H9Y5/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas psychrotolerans; #=GS A0A147H9Y5/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A0W1ACK9/7-110_214-306 AC A0A0W1ACK9 #=GS A0A0W1ACK9/7-110_214-306 OS Legionella steigerwaltii #=GS A0A0W1ACK9/7-110_214-306 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0W1ACK9/7-110_214-306 DR GENE3D; 1998181134f44fa18447ebd96c45bcb5/7-110_214-306; #=GS A0A0W1ACK9/7-110_214-306 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Legionellales; Legionellaceae; Legionella; Legionella steigerwaltii; #=GS A0A0W1ACK9/7-110_214-306 DR EC; 2.1.1.199; #=GS S5U010/10-114_218-310 AC S5U010 #=GS S5U010/10-114_218-310 OS Cycloclasticus zancles 78-ME #=GS S5U010/10-114_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS S5U010/10-114_218-310 DR GENE3D; 19b16bb30459b7b08d62ac8309ddddb4/10-114_218-310; #=GS S5U010/10-114_218-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Thiotrichales; Piscirickettsiaceae; Cycloclasticus; Cycloclasticus zancles; #=GS S5U010/10-114_218-310 DR EC; 2.1.1.199; #=GS K0C3Z1/10-114_218-310 AC K0C3Z1 #=GS K0C3Z1/10-114_218-310 OS Cycloclasticus sp. P1 #=GS K0C3Z1/10-114_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS K0C3Z1/10-114_218-310 DR GENE3D; 19b16bb30459b7b08d62ac8309ddddb4/10-114_218-310; #=GS K0C3Z1/10-114_218-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Thiotrichales; Piscirickettsiaceae; Cycloclasticus; Cycloclasticus sp. P1; #=GS K0C3Z1/10-114_218-310 DR EC; 2.1.1.199; #=GS C6X980/19-119_224-317 AC C6X980 #=GS C6X980/19-119_224-317 OS Methylovorus glucosetrophus SIP3-4 #=GS C6X980/19-119_224-317 DE Ribosomal RNA small subunit methyltransferase H #=GS C6X980/19-119_224-317 DR GENE3D; 19beb926b0b0465213f848df701adc89/19-119_224-317; #=GS C6X980/19-119_224-317 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Methylophilales; Methylophilaceae; Methylovorus; Methylovorus glucosotrophus; #=GS C6X980/19-119_224-317 DR EC; 2.1.1.199; #=GS A0A1E8SCA7/11-113_217-310 AC A0A1E8SCA7 #=GS A0A1E8SCA7/11-113_217-310 OS Neisseria sp. HMSC072F04 #=GS A0A1E8SCA7/11-113_217-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1E8SCA7/11-113_217-310 DR GENE3D; 1a03ed0ccdbc680e49b9fdfe7a012eff/11-113_217-310; #=GS A0A1E8SCA7/11-113_217-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Neisseriales; Neisseriaceae; Neisseria; Neisseria sp. HMSC072F04; #=GS A0A1E8SCA7/11-113_217-310 DR EC; 2.1.1.199; #=GS Q6D0H5/10-111_215-311 AC Q6D0H5 #=GS Q6D0H5/10-111_215-311 OS Pectobacterium atrosepticum SCRI1043 #=GS Q6D0H5/10-111_215-311 DE Ribosomal RNA small subunit methyltransferase H #=GS Q6D0H5/10-111_215-311 DR GENE3D; 1a356790f4e425efa0acd3387268936e/10-111_215-311; #=GS Q6D0H5/10-111_215-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Enterobacterales; Pectobacteriaceae; Pectobacterium; Pectobacterium atrosepticum; #=GS Q6D0H5/10-111_215-311 DR EC; 2.1.1.199; #=GS A1U3G6/18-120_224-316 AC A1U3G6 #=GS A1U3G6/18-120_224-316 OS Marinobacter hydrocarbonoclasticus VT8 #=GS A1U3G6/18-120_224-316 DE Ribosomal RNA small subunit methyltransferase H #=GS A1U3G6/18-120_224-316 DR GENE3D; 1a5f45b82e16effc259a49d7aeb2f9d0/18-120_224-316; #=GS A1U3G6/18-120_224-316 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Alteromonadaceae; Marinobacter; Marinobacter hydrocarbonoclasticus; #=GS A1U3G6/18-120_224-316 DR EC; 2.1.1.199; #=GS U7NZI3/18-120_224-316 AC U7NZI3 #=GS U7NZI3/18-120_224-316 OS Marinobacter sp. C1S70 #=GS U7NZI3/18-120_224-316 DE Ribosomal RNA small subunit methyltransferase H #=GS U7NZI3/18-120_224-316 DR GENE3D; 1a5f45b82e16effc259a49d7aeb2f9d0/18-120_224-316; #=GS U7NZI3/18-120_224-316 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Alteromonadaceae; Marinobacter; Marinobacter sp. C1S70; #=GS U7NZI3/18-120_224-316 DR EC; 2.1.1.199; #=GS A0A063Y880/10-113_217-310 AC A0A063Y880 #=GS A0A063Y880/10-113_217-310 OS Nitrincola lacisaponensis #=GS A0A063Y880/10-113_217-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A063Y880/10-113_217-310 DR GENE3D; 1ad94261b59ded42a903e6864cec9d04/10-113_217-310; #=GS A0A063Y880/10-113_217-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Oceanospirillales; Oceanospirillaceae; Nitrincola; Nitrincola lacisaponensis; #=GS A0A063Y880/10-113_217-310 DR EC; 2.1.1.199; #=GS A0A150ZJQ1/6-110_213-304 AC A0A150ZJQ1 #=GS A0A150ZJQ1/6-110_213-304 OS Bradyrhizobium sp. DOA1 #=GS A0A150ZJQ1/6-110_213-304 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A150ZJQ1/6-110_213-304 DR GENE3D; 1aebd15add74c09a2d9836f7e68817b5/6-110_213-304; #=GS A0A150ZJQ1/6-110_213-304 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhizobiales; Bradyrhizobiaceae; Bradyrhizobium; Bradyrhizobium sp. DOA1; #=GS A0A150ZJQ1/6-110_213-304 DR EC; 2.1.1.199; #=GS A0A0P9B0I8/10-109_214-303 AC A0A0P9B0I8 #=GS A0A0P9B0I8/10-109_214-303 OS Variovorax paradoxus #=GS A0A0P9B0I8/10-109_214-303 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0P9B0I8/10-109_214-303 DR GENE3D; 1af85e2743970436a9420952374acddf/10-109_214-303; #=GS A0A0P9B0I8/10-109_214-303 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Comamonadaceae; Variovorax; Variovorax paradoxus; #=GS A0A0P9B0I8/10-109_214-303 DR EC; 2.1.1.199; #=GS F9GM58/15-116_226-320 AC F9GM58 #=GS F9GM58/15-116_226-320 OS Haemophilus haemolyticus M19501 #=GS F9GM58/15-116_226-320 DE Ribosomal RNA small subunit methyltransferase H #=GS F9GM58/15-116_226-320 DR GENE3D; 1b091d739dd6da46e1ff619f109d79f7/15-116_226-320; #=GS F9GM58/15-116_226-320 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Haemophilus; Haemophilus haemolyticus; #=GS F9GM58/15-116_226-320 DR EC; 2.1.1.199; #=GS A0A076K2R1/11-109_213-302 AC A0A076K2R1 #=GS A0A076K2R1/11-109_213-302 OS Planktomarina temperata RCA23 #=GS A0A076K2R1/11-109_213-302 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A076K2R1/11-109_213-302 DR GENE3D; 1b94911f6d8f1f58dbd8e3cb3b5aaba8/11-109_213-302; #=GS A0A076K2R1/11-109_213-302 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Planktomarina; Planktomarina temperata; #=GS A0A076K2R1/11-109_213-302 DR EC; 2.1.1.199; #=GS Q0BXT4/15-118_222-264_285-314 AC Q0BXT4 #=GS Q0BXT4/15-118_222-264_285-314 OS Hyphomonas neptunium ATCC 15444 #=GS Q0BXT4/15-118_222-264_285-314 DE Ribosomal RNA small subunit methyltransferase H #=GS Q0BXT4/15-118_222-264_285-314 DR GENE3D; 1c369b1b5cc5fc18b3fcd8c55403015f/15-118_222-264_285-314; #=GS Q0BXT4/15-118_222-264_285-314 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Hyphomonadaceae; Hyphomonas; Hyphomonas neptunium; #=GS Q0BXT4/15-118_222-264_285-314 DR EC; 2.1.1.199; #=GS A0A059FSE7/15-118_222-264_285-314 AC A0A059FSE7 #=GS A0A059FSE7/15-118_222-264_285-314 OS Hyphomonas hirschiana VP5 #=GS A0A059FSE7/15-118_222-264_285-314 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A059FSE7/15-118_222-264_285-314 DR GENE3D; 1c369b1b5cc5fc18b3fcd8c55403015f/15-118_222-264_285-314; #=GS A0A059FSE7/15-118_222-264_285-314 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Hyphomonadaceae; Hyphomonas; Hyphomonas hirschiana; #=GS A0A059FSE7/15-118_222-264_285-314 DR EC; 2.1.1.199; #=GS A0A0Q0T132/12-115_219-313 AC A0A0Q0T132 #=GS A0A0Q0T132/12-115_219-313 OS Pseudomonas endophytica #=GS A0A0Q0T132/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q0T132/12-115_219-313 DR GENE3D; 1c6ca1eea415b81d1c6e1a898b57fb88/12-115_219-313; #=GS A0A0Q0T132/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas endophytica; #=GS A0A0Q0T132/12-115_219-313 DR EC; 2.1.1.199; #=GS Q9REQ9/10-114_216-305 AC Q9REQ9 #=GS Q9REQ9/10-114_216-305 OS Zymomonas mobilis subsp. mobilis ZM4 = ATCC 31821 #=GS Q9REQ9/10-114_216-305 DE Ribosomal RNA small subunit methyltransferase H #=GS Q9REQ9/10-114_216-305 DR GENE3D; 1c927b9f8705a74a4767e88fe7206609/10-114_216-305; #=GS Q9REQ9/10-114_216-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Zymomonas; Zymomonas mobilis; Zymomonas mobilis subsp. mobilis; #=GS Q9REQ9/10-114_216-305 DR EC; 2.1.1.199; #=GS A0A0Q8G835/10-109_213-305 AC A0A0Q8G835 #=GS A0A0Q8G835/10-109_213-305 OS Caulobacter sp. Root655 #=GS A0A0Q8G835/10-109_213-305 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q8G835/10-109_213-305 DR GENE3D; 1ca2696d00ad2b8027e137d361c1613c/10-109_213-305; #=GS A0A0Q8G835/10-109_213-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Caulobacterales; Caulobacteraceae; Caulobacter; Caulobacter sp. Root655; #=GS A0A0Q8G835/10-109_213-305 DR EC; 2.1.1.199; #=GS A0A0H5Q8S4/1-102_206-299 AC A0A0H5Q8S4 #=GS A0A0H5Q8S4/1-102_206-299 OS Neisseria meningitidis serogroup B #=GS A0A0H5Q8S4/1-102_206-299 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0H5Q8S4/1-102_206-299 DR GENE3D; 1cdf92a2e12adb382983afe99604ec6a/1-102_206-299; #=GS A0A0H5Q8S4/1-102_206-299 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Neisseriales; Neisseriaceae; Neisseria; Neisseria meningitidis; #=GS A0A0H5Q8S4/1-102_206-299 DR EC; 2.1.1.199; #=GS A0A1J9ACS1/10-110_218-310 AC A0A1J9ACS1 #=GS A0A1J9ACS1/10-110_218-310 OS Burkholderia ubonensis #=GS A0A1J9ACS1/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1J9ACS1/10-110_218-310 DR GENE3D; 1ce80e0c97a89b8697a6f0d5e85fde45/10-110_218-310; #=GS A0A1J9ACS1/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia ubonensis; #=GS A0A1J9ACS1/10-110_218-310 DR EC; 2.1.1.199; #=GS H8Z3J1/23-126_230-322 AC H8Z3J1 #=GS H8Z3J1/23-126_230-322 OS Thiorhodovibrio sp. 970 #=GS H8Z3J1/23-126_230-322 DE Ribosomal RNA small subunit methyltransferase H #=GS H8Z3J1/23-126_230-322 DR GENE3D; 1d331a02cfbbacf0af82af67bad57690/23-126_230-322; #=GS H8Z3J1/23-126_230-322 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Chromatiales; Chromatiaceae; Thiorhodovibrio; Thiorhodovibrio sp. 970; #=GS H8Z3J1/23-126_230-322 DR EC; 2.1.1.199; #=GS A0A1A7Q2D2/14-115_225-319 AC A0A1A7Q2D2 #=GS A0A1A7Q2D2/14-115_225-319 OS Gallibacterium salpingitidis #=GS A0A1A7Q2D2/14-115_225-319 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1A7Q2D2/14-115_225-319 DR GENE3D; 1d575afd3276e961f0897a3e0f580c8d/14-115_225-319; #=GS A0A1A7Q2D2/14-115_225-319 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Gallibacterium; Gallibacterium salpingitidis; #=GS A0A1A7Q2D2/14-115_225-319 DR EC; 2.1.1.199; #=GS A0A1F1Q0V1/12-115_219-313 AC A0A1F1Q0V1 #=GS A0A1F1Q0V1/12-115_219-313 OS Pseudomonas sp. HMSC08G10 #=GS A0A1F1Q0V1/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1F1Q0V1/12-115_219-313 DR GENE3D; 1d6f76354707d0d93402e7a4638c64ab/12-115_219-313; #=GS A0A1F1Q0V1/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. HMSC08G10; #=GS A0A1F1Q0V1/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A081BA17/2-97_201-243_264-292 AC A0A081BA17 #=GS A0A081BA17/2-97_201-243_264-292 OS Tepidicaulis marinus #=GS A0A081BA17/2-97_201-243_264-292 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A081BA17/2-97_201-243_264-292 DR GENE3D; 1d7d1f92bf6ab7bf4712e9c762e28845/2-97_201-243_264-292; #=GS A0A081BA17/2-97_201-243_264-292 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhizobiales; Rhodobiaceae; Tepidicaulis; Tepidicaulis marinus; #=GS A0A081BA17/2-97_201-243_264-292 DR EC; 2.1.1.199; #=GS A0A1M4N2E4/11-109_213-304 AC A0A1M4N2E4 #=GS A0A1M4N2E4/11-109_213-304 OS Donghicola sp. KarMa #=GS A0A1M4N2E4/11-109_213-304 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1M4N2E4/11-109_213-304 DR GENE3D; 1d815cf6d390375574ec66a749da8de6/11-109_213-304; #=GS A0A1M4N2E4/11-109_213-304 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Donghicola; Donghicola sp. KarMa; #=GS A0A1M4N2E4/11-109_213-304 DR EC; 2.1.1.199; #=GS A0A0P1I4R0/13-111_215-306 AC A0A0P1I4R0 #=GS A0A0P1I4R0/13-111_215-306 OS Phaeobacter sp. CECT 7735 #=GS A0A0P1I4R0/13-111_215-306 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0P1I4R0/13-111_215-306 DR GENE3D; 1dc2b1aa4fd7cd6c1804d34d0823dff7/13-111_215-306; #=GS A0A0P1I4R0/13-111_215-306 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Phaeobacter; Phaeobacter sp. CECT 7735; #=GS A0A0P1I4R0/13-111_215-306 DR EC; 2.1.1.199; #=GS A0A0P9GTW3/10-113_217-311 AC A0A0P9GTW3 #=GS A0A0P9GTW3/10-113_217-311 OS Pseudomonas syringae pv. atrofaciens #=GS A0A0P9GTW3/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0P9GTW3/10-113_217-311 DR GENE3D; 1dcdf174db181c57badf7bb9d9cd1c45/10-113_217-311; #=GS A0A0P9GTW3/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 1; Pseudomonas syringae; #=GS A0A0P9GTW3/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A0P9TYS5/10-113_217-311 AC A0A0P9TYS5 #=GS A0A0P9TYS5/10-113_217-311 OS Pseudomonas syringae pv. lapsa #=GS A0A0P9TYS5/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0P9TYS5/10-113_217-311 DR GENE3D; 1dcdf174db181c57badf7bb9d9cd1c45/10-113_217-311; #=GS A0A0P9TYS5/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 1; Pseudomonas syringae; #=GS A0A0P9TYS5/10-113_217-311 DR EC; 2.1.1.199; #=GS H5TDK6/20-122_226-319 AC H5TDK6 #=GS H5TDK6/20-122_226-319 OS Glaciecola punicea ACAM 611 #=GS H5TDK6/20-122_226-319 DE Ribosomal RNA small subunit methyltransferase H #=GS H5TDK6/20-122_226-319 DR GENE3D; 1de96ba3998cfb6b9a62212b84a03d33/20-122_226-319; #=GS H5TDK6/20-122_226-319 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Alteromonadaceae; Glaciecola; Glaciecola punicea; #=GS H5TDK6/20-122_226-319 DR EC; 2.1.1.199; #=GS A6T2G6/14-117_221-313 AC A6T2G6 #=GS A6T2G6/14-117_221-313 OS Janthinobacterium sp. Marseille #=GS A6T2G6/14-117_221-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A6T2G6/14-117_221-313 DR GENE3D; 1e147086524cf09caf951ed5bc43154d/14-117_221-313; #=GS A6T2G6/14-117_221-313 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Oxalobacteraceae; Janthinobacterium; Janthinobacterium sp. Marseille; #=GS A6T2G6/14-117_221-313 DR EC; 2.1.1.199; #=GS A0A0D5M500/34-135_239-332 AC A0A0D5M500 #=GS A0A0D5M500/34-135_239-332 OS Halomonas sp. KO116 #=GS A0A0D5M500/34-135_239-332 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0D5M500/34-135_239-332 DR GENE3D; 1e18bd7eb5de6b52630b3f42c706db9c/34-135_239-332; #=GS A0A0D5M500/34-135_239-332 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Oceanospirillales; Halomonadaceae; Halomonas; Halomonas sp. KO116; #=GS A0A0D5M500/34-135_239-332 DR EC; 2.1.1.199; #=GS A0A0P0MAK5/11-110_215-304 AC A0A0P0MAK5 #=GS A0A0P0MAK5/11-110_215-304 OS Limnohabitans sp. 63ED37-2 #=GS A0A0P0MAK5/11-110_215-304 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0P0MAK5/11-110_215-304 DR GENE3D; 1e1b429c806377393291d2b0f88a7624/11-110_215-304; #=GS A0A0P0MAK5/11-110_215-304 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Comamonadaceae; Limnohabitans; Limnohabitans sp. 63ED37-2; #=GS A0A0P0MAK5/11-110_215-304 DR EC; 2.1.1.199; #=GS A0A0F2QG69/6-109_213-307 AC A0A0F2QG69 #=GS A0A0F2QG69/6-109_213-307 OS Pseudomonas sp. BRH_c35 #=GS A0A0F2QG69/6-109_213-307 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0F2QG69/6-109_213-307 DR GENE3D; 1e95ba4930e87e844885e04949e6d24c/6-109_213-307; #=GS A0A0F2QG69/6-109_213-307 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. BRH_c35; #=GS A0A0F2QG69/6-109_213-307 DR EC; 2.1.1.199; #=GS L9PPE6/14-117_221-313 AC L9PPE6 #=GS L9PPE6/14-117_221-313 OS Janthinobacterium sp. HH01 #=GS L9PPE6/14-117_221-313 DE Ribosomal RNA small subunit methyltransferase H #=GS L9PPE6/14-117_221-313 DR GENE3D; 1ea7970dc91f68d7ba64c459bb55d1f7/14-117_221-313; #=GS L9PPE6/14-117_221-313 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Oxalobacteraceae; Janthinobacterium; Janthinobacterium sp. HH01; #=GS L9PPE6/14-117_221-313 DR EC; 2.1.1.199; #=GS R5ZX75/11-111_217-309 AC R5ZX75 #=GS R5ZX75/11-111_217-309 OS Proteobacteria bacterium CAG:139 #=GS R5ZX75/11-111_217-309 DE Ribosomal RNA small subunit methyltransferase H #=GS R5ZX75/11-111_217-309 DR GENE3D; 1eabd7db8b0f0f342a60d39825559212/11-111_217-309; #=GS R5ZX75/11-111_217-309 DR ORG; Bacteria; Proteobacteria; Proteobacteria bacterium CAG:139; #=GS R5ZX75/11-111_217-309 DR EC; 2.1.1.199; #=GS U5N9T1/11-110_215-305 AC U5N9T1 #=GS U5N9T1/11-110_215-305 OS Candidatus Symbiobacter mobilis CR #=GS U5N9T1/11-110_215-305 DE Ribosomal RNA small subunit methyltransferase H #=GS U5N9T1/11-110_215-305 DR GENE3D; 1ec6fe18233dfaff998dc158e117524c/11-110_215-305; #=GS U5N9T1/11-110_215-305 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Comamonadaceae; Candidatus Symbiobacter; Candidatus Symbiobacter mobilis; #=GS U5N9T1/11-110_215-305 DR EC; 2.1.1.199; #=GS A0A0D1MBK8/6-102_203-294 AC A0A0D1MBK8 #=GS A0A0D1MBK8/6-102_203-294 OS Sphingomonas taxi #=GS A0A0D1MBK8/6-102_203-294 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0D1MBK8/6-102_203-294 DR GENE3D; 1ef82bb135fed948fe1d561ac2e2b9d9/6-102_203-294; #=GS A0A0D1MBK8/6-102_203-294 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingomonas; Sphingomonas taxi; #=GS A0A0D1MBK8/6-102_203-294 DR EC; 2.1.1.199; #=GS S5C1H1/12-114_218-312 AC S5C1H1 #=GS S5C1H1/12-114_218-312 OS Alteromonas mediterranea UM7 #=GS S5C1H1/12-114_218-312 DE Ribosomal RNA small subunit methyltransferase H #=GS S5C1H1/12-114_218-312 DR GENE3D; 1f1dcc7b2f628d89414a025a06232273/12-114_218-312; #=GS S5C1H1/12-114_218-312 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Alteromonadaceae; Alteromonas; Alteromonas mediterranea; #=GS S5C1H1/12-114_218-312 DR EC; 2.1.1.199; #=GS A0A0I9SFN9/6-109_213-307 AC A0A0I9SFN9 #=GS A0A0I9SFN9/6-109_213-307 OS Pseudomonas sp. BICA1-14 #=GS A0A0I9SFN9/6-109_213-307 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0I9SFN9/6-109_213-307 DR GENE3D; 1f27c83a38b764bdcb121db7bcdeb877/6-109_213-307; #=GS A0A0I9SFN9/6-109_213-307 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas stutzeri group; Pseudomonas sp. BICA1-14; #=GS A0A0I9SFN9/6-109_213-307 DR EC; 2.1.1.199; #=GS A0A0M3AMR6/10-111_212-302 AC A0A0M3AMR6 #=GS A0A0M3AMR6/10-111_212-302 OS Sphingobium chungbukense #=GS A0A0M3AMR6/10-111_212-302 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0M3AMR6/10-111_212-302 DR GENE3D; 1f552716468fc72828b434bfc002be61/10-111_212-302; #=GS A0A0M3AMR6/10-111_212-302 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingobium; Sphingobium chungbukense; #=GS A0A0M3AMR6/10-111_212-302 DR EC; 2.1.1.199; #=GS A1SU11/7-110_214-308 AC A1SU11 #=GS A1SU11/7-110_214-308 OS Psychromonas ingrahamii 37 #=GS A1SU11/7-110_214-308 DE Ribosomal RNA small subunit methyltransferase H #=GS A1SU11/7-110_214-308 DR GENE3D; 1f662c8bfbe0aca4809e2972e464db09/7-110_214-308; #=GS A1SU11/7-110_214-308 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Psychromonadaceae; Psychromonas; Psychromonas ingrahamii; #=GS A1SU11/7-110_214-308 DR EC; 2.1.1.199; #=GS A0A165XQ48/10-111_219-315 AC A0A165XQ48 #=GS A0A165XQ48/10-111_219-315 OS Vibrio sp. HI00D65 #=GS A0A165XQ48/10-111_219-315 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A165XQ48/10-111_219-315 DR GENE3D; 1fc5c0cb83afa093004141926fac099c/10-111_219-315; #=GS A0A165XQ48/10-111_219-315 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Vibrionales; Vibrionaceae; Vibrio; Vibrio sp. HI00D65; #=GS A0A165XQ48/10-111_219-315 DR EC; 2.1.1.199; #=GS A0A0C9N860/10-108_209-300 AC A0A0C9N860 #=GS A0A0C9N860/10-108_209-300 OS Sphingomonas paucimobilis NBRC 13935 #=GS A0A0C9N860/10-108_209-300 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0C9N860/10-108_209-300 DR GENE3D; 1fca39c817c9058b68b7eec835a0dff4/10-108_209-300; #=GS A0A0C9N860/10-108_209-300 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingomonas; Sphingomonas paucimobilis; #=GS A0A0C9N860/10-108_209-300 DR EC; 2.1.1.199; #=GS A0A0Q6YZ92/12-115_219-313 AC A0A0Q6YZ92 #=GS A0A0Q6YZ92/12-115_219-313 OS Pseudomonas sp. Root401 #=GS A0A0Q6YZ92/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q6YZ92/12-115_219-313 DR GENE3D; 1fccff3402110e34281af9a62fe9d5b6/12-115_219-313; #=GS A0A0Q6YZ92/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. Root401; #=GS A0A0Q6YZ92/12-115_219-313 DR EC; 2.1.1.199; #=GS W6M6L1/12-115_219-311 AC W6M6L1 #=GS W6M6L1/12-115_219-311 OS Candidatus Competibacter denitrificans Run_A_D11 #=GS W6M6L1/12-115_219-311 DE Ribosomal RNA small subunit methyltransferase H #=GS W6M6L1/12-115_219-311 DR GENE3D; 2005ffc5243f202109d0925c415f8a0c/12-115_219-311; #=GS W6M6L1/12-115_219-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Competibacteraceae; Candidatus Competibacter; Candidatus Competibacter denitrificans; #=GS W6M6L1/12-115_219-311 DR EC; 2.1.1.199; #=GS A0A0E1EAJ1/12-115_219-313 AC A0A0E1EAJ1 #=GS A0A0E1EAJ1/12-115_219-313 OS Pseudomonas chlororaphis #=GS A0A0E1EAJ1/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0E1EAJ1/12-115_219-313 DR GENE3D; 201f32056648818eec4bfe12fd71b03f/12-115_219-313; #=GS A0A0E1EAJ1/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas chlororaphis group; Pseudomonas chlororaphis; #=GS A0A0E1EAJ1/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A0F4VBU1/12-115_219-313 AC A0A0F4VBU1 #=GS A0A0F4VBU1/12-115_219-313 OS Pseudomonas fluorescens #=GS A0A0F4VBU1/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0F4VBU1/12-115_219-313 DR GENE3D; 2022f9d515d8c9ba52414d1ddf535a65/12-115_219-313; #=GS A0A0F4VBU1/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas fluorescens group; Pseudomonas fluorescens; #=GS A0A0F4VBU1/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A0Q6QU79/12-115_219-313 AC A0A0Q6QU79 #=GS A0A0Q6QU79/12-115_219-313 OS Pseudomonas sp. Root329 #=GS A0A0Q6QU79/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q6QU79/12-115_219-313 DR GENE3D; 2022f9d515d8c9ba52414d1ddf535a65/12-115_219-313; #=GS A0A0Q6QU79/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. Root329; #=GS A0A0Q6QU79/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A1G0DUU2/10-110_214-307 AC A0A1G0DUU2 #=GS A0A1G0DUU2/10-110_214-307 OS Gallionellales bacterium RBG_16_57_15 #=GS A0A1G0DUU2/10-110_214-307 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1G0DUU2/10-110_214-307 DR GENE3D; 2041bdc69d85c2c0629a959b5db57b05/10-110_214-307; #=GS A0A1G0DUU2/10-110_214-307 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Gallionellales; Gallionellales bacterium RBG_16_57_15; #=GS A0A1G0DUU2/10-110_214-307 DR EC; 2.1.1.199; #=GS U4S1C6/10-111_217-311 AC U4S1C6 #=GS U4S1C6/10-111_217-311 OS Haemophilus parasuis str. Nagasaki #=GS U4S1C6/10-111_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS U4S1C6/10-111_217-311 DR GENE3D; 20513c5aa43f8464f96d74dc09aca6cf/10-111_217-311; #=GS U4S1C6/10-111_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Haemophilus; [Haemophilus] parasuis; #=GS U4S1C6/10-111_217-311 DR EC; 2.1.1.199; #=GS F3BEL7/1-85_189-283 AC F3BEL7 #=GS F3BEL7/1-85_189-283 OS Pseudoalteromonas haloplanktis ANT/505 #=GS F3BEL7/1-85_189-283 DE Ribosomal RNA small subunit methyltransferase H #=GS F3BEL7/1-85_189-283 DR GENE3D; 2095f87052f63c667aedc48b2b48545f/1-85_189-283; #=GS F3BEL7/1-85_189-283 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Pseudoalteromonadaceae; Pseudoalteromonas; Pseudoalteromonas haloplanktis; #=GS F3BEL7/1-85_189-283 DR EC; 2.1.1.199; #=GS V8R0T4/12-115_219-313 AC V8R0T4 #=GS V8R0T4/12-115_219-313 OS Pseudomonas moraviensis R28-S #=GS V8R0T4/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS V8R0T4/12-115_219-313 DR GENE3D; 20b7ea5179a57a5378a9dd1296fd2b34/12-115_219-313; #=GS V8R0T4/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas moraviensis; #=GS V8R0T4/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A142NIR4/12-115_219-313 AC A0A142NIR4 #=GS A0A142NIR4/12-115_219-313 OS Pseudomonas koreensis #=GS A0A142NIR4/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A142NIR4/12-115_219-313 DR GENE3D; 20b7ea5179a57a5378a9dd1296fd2b34/12-115_219-313; #=GS A0A142NIR4/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas koreensis; #=GS A0A142NIR4/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A1N7AV88/12-115_219-313 AC A0A1N7AV88 #=GS A0A1N7AV88/12-115_219-313 OS Pseudomonas sp. B10 #=GS A0A1N7AV88/12-115_219-313 DE 16S rRNA (Cytosine1402-N4)-methyltransferase #=GS A0A1N7AV88/12-115_219-313 DR GENE3D; 20b7ea5179a57a5378a9dd1296fd2b34/12-115_219-313; #=GS A0A1N7AV88/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. B10; #=GS A0A1N7AV88/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A1E7Q438/9-111_216-310 AC A0A1E7Q438 #=GS A0A1E7Q438/9-111_216-310 OS Rheinheimera salexigens #=GS A0A1E7Q438/9-111_216-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1E7Q438/9-111_216-310 DR GENE3D; 20d8ee3d9ce905f4886aa8e48efc0397/9-111_216-310; #=GS A0A1E7Q438/9-111_216-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Chromatiales; Chromatiaceae; Rheinheimera; Rheinheimera salexigens; #=GS A0A1E7Q438/9-111_216-310 DR EC; 2.1.1.199; #=GS A0A0Q6AK62/6-109_210-301 AC A0A0Q6AK62 #=GS A0A0Q6AK62/6-109_210-301 OS Sphingomonas sp. Leaf407 #=GS A0A0Q6AK62/6-109_210-301 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q6AK62/6-109_210-301 DR GENE3D; 20dec7f283239c125ac7935f95e5e09a/6-109_210-301; #=GS A0A0Q6AK62/6-109_210-301 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingomonas; Sphingomonas sp. Leaf407; #=GS A0A0Q6AK62/6-109_210-301 DR EC; 2.1.1.199; #=GS A0A0Q4LPD6/6-109_210-301 AC A0A0Q4LPD6 #=GS A0A0Q4LPD6/6-109_210-301 OS Sphingomonas sp. Leaf42 #=GS A0A0Q4LPD6/6-109_210-301 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q4LPD6/6-109_210-301 DR GENE3D; 20dec7f283239c125ac7935f95e5e09a/6-109_210-301; #=GS A0A0Q4LPD6/6-109_210-301 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingomonas; Sphingomonas sp. Leaf42; #=GS A0A0Q4LPD6/6-109_210-301 DR EC; 2.1.1.199; #=GS A0A1L8YR44/13-114_218-310 AC A0A1L8YR44 #=GS A0A1L8YR44/13-114_218-310 OS Alcanivorax borkumensis #=GS A0A1L8YR44/13-114_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1L8YR44/13-114_218-310 DR GENE3D; 20f438dc24b15337992ba36985f154f2/13-114_218-310; #=GS A0A1L8YR44/13-114_218-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Oceanospirillales; Alcanivoracaceae; Alcanivorax; Alcanivorax borkumensis; #=GS A0A1L8YR44/13-114_218-310 DR EC; 2.1.1.199; #=GS Q0VS10/13-114_218-310 AC Q0VS10 #=GS Q0VS10/13-114_218-310 OS Alcanivorax borkumensis SK2 #=GS Q0VS10/13-114_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS Q0VS10/13-114_218-310 DR GENE3D; 20f438dc24b15337992ba36985f154f2/13-114_218-310; #=GS Q0VS10/13-114_218-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Oceanospirillales; Alcanivoracaceae; Alcanivorax; Alcanivorax borkumensis; #=GS Q0VS10/13-114_218-310 DR EC; 2.1.1.199; #=GS A0A090BUQ1/15-118_222-314 AC A0A090BUQ1 #=GS A0A090BUQ1/15-118_222-314 OS Thioploca ingrica #=GS A0A090BUQ1/15-118_222-314 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A090BUQ1/15-118_222-314 DR GENE3D; 210ac7c14e13cb7312626e9fe7e24344/15-118_222-314; #=GS A0A090BUQ1/15-118_222-314 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Thiotrichales; Thiotrichaceae; Thioploca; Thioploca ingrica; #=GS A0A090BUQ1/15-118_222-314 DR EC; 2.1.1.199; #=GS A0A1F7L046/2-104_207-261 AC A0A1F7L046 #=GS A0A1F7L046/2-104_207-261 OS Candidatus Roizmanbacteria bacterium RIFOXYD1_FULL_38_12 #=GS A0A1F7L046/2-104_207-261 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1F7L046/2-104_207-261 DR GENE3D; 211c8723dbbaf553373670f994894529/2-104_207-261; #=GS A0A1F7L046/2-104_207-261 DR ORG; Bacteria; Candidatus Roizmanbacteria; Candidatus Roizmanbacteria bacterium RIFOXYD1_FULL_38_12; #=GS A0A1F7L046/2-104_207-261 DR EC; 2.1.1.199; #=GS A0A0W1CHB6/7-110_211-302 AC A0A0W1CHB6 #=GS A0A0W1CHB6/7-110_211-302 OS Sphingopyxis sp. H115 #=GS A0A0W1CHB6/7-110_211-302 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0W1CHB6/7-110_211-302 DR GENE3D; 212231b138d03deda9a6fa9c3d8d8b04/7-110_211-302; #=GS A0A0W1CHB6/7-110_211-302 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingopyxis; Sphingopyxis sp. H115; #=GS A0A0W1CHB6/7-110_211-302 DR EC; 2.1.1.199; #=GS A0A1B9PNQ2/10-111_219-315 AC A0A1B9PNQ2 #=GS A0A1B9PNQ2/10-111_219-315 OS Aliivibrio sp. 1S175 #=GS A0A1B9PNQ2/10-111_219-315 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1B9PNQ2/10-111_219-315 DR GENE3D; 213f8d8e46d7fa4751f009ccec7fd32c/10-111_219-315; #=GS A0A1B9PNQ2/10-111_219-315 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Vibrionales; Vibrionaceae; Aliivibrio; Aliivibrio sp. 1S175; #=GS A0A1B9PNQ2/10-111_219-315 DR EC; 2.1.1.199; #=GS A0A1B9P2K3/10-111_219-315 AC A0A1B9P2K3 #=GS A0A1B9P2K3/10-111_219-315 OS Aliivibrio logei #=GS A0A1B9P2K3/10-111_219-315 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1B9P2K3/10-111_219-315 DR GENE3D; 213f8d8e46d7fa4751f009ccec7fd32c/10-111_219-315; #=GS A0A1B9P2K3/10-111_219-315 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Vibrionales; Vibrionaceae; Aliivibrio; Aliivibrio logei; #=GS A0A1B9P2K3/10-111_219-315 DR EC; 2.1.1.199; #=GS B6ELI3/10-111_219-315 AC B6ELI3 #=GS B6ELI3/10-111_219-315 OS Aliivibrio salmonicida LFI1238 #=GS B6ELI3/10-111_219-315 DE Ribosomal RNA small subunit methyltransferase H #=GS B6ELI3/10-111_219-315 DR GENE3D; 213f8d8e46d7fa4751f009ccec7fd32c/10-111_219-315; #=GS B6ELI3/10-111_219-315 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Vibrionales; Vibrionaceae; Aliivibrio; Aliivibrio salmonicida; #=GS B6ELI3/10-111_219-315 DR EC; 2.1.1.199; #=GS A0A0P1FS70/13-111_215-305 AC A0A0P1FS70 #=GS A0A0P1FS70/13-111_215-305 OS Thalassobius mediterraneus #=GS A0A0P1FS70/13-111_215-305 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0P1FS70/13-111_215-305 DR GENE3D; 21476a1717ffc7c0488a5ccb552c6b43/13-111_215-305; #=GS A0A0P1FS70/13-111_215-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Thalassobius; Thalassobius mediterraneus; #=GS A0A0P1FS70/13-111_215-305 DR EC; 2.1.1.199; #=GS Q07PU1/9-113_216-305 AC Q07PU1 #=GS Q07PU1/9-113_216-305 OS Rhodopseudomonas palustris BisA53 #=GS Q07PU1/9-113_216-305 DE Ribosomal RNA small subunit methyltransferase H #=GS Q07PU1/9-113_216-305 DR GENE3D; 2160d673b833f7ec9a3134cb4c96d454/9-113_216-305; #=GS Q07PU1/9-113_216-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhizobiales; Bradyrhizobiaceae; Rhodopseudomonas; Rhodopseudomonas palustris; #=GS Q07PU1/9-113_216-305 DR EC; 2.1.1.199; #=GS D5ALQ1/8-111_215-305 AC D5ALQ1 #=GS D5ALQ1/8-111_215-305 OS Rhodobacter capsulatus SB 1003 #=GS D5ALQ1/8-111_215-305 DE Ribosomal RNA small subunit methyltransferase H #=GS D5ALQ1/8-111_215-305 DR GENE3D; 21656ab6dec235596c571ae917f584a5/8-111_215-305; #=GS D5ALQ1/8-111_215-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Rhodobacter; Rhodobacter capsulatus; #=GS D5ALQ1/8-111_215-305 DR EC; 2.1.1.199; #=GS A0A0F4P7Z2/10-111_215-309 AC A0A0F4P7Z2 #=GS A0A0F4P7Z2/10-111_215-309 OS Pseudoalteromonas piscicida #=GS A0A0F4P7Z2/10-111_215-309 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0F4P7Z2/10-111_215-309 DR GENE3D; 21a03bbcbdb86ac1fc5025e49b4a330c/10-111_215-309; #=GS A0A0F4P7Z2/10-111_215-309 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Pseudoalteromonadaceae; Pseudoalteromonas; Pseudoalteromonas piscicida; #=GS A0A0F4P7Z2/10-111_215-309 DR EC; 2.1.1.199; #=GS A0A1G0J2S3/9-114_218-308 AC A0A1G0J2S3 #=GS A0A1G0J2S3/9-114_218-308 OS Gammaproteobacteria bacterium RIFCSPHIGHO2_12_FULL_45_9 #=GS A0A1G0J2S3/9-114_218-308 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1G0J2S3/9-114_218-308 DR GENE3D; 21b6269c2c6a8ff6ae4c89a662b630df/9-114_218-308; #=GS A0A1G0J2S3/9-114_218-308 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Gammaproteobacteria bacterium RIFCSPHIGHO2_12_FULL_45_9; #=GS A0A1G0J2S3/9-114_218-308 DR EC; 2.1.1.199; #=GS N6X8D4/10-110_214-307 AC N6X8D4 #=GS N6X8D4/10-110_214-307 OS Thauera sp. 63 #=GS N6X8D4/10-110_214-307 DE Ribosomal RNA small subunit methyltransferase H #=GS N6X8D4/10-110_214-307 DR GENE3D; 21c7e3e6d1d267c0c2f7fa8b9be78ea2/10-110_214-307; #=GS N6X8D4/10-110_214-307 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Rhodocyclales; Rhodocyclaceae; Thauera; Thauera sp. 63; #=GS N6X8D4/10-110_214-307 DR EC; 2.1.1.199; #=GS A0A0A3B8M6/15-116_226-320 AC A0A0A3B8M6 #=GS A0A0A3B8M6/15-116_226-320 OS Chelonobacter oris #=GS A0A0A3B8M6/15-116_226-320 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0A3B8M6/15-116_226-320 DR GENE3D; 21e8e8f3130a79bd92e47a90bf4b0fd0/15-116_226-320; #=GS A0A0A3B8M6/15-116_226-320 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Chelonobacter; Chelonobacter oris; #=GS A0A0A3B8M6/15-116_226-320 DR EC; 2.1.1.199; #=GS A0A0B4XLZ4/1-101_205-295 AC A0A0B4XLZ4 #=GS A0A0B4XLZ4/1-101_205-295 OS Alcanivorax pacificus W11-5 #=GS A0A0B4XLZ4/1-101_205-295 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0B4XLZ4/1-101_205-295 DR GENE3D; 21e92e11c25fd749517063e77f175e92/1-101_205-295; #=GS A0A0B4XLZ4/1-101_205-295 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Oceanospirillales; Alcanivoracaceae; Alcanivorax; Alcanivorax pacificus; #=GS A0A0B4XLZ4/1-101_205-295 DR EC; 2.1.1.199; #=GS W1S8K7/9-110_211-301 AC W1S8K7 #=GS W1S8K7/9-110_211-301 OS Sphingobium sp. C100 #=GS W1S8K7/9-110_211-301 DE Ribosomal RNA small subunit methyltransferase H #=GS W1S8K7/9-110_211-301 DR GENE3D; 22364bc3c0cadd22ec77ce1e2ead96bb/9-110_211-301; #=GS W1S8K7/9-110_211-301 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingobium; Sphingobium sp. C100; #=GS W1S8K7/9-110_211-301 DR EC; 2.1.1.199; #=GS A0A1A9EVL6/10-113_217-309 AC A0A1A9EVL6 #=GS A0A1A9EVL6/10-113_217-309 OS Marinobacterium sp. ST58-10 #=GS A0A1A9EVL6/10-113_217-309 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1A9EVL6/10-113_217-309 DR GENE3D; 2243f24746d9ba59562592188f4643e1/10-113_217-309; #=GS A0A1A9EVL6/10-113_217-309 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Oceanospirillales; Oceanospirillaceae; Marinobacterium; Marinobacterium sp. ST58-10; #=GS A0A1A9EVL6/10-113_217-309 DR EC; 2.1.1.199; #=GS A0A1B4U175/10-110_218-310 AC A0A1B4U175 #=GS A0A1B4U175/10-110_218-310 OS Burkholderia multivorans #=GS A0A1B4U175/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1B4U175/10-110_218-310 DR GENE3D; 226d43908915e6cf49824deac2038bce/10-110_218-310; #=GS A0A1B4U175/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia cepacia complex; Burkholderia multivorans; #=GS A0A1B4U175/10-110_218-310 DR EC; 2.1.1.199; #=GS J4S469/10-110_218-310 AC J4S469 #=GS J4S469/10-110_218-310 OS Burkholderia multivorans CF2 #=GS J4S469/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS J4S469/10-110_218-310 DR GENE3D; 226d43908915e6cf49824deac2038bce/10-110_218-310; #=GS J4S469/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia cepacia complex; Burkholderia multivorans; #=GS J4S469/10-110_218-310 DR EC; 2.1.1.199; #=GS A0A1C3BMA6/42-132_236-328 AC A0A1C3BMA6 #=GS A0A1C3BMA6/42-132_236-328 OS Achromobacter xylosoxidans #=GS A0A1C3BMA6/42-132_236-328 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1C3BMA6/42-132_236-328 DR GENE3D; 227df93ae1ee93f64216805b30c5f7e8/42-132_236-328; #=GS A0A1C3BMA6/42-132_236-328 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Alcaligenaceae; Achromobacter; Achromobacter xylosoxidans; #=GS A0A1C3BMA6/42-132_236-328 DR EC; 2.1.1.199; #=GS W0Q0T3/10-111_217-311 AC W0Q0T3 #=GS W0Q0T3/10-111_217-311 OS Mannheimia sp. USDA-ARS-USMARC-1261 #=GS W0Q0T3/10-111_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS W0Q0T3/10-111_217-311 DR GENE3D; 2296e355411b25bca2375b02b70e207b/10-111_217-311; #=GS W0Q0T3/10-111_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Mannheimia; Mannheimia sp. USDA-ARS-USMARC-1261; #=GS W0Q0T3/10-111_217-311 DR EC; 2.1.1.199; #=GS A0A0R3D3C0/6-110_213-304 AC A0A0R3D3C0 #=GS A0A0R3D3C0/6-110_213-304 OS Bradyrhizobium manausense #=GS A0A0R3D3C0/6-110_213-304 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0R3D3C0/6-110_213-304 DR GENE3D; 22dcc98ff64c9f1b77785044efe72e62/6-110_213-304; #=GS A0A0R3D3C0/6-110_213-304 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhizobiales; Bradyrhizobiaceae; Bradyrhizobium; Bradyrhizobium manausense; #=GS A0A0R3D3C0/6-110_213-304 DR EC; 2.1.1.199; #=GS K5YZC8/6-110_213-307 AC K5YZC8 #=GS K5YZC8/6-110_213-307 OS Acidocella sp. MX-AZ02 #=GS K5YZC8/6-110_213-307 DE Ribosomal RNA small subunit methyltransferase H #=GS K5YZC8/6-110_213-307 DR GENE3D; 232a2312b1aeb1e321eeafb808fadeda/6-110_213-307; #=GS K5YZC8/6-110_213-307 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodospirillales; Acetobacteraceae; Acidocella; Acidocella sp. MX-AZ02; #=GS K5YZC8/6-110_213-307 DR EC; 2.1.1.199; #=GS E6W949/10-111_215-310 AC E6W949 #=GS E6W949/10-111_215-310 OS Pantoea sp. At-9b #=GS E6W949/10-111_215-310 DE Ribosomal RNA small subunit methyltransferase H #=GS E6W949/10-111_215-310 DR GENE3D; 2348b7199f17f9028ca9f59616a8fdd9/10-111_215-310; #=GS E6W949/10-111_215-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Enterobacterales; Erwiniaceae; Pantoea; Pantoea sp. At-9b; #=GS E6W949/10-111_215-310 DR EC; 2.1.1.199; #=GS L0DYX6/9-112_216-307 AC L0DYX6 #=GS L0DYX6/9-112_216-307 OS Thioalkalivibrio nitratireducens DSM 14787 #=GS L0DYX6/9-112_216-307 DE Ribosomal RNA small subunit methyltransferase H #=GS L0DYX6/9-112_216-307 DR GENE3D; 2365ac2bb99668b736f06064ff91ad0d/9-112_216-307; #=GS L0DYX6/9-112_216-307 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Chromatiales; Ectothiorhodospiraceae; Thioalkalivibrio; Thioalkalivibrio nitratireducens; #=GS L0DYX6/9-112_216-307 DR EC; 2.1.1.199; #=GS A0A0F0EI98/12-115_219-313 AC A0A0F0EI98 #=GS A0A0F0EI98/12-115_219-313 OS Pseudomonas sp. 5 #=GS A0A0F0EI98/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0F0EI98/12-115_219-313 DR GENE3D; 237c2e808a57b7667d9442f778eb7f7e/12-115_219-313; #=GS A0A0F0EI98/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. 5; #=GS A0A0F0EI98/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A0A4GMG7/12-115_219-313 AC A0A0A4GMG7 #=GS A0A0A4GMG7/12-115_219-313 OS Pseudomonas mediterranea CFBP 5447 #=GS A0A0A4GMG7/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0A4GMG7/12-115_219-313 DR GENE3D; 239d3ac1692bf107bc8b73905a2cf616/12-115_219-313; #=GS A0A0A4GMG7/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas fluorescens group; Pseudomonas mediterranea; #=GS A0A0A4GMG7/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A1H2HW10/12-115_219-313 AC A0A1H2HW10 #=GS A0A1H2HW10/12-115_219-313 OS Pseudomonas mediterranea #=GS A0A1H2HW10/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1H2HW10/12-115_219-313 DR GENE3D; 239d3ac1692bf107bc8b73905a2cf616/12-115_219-313; #=GS A0A1H2HW10/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas fluorescens group; Pseudomonas mediterranea; #=GS A0A1H2HW10/12-115_219-313 DR EC; 2.1.1.199; #=GS C7RLN4/10-113_217-310 AC C7RLN4 #=GS C7RLN4/10-113_217-310 OS Candidatus Accumulibacter phosphatis clade IIA str. UW-1 #=GS C7RLN4/10-113_217-310 DE Ribosomal RNA small subunit methyltransferase H #=GS C7RLN4/10-113_217-310 DR GENE3D; 23b8de825bc5a858e7dc3a51eca7fdb9/10-113_217-310; #=GS C7RLN4/10-113_217-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Candidatus Accumulibacter; Candidatus Accumulibacter phosphatis; #=GS C7RLN4/10-113_217-310 DR EC; 2.1.1.199; #=GS B2IGF2/19-123_226-268_289-317 AC B2IGF2 #=GS B2IGF2/19-123_226-268_289-317 OS Beijerinckia indica subsp. indica ATCC 9039 #=GS B2IGF2/19-123_226-268_289-317 DE Ribosomal RNA small subunit methyltransferase H #=GS B2IGF2/19-123_226-268_289-317 DR GENE3D; 23ba63dd7644321e96147db201655e08/19-123_226-268_289-317; #=GS B2IGF2/19-123_226-268_289-317 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhizobiales; Beijerinckiaceae; Beijerinckia; Beijerinckia indica; Beijerinckia indica subsp. indica; #=GS B2IGF2/19-123_226-268_289-317 DR EC; 2.1.1.199; #=GS A0A0F6LB56/10-110_218-310 AC A0A0F6LB56 #=GS A0A0F6LB56/10-110_218-310 OS Burkholderia pseudomallei MSHR4000 #=GS A0A0F6LB56/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0F6LB56/10-110_218-310 DR GENE3D; 23d8c373a22cd60f93f522725363016a/10-110_218-310; #=GS A0A0F6LB56/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; pseudomallei group; Burkholderia pseudomallei; #=GS A0A0F6LB56/10-110_218-310 DR EC; 2.1.1.199; #=GS B3QFN9/8-112_215-305 AC B3QFN9 #=GS B3QFN9/8-112_215-305 OS Rhodopseudomonas palustris TIE-1 #=GS B3QFN9/8-112_215-305 DE Ribosomal RNA small subunit methyltransferase H #=GS B3QFN9/8-112_215-305 DR GENE3D; 23df189d3e84056bb1c72645b52ec3c4/8-112_215-305; #=GS B3QFN9/8-112_215-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhizobiales; Bradyrhizobiaceae; Rhodopseudomonas; Rhodopseudomonas palustris; #=GS B3QFN9/8-112_215-305 DR EC; 2.1.1.199; #=GS A0A1D3RNB5/5-109_213-306 AC A0A1D3RNB5 #=GS A0A1D3RNB5/5-109_213-306 OS Bathymodiolus azoricus thioautotrophic gill symbiont #=GS A0A1D3RNB5/5-109_213-306 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1D3RNB5/5-109_213-306 DR GENE3D; 2406a219a00ae479bb6d3e853ba2aa43/5-109_213-306; #=GS A0A1D3RNB5/5-109_213-306 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Bathymodiolus azoricus thioautotrophic gill symbiont; #=GS A0A1D3RNB5/5-109_213-306 DR EC; 2.1.1.199; #=GS M9YIV0/10-113_217-311 AC M9YIV0 #=GS M9YIV0/10-113_217-311 OS Azotobacter vinelandii CA6 #=GS M9YIV0/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS M9YIV0/10-113_217-311 DR GENE3D; 240aaf9e7ac138d15c5f46b64430922e/10-113_217-311; #=GS M9YIV0/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Azotobacter group; Azotobacter; Azotobacter vinelandii; #=GS M9YIV0/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A1K1XDZ1/10-113_217-311 AC A0A1K1XDZ1 #=GS A0A1K1XDZ1/10-113_217-311 OS Azotobacter vinelandii #=GS A0A1K1XDZ1/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1K1XDZ1/10-113_217-311 DR GENE3D; 240aaf9e7ac138d15c5f46b64430922e/10-113_217-311; #=GS A0A1K1XDZ1/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Azotobacter group; Azotobacter; Azotobacter vinelandii; #=GS A0A1K1XDZ1/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A0A0BHS8/11-114_218-310 AC A0A0A0BHS8 #=GS A0A0A0BHS8/11-114_218-310 OS Methylophaga thiooxydans #=GS A0A0A0BHS8/11-114_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0A0BHS8/11-114_218-310 DR GENE3D; 2420424f7fcbb4ee6de7051b9e988bb7/11-114_218-310; #=GS A0A0A0BHS8/11-114_218-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Thiotrichales; Piscirickettsiaceae; Methylophaga; Methylophaga thiooxydans; #=GS A0A0A0BHS8/11-114_218-310 DR EC; 2.1.1.199; #=GS A0A132DHS4/10-110_218-310 AC A0A132DHS4 #=GS A0A132DHS4/10-110_218-310 OS Burkholderia vietnamiensis #=GS A0A132DHS4/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A132DHS4/10-110_218-310 DR GENE3D; 243eb4c224b6f0f0d528cca9f46b823b/10-110_218-310; #=GS A0A132DHS4/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia cepacia complex; Burkholderia vietnamiensis; #=GS A0A132DHS4/10-110_218-310 DR EC; 2.1.1.199; #=GS A4JB86/10-110_218-310 AC A4JB86 #=GS A4JB86/10-110_218-310 OS Burkholderia vietnamiensis G4 #=GS A4JB86/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A4JB86/10-110_218-310 DR GENE3D; 243eb4c224b6f0f0d528cca9f46b823b/10-110_218-310; #=GS A4JB86/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia cepacia complex; Burkholderia vietnamiensis; #=GS A4JB86/10-110_218-310 DR EC; 2.1.1.199; #=GS A0A1K2C0D1/10-110_218-310 AC A0A1K2C0D1 #=GS A0A1K2C0D1/10-110_218-310 OS Burkholderia sp. WP40 #=GS A0A1K2C0D1/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1K2C0D1/10-110_218-310 DR GENE3D; 243eb4c224b6f0f0d528cca9f46b823b/10-110_218-310; #=GS A0A1K2C0D1/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia sp. WP40; #=GS A0A1K2C0D1/10-110_218-310 DR EC; 2.1.1.199; #=GS A0A0N0K9G9/8-117_218-309 AC A0A0N0K9G9 #=GS A0A0N0K9G9/8-117_218-309 OS Novosphingobium sp. AAP93 #=GS A0A0N0K9G9/8-117_218-309 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0N0K9G9/8-117_218-309 DR GENE3D; 24cf570f3e35a9564567217faa2dc47a/8-117_218-309; #=GS A0A0N0K9G9/8-117_218-309 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Novosphingobium; Novosphingobium sp. AAP93; #=GS A0A0N0K9G9/8-117_218-309 DR EC; 2.1.1.199; #=GS A0A0Q5E1R3/2-104_208-300 AC A0A0Q5E1R3 #=GS A0A0Q5E1R3/2-104_208-300 OS Duganella sp. Leaf126 #=GS A0A0Q5E1R3/2-104_208-300 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q5E1R3/2-104_208-300 DR GENE3D; 251b8039d4185a704064a1d2be6fe14f/2-104_208-300; #=GS A0A0Q5E1R3/2-104_208-300 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Oxalobacteraceae; Duganella; Duganella sp. Leaf126; #=GS A0A0Q5E1R3/2-104_208-300 DR EC; 2.1.1.199; #=GS A0A167BGS9/42-132_236-328 AC A0A167BGS9 #=GS A0A167BGS9/42-132_236-328 OS Achromobacter sp. AR476-2 #=GS A0A167BGS9/42-132_236-328 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A167BGS9/42-132_236-328 DR GENE3D; 252e466e6906460f0bc049c0f5394fd5/42-132_236-328; #=GS A0A167BGS9/42-132_236-328 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Alcaligenaceae; Achromobacter; Achromobacter sp. AR476-2; #=GS A0A167BGS9/42-132_236-328 DR EC; 2.1.1.199; #=GS I2NSA3/11-113_217-310 AC I2NSA3 #=GS I2NSA3/11-113_217-310 OS Neisseria sicca VK64 #=GS I2NSA3/11-113_217-310 DE Ribosomal RNA small subunit methyltransferase H #=GS I2NSA3/11-113_217-310 DR GENE3D; 254013be47bae44fce4784eec74c252a/11-113_217-310; #=GS I2NSA3/11-113_217-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Neisseriales; Neisseriaceae; Neisseria; Neisseria sicca; #=GS I2NSA3/11-113_217-310 DR EC; 2.1.1.199; #=GS A0A1E9VY45/11-113_217-310 AC A0A1E9VY45 #=GS A0A1E9VY45/11-113_217-310 OS Neisseria sp. HMSC077D05 #=GS A0A1E9VY45/11-113_217-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1E9VY45/11-113_217-310 DR GENE3D; 254013be47bae44fce4784eec74c252a/11-113_217-310; #=GS A0A1E9VY45/11-113_217-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Neisseriales; Neisseriaceae; Neisseria; Neisseria sp. HMSC077D05; #=GS A0A1E9VY45/11-113_217-310 DR EC; 2.1.1.199; #=GS A0A023RCZ2/10-111_215-309 AC A0A023RCZ2 #=GS A0A023RCZ2/10-111_215-309 OS Aeromonas media WS #=GS A0A023RCZ2/10-111_215-309 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A023RCZ2/10-111_215-309 DR GENE3D; 2577d4b102755ec140fcb2580899d4a1/10-111_215-309; #=GS A0A023RCZ2/10-111_215-309 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Aeromonadales; Aeromonadaceae; Aeromonas; Aeromonas media; #=GS A0A023RCZ2/10-111_215-309 DR EC; 2.1.1.199; #=GS F3ETG1/10-113_217-311 AC F3ETG1 #=GS F3ETG1/10-113_217-311 OS Pseudomonas amygdali pv. mori str. 301020 #=GS F3ETG1/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS F3ETG1/10-113_217-311 DR GENE3D; 2580b6e15b215b8a522a17de080cc9b8/10-113_217-311; #=GS F3ETG1/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 2; Pseudomonas amygdali; #=GS F3ETG1/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A0Q0A0R1/10-113_217-311 AC A0A0Q0A0R1 #=GS A0A0Q0A0R1/10-113_217-311 OS Pseudomonas amygdali pv. mori #=GS A0A0Q0A0R1/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q0A0R1/10-113_217-311 DR GENE3D; 2580b6e15b215b8a522a17de080cc9b8/10-113_217-311; #=GS A0A0Q0A0R1/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 2; Pseudomonas amygdali; #=GS A0A0Q0A0R1/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A0C5VM31/10-111_215-306 AC A0A0C5VM31 #=GS A0A0C5VM31/10-111_215-306 OS Gynuella sunshinyii YC6258 #=GS A0A0C5VM31/10-111_215-306 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0C5VM31/10-111_215-306 DR GENE3D; 2585dc21ac045d912098691803560b07/10-111_215-306; #=GS A0A0C5VM31/10-111_215-306 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Oceanospirillales; Saccharospirillaceae; Gynuella; Gynuella sunshinyii; #=GS A0A0C5VM31/10-111_215-306 DR EC; 2.1.1.199; #=GS Q0AJD3/5-105_212-308 AC Q0AJD3 #=GS Q0AJD3/5-105_212-308 OS Nitrosomonas eutropha C91 #=GS Q0AJD3/5-105_212-308 DE Ribosomal RNA small subunit methyltransferase H #=GS Q0AJD3/5-105_212-308 DR GENE3D; 25cc8e15aa103e287a5fa905b61ac71d/5-105_212-308; #=GS Q0AJD3/5-105_212-308 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Nitrosomonadales; Nitrosomonadaceae; Nitrosomonas; Nitrosomonas eutropha; #=GS Q0AJD3/5-105_212-308 DR EC; 2.1.1.199; #=GS A0A0K1JZL4/14-117_221-313 AC A0A0K1JZL4 #=GS A0A0K1JZL4/14-117_221-313 OS Massilia sp. NR 4-1 #=GS A0A0K1JZL4/14-117_221-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0K1JZL4/14-117_221-313 DR GENE3D; 25f0fa1e4c0581273ca0263375da891c/14-117_221-313; #=GS A0A0K1JZL4/14-117_221-313 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Oxalobacteraceae; Massilia; Massilia sp. NR 4-1; #=GS A0A0K1JZL4/14-117_221-313 DR EC; 2.1.1.199; #=GS A0A1H6A619/5-108_212-304 AC A0A1H6A619 #=GS A0A1H6A619/5-108_212-304 OS Legionella quinlivanii DSM 21216 #=GS A0A1H6A619/5-108_212-304 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1H6A619/5-108_212-304 DR GENE3D; 261416174d21969d29a106b72eb926b0/5-108_212-304; #=GS A0A1H6A619/5-108_212-304 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Legionellales; Legionellaceae; Legionella; Legionella quinlivanii; #=GS A0A1H6A619/5-108_212-304 DR EC; 2.1.1.199; #=GS A0A0W0XXU8/5-108_212-304 AC A0A0W0XXU8 #=GS A0A0W0XXU8/5-108_212-304 OS Legionella quinlivanii #=GS A0A0W0XXU8/5-108_212-304 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0W0XXU8/5-108_212-304 DR GENE3D; 261416174d21969d29a106b72eb926b0/5-108_212-304; #=GS A0A0W0XXU8/5-108_212-304 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Legionellales; Legionellaceae; Legionella; Legionella quinlivanii; #=GS A0A0W0XXU8/5-108_212-304 DR EC; 2.1.1.199; #=GS A0A132CBF0/10-110_218-310 AC A0A132CBF0 #=GS A0A132CBF0/10-110_218-310 OS Burkholderia sp. ABCPW 14 #=GS A0A132CBF0/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A132CBF0/10-110_218-310 DR GENE3D; 262a9c7463a180e3c524607ed731870a/10-110_218-310; #=GS A0A132CBF0/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; pseudomallei group; Burkholderia sp. ABCPW 14; #=GS A0A132CBF0/10-110_218-310 DR EC; 2.1.1.199; #=GS A4G8U6/14-117_221-313 AC A4G8U6 #=GS A4G8U6/14-117_221-313 OS Herminiimonas arsenicoxydans #=GS A4G8U6/14-117_221-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A4G8U6/14-117_221-313 DR GENE3D; 264c4143a8a3921ae853c10e7c4aa951/14-117_221-313; #=GS A4G8U6/14-117_221-313 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Oxalobacteraceae; Herminiimonas; Herminiimonas arsenicoxydans; #=GS A4G8U6/14-117_221-313 DR EC; 2.1.1.199; #=GS A9M2I4/12-114_218-311 AC A9M2I4 #=GS A9M2I4/12-114_218-311 OS Neisseria meningitidis 053442 #=GS A9M2I4/12-114_218-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A9M2I4/12-114_218-311 DR GENE3D; 26511dbfb15c0f69e332a2978443a91c/12-114_218-311; #=GS A9M2I4/12-114_218-311 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Neisseriales; Neisseriaceae; Neisseria; Neisseria meningitidis; #=GS A9M2I4/12-114_218-311 DR EC; 2.1.1.199; #=GS W0E5R3/10-111_216-308 AC W0E5R3 #=GS W0E5R3/10-111_216-308 OS Marichromatium purpuratum 984 #=GS W0E5R3/10-111_216-308 DE Ribosomal RNA small subunit methyltransferase H #=GS W0E5R3/10-111_216-308 DR GENE3D; 265416a0725983b406856bcaaf85d368/10-111_216-308; #=GS W0E5R3/10-111_216-308 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Chromatiales; Chromatiaceae; Marichromatium; Marichromatium purpuratum; #=GS W0E5R3/10-111_216-308 DR EC; 2.1.1.199; #=GS H2G1L9/10-111_215-309 AC H2G1L9 #=GS H2G1L9/10-111_215-309 OS Oceanimonas sp. GK1 #=GS H2G1L9/10-111_215-309 DE Ribosomal RNA small subunit methyltransferase H #=GS H2G1L9/10-111_215-309 DR GENE3D; 2677e1fe89c88f562fec7e600d179186/10-111_215-309; #=GS H2G1L9/10-111_215-309 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Aeromonadales; Aeromonadaceae; Oceanimonas; Oceanimonas sp. GK1; #=GS H2G1L9/10-111_215-309 DR EC; 2.1.1.199; #=GS A0A0K6IRY6/11-113_217-309 AC A0A0K6IRY6 #=GS A0A0K6IRY6/11-113_217-309 OS Marinomonas fungiae #=GS A0A0K6IRY6/11-113_217-309 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0K6IRY6/11-113_217-309 DR GENE3D; 26781c80f89d66367483affa5181feae/11-113_217-309; #=GS A0A0K6IRY6/11-113_217-309 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Oceanospirillales; Oceanospirillaceae; Marinomonas; Marinomonas fungiae; #=GS A0A0K6IRY6/11-113_217-309 DR EC; 2.1.1.199; #=GS A0A1K1TQD8/14-117_221-314 AC A0A1K1TQD8 #=GS A0A1K1TQD8/14-117_221-314 OS Marinospirillum alkaliphilum DSM 21637 #=GS A0A1K1TQD8/14-117_221-314 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1K1TQD8/14-117_221-314 DR GENE3D; 2699970fbe6c5d420b3d05d1e52fd333/14-117_221-314; #=GS A0A1K1TQD8/14-117_221-314 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Oceanospirillales; Oceanospirillaceae; Marinospirillum; Marinospirillum alkaliphilum; #=GS A0A1K1TQD8/14-117_221-314 DR EC; 2.1.1.199; #=GS A0A177P635/10-114_218-311 AC A0A177P635 #=GS A0A177P635/10-114_218-311 OS Methylomonas koyamae #=GS A0A177P635/10-114_218-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A177P635/10-114_218-311 DR GENE3D; 26b48dba26d44d392877bf6360dfd44c/10-114_218-311; #=GS A0A177P635/10-114_218-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Methylococcales; Methylococcaceae; Methylomonas; Methylomonas koyamae; #=GS A0A177P635/10-114_218-311 DR EC; 2.1.1.199; #=GS M4Z4V3/8-112_215-305 AC M4Z4V3 #=GS M4Z4V3/8-112_215-305 OS Bradyrhizobium oligotrophicum S58 #=GS M4Z4V3/8-112_215-305 DE Ribosomal RNA small subunit methyltransferase H #=GS M4Z4V3/8-112_215-305 DR GENE3D; 26c55c6cb5063a0a4f7af7eda639dc23/8-112_215-305; #=GS M4Z4V3/8-112_215-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhizobiales; Bradyrhizobiaceae; Bradyrhizobium; Bradyrhizobium oligotrophicum; #=GS M4Z4V3/8-112_215-305 DR EC; 2.1.1.199; #=GS Q2G9A3/11-116_222-313 AC Q2G9A3 #=GS Q2G9A3/11-116_222-313 OS Novosphingobium aromaticivorans DSM 12444 #=GS Q2G9A3/11-116_222-313 DE Ribosomal RNA small subunit methyltransferase H #=GS Q2G9A3/11-116_222-313 DR GENE3D; 26c77f5426edf8979b1756ef9ee65937/11-116_222-313; #=GS Q2G9A3/11-116_222-313 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Novosphingobium; Novosphingobium aromaticivorans; #=GS Q2G9A3/11-116_222-313 DR EC; 2.1.1.199; #=GS A0A0N1L6S1/12-112_217-306 AC A0A0N1L6S1 #=GS A0A0N1L6S1/12-112_217-306 OS beta proteobacterium AAP51 #=GS A0A0N1L6S1/12-112_217-306 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0N1L6S1/12-112_217-306 DR GENE3D; 26d5d0dac47f79bee5a7ee1b72fd36fa/12-112_217-306; #=GS A0A0N1L6S1/12-112_217-306 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; beta proteobacterium AAP51; #=GS A0A0N1L6S1/12-112_217-306 DR EC; 2.1.1.199; #=GS A0A099L324/10-112_216-310 AC A0A099L324 #=GS A0A099L324/10-112_216-310 OS Pseudoalteromonas sp. ND6B #=GS A0A099L324/10-112_216-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A099L324/10-112_216-310 DR GENE3D; 26ddca4604f6ef97468ddc4aef9b4e15/10-112_216-310; #=GS A0A099L324/10-112_216-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Pseudoalteromonadaceae; Pseudoalteromonas; Pseudoalteromonas sp. ND6B; #=GS A0A099L324/10-112_216-310 DR EC; 2.1.1.199; #=GS G7ER69/10-112_216-310 AC G7ER69 #=GS G7ER69/10-112_216-310 OS Pseudoalteromonas sp. BSi20311 #=GS G7ER69/10-112_216-310 DE Ribosomal RNA small subunit methyltransferase H #=GS G7ER69/10-112_216-310 DR GENE3D; 26ddca4604f6ef97468ddc4aef9b4e15/10-112_216-310; #=GS G7ER69/10-112_216-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Pseudoalteromonadaceae; Pseudoalteromonas; Pseudoalteromonas sp. BSi20311; #=GS G7ER69/10-112_216-310 DR EC; 2.1.1.199; #=GS A0A1E3WVS2/10-112_216-310 AC A0A1E3WVS2 #=GS A0A1E3WVS2/10-112_216-310 OS Pseudoalteromonas tetraodonis #=GS A0A1E3WVS2/10-112_216-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1E3WVS2/10-112_216-310 DR GENE3D; 26ddca4604f6ef97468ddc4aef9b4e15/10-112_216-310; #=GS A0A1E3WVS2/10-112_216-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Pseudoalteromonadaceae; Pseudoalteromonas; Pseudoalteromonas tetraodonis; #=GS A0A1E3WVS2/10-112_216-310 DR EC; 2.1.1.199; #=GS A0A0S3ARI2/10-112_216-310 AC A0A0S3ARI2 #=GS A0A0S3ARI2/10-112_216-310 OS Pseudoalteromonas issachenkonii #=GS A0A0S3ARI2/10-112_216-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0S3ARI2/10-112_216-310 DR GENE3D; 26ddca4604f6ef97468ddc4aef9b4e15/10-112_216-310; #=GS A0A0S3ARI2/10-112_216-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Pseudoalteromonadaceae; Pseudoalteromonas; Pseudoalteromonas issachenkonii; #=GS A0A0S3ARI2/10-112_216-310 DR EC; 2.1.1.199; #=GS Z9K488/10-112_216-310 AC Z9K488 #=GS Z9K488/10-112_216-310 OS Pseudoalteromonas sp. SCSIO_11900 #=GS Z9K488/10-112_216-310 DE Ribosomal RNA small subunit methyltransferase H #=GS Z9K488/10-112_216-310 DR GENE3D; 26ddca4604f6ef97468ddc4aef9b4e15/10-112_216-310; #=GS Z9K488/10-112_216-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Pseudoalteromonadaceae; Pseudoalteromonas; Pseudoalteromonas sp. SCSIO_11900; #=GS Z9K488/10-112_216-310 DR EC; 2.1.1.199; #=GS E6RL57/10-112_216-310 AC E6RL57 #=GS E6RL57/10-112_216-310 OS Pseudoalteromonas sp. SM9913 #=GS E6RL57/10-112_216-310 DE Ribosomal RNA small subunit methyltransferase H #=GS E6RL57/10-112_216-310 DR GENE3D; 26ddca4604f6ef97468ddc4aef9b4e15/10-112_216-310; #=GS E6RL57/10-112_216-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Pseudoalteromonadaceae; Pseudoalteromonas; Pseudoalteromonas sp. SM9913; #=GS E6RL57/10-112_216-310 DR EC; 2.1.1.199; #=GS J0YBJ1/12-115_219-313 AC J0YBJ1 #=GS J0YBJ1/12-115_219-313 OS Pseudomonas sp. Ag1 #=GS J0YBJ1/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS J0YBJ1/12-115_219-313 DR GENE3D; 270c1008f571855a2118086d593e946b/12-115_219-313; #=GS J0YBJ1/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. Ag1; #=GS J0YBJ1/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A1H2HQF1/12-115_219-313 AC A0A1H2HQF1 #=GS A0A1H2HQF1/12-115_219-313 OS Pseudomonas yamanorum #=GS A0A1H2HQF1/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1H2HQF1/12-115_219-313 DR GENE3D; 270c1008f571855a2118086d593e946b/12-115_219-313; #=GS A0A1H2HQF1/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas yamanorum; #=GS A0A1H2HQF1/12-115_219-313 DR EC; 2.1.1.199; #=GS V7E4F1/12-115_219-313 AC V7E4F1 #=GS V7E4F1/12-115_219-313 OS Pseudomonas fluorescens BBc6R8 #=GS V7E4F1/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS V7E4F1/12-115_219-313 DR GENE3D; 270c1008f571855a2118086d593e946b/12-115_219-313; #=GS V7E4F1/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas fluorescens group; Pseudomonas fluorescens; #=GS V7E4F1/12-115_219-313 DR EC; 2.1.1.199; #=GS Q9AJH1/10-111_219-315 AC Q9AJH1 #=GS Q9AJH1/10-111_219-315 OS Vibrio parahaemolyticus RIMD 2210633 #=GS Q9AJH1/10-111_219-315 DE Ribosomal RNA small subunit methyltransferase H #=GS Q9AJH1/10-111_219-315 DR GENE3D; 27127fcdd94d49d4920e644610f7118e/10-111_219-315; #=GS Q9AJH1/10-111_219-315 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Vibrionales; Vibrionaceae; Vibrio; Vibrio harveyi group; Vibrio parahaemolyticus; #=GS Q9AJH1/10-111_219-315 DR EC; 2.1.1.199; #=GS A6B5X9/10-111_219-315 AC A6B5X9 #=GS A6B5X9/10-111_219-315 OS Vibrio parahaemolyticus AQ3810 #=GS A6B5X9/10-111_219-315 DE Ribosomal RNA small subunit methyltransferase H #=GS A6B5X9/10-111_219-315 DR GENE3D; 27127fcdd94d49d4920e644610f7118e/10-111_219-315; #=GS A6B5X9/10-111_219-315 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Vibrionales; Vibrionaceae; Vibrio; Vibrio harveyi group; Vibrio parahaemolyticus; #=GS A6B5X9/10-111_219-315 DR EC; 2.1.1.199; #=GS A0A0F6LPV3/10-111_219-315 AC A0A0F6LPV3 #=GS A0A0F6LPV3/10-111_219-315 OS Vibrio parahaemolyticus 863 #=GS A0A0F6LPV3/10-111_219-315 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0F6LPV3/10-111_219-315 DR GENE3D; 27127fcdd94d49d4920e644610f7118e/10-111_219-315; #=GS A0A0F6LPV3/10-111_219-315 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Vibrionales; Vibrionaceae; Vibrio; Vibrio harveyi group; Vibrio parahaemolyticus; #=GS A0A0F6LPV3/10-111_219-315 DR EC; 2.1.1.199; #=GS S5IQ13/10-111_219-315 AC S5IQ13 #=GS S5IQ13/10-111_219-315 OS Vibrio parahaemolyticus O1:Kuk str. FDA_R31 #=GS S5IQ13/10-111_219-315 DE Ribosomal RNA small subunit methyltransferase H #=GS S5IQ13/10-111_219-315 DR GENE3D; 27127fcdd94d49d4920e644610f7118e/10-111_219-315; #=GS S5IQ13/10-111_219-315 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Vibrionales; Vibrionaceae; Vibrio; Vibrio harveyi group; Vibrio parahaemolyticus; #=GS S5IQ13/10-111_219-315 DR EC; 2.1.1.199; #=GS A0A072H7M1/10-111_219-315 AC A0A072H7M1 #=GS A0A072H7M1/10-111_219-315 OS Vibrio parahaemolyticus #=GS A0A072H7M1/10-111_219-315 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A072H7M1/10-111_219-315 DR GENE3D; 27127fcdd94d49d4920e644610f7118e/10-111_219-315; #=GS A0A072H7M1/10-111_219-315 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Vibrionales; Vibrionaceae; Vibrio; Vibrio harveyi group; Vibrio parahaemolyticus; #=GS A0A072H7M1/10-111_219-315 DR EC; 2.1.1.199; #=GS Z2EV55/10-111_219-315 AC Z2EV55 #=GS Z2EV55/10-111_219-315 OS Vibrio parahaemolyticus V-223/04 #=GS Z2EV55/10-111_219-315 DE Ribosomal RNA small subunit methyltransferase H #=GS Z2EV55/10-111_219-315 DR GENE3D; 27127fcdd94d49d4920e644610f7118e/10-111_219-315; #=GS Z2EV55/10-111_219-315 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Vibrionales; Vibrionaceae; Vibrio; Vibrio harveyi group; Vibrio parahaemolyticus; #=GS Z2EV55/10-111_219-315 DR EC; 2.1.1.199; #=GS A0A0D1EL58/10-111_219-315 AC A0A0D1EL58 #=GS A0A0D1EL58/10-111_219-315 OS Vibrio parahaemolyticus 901128 #=GS A0A0D1EL58/10-111_219-315 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0D1EL58/10-111_219-315 DR GENE3D; 27127fcdd94d49d4920e644610f7118e/10-111_219-315; #=GS A0A0D1EL58/10-111_219-315 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Vibrionales; Vibrionaceae; Vibrio; Vibrio harveyi group; Vibrio parahaemolyticus; #=GS A0A0D1EL58/10-111_219-315 DR EC; 2.1.1.199; #=GS A3WNF1/11-113_217-311 AC A3WNF1 #=GS A3WNF1/11-113_217-311 OS Idiomarina baltica OS145 #=GS A3WNF1/11-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A3WNF1/11-113_217-311 DR GENE3D; 273b4dd5cd47cc32dc69cd7e28de75ec/11-113_217-311; #=GS A3WNF1/11-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Idiomarinaceae; Idiomarina; Idiomarina baltica; #=GS A3WNF1/11-113_217-311 DR EC; 2.1.1.199; #=GS A0A139C5S0/11-113_217-311 AC A0A139C5S0 #=GS A0A139C5S0/11-113_217-311 OS Idiomarina sp. T82-3 #=GS A0A139C5S0/11-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A139C5S0/11-113_217-311 DR GENE3D; 273b4dd5cd47cc32dc69cd7e28de75ec/11-113_217-311; #=GS A0A139C5S0/11-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Idiomarinaceae; Idiomarina; Idiomarina sp. T82-3; #=GS A0A139C5S0/11-113_217-311 DR EC; 2.1.1.199; #=GS A4NY51/15-116_226-320 AC A4NY51 #=GS A4NY51/15-116_226-320 OS Haemophilus influenzae 22.4-21 #=GS A4NY51/15-116_226-320 DE Ribosomal RNA small subunit methyltransferase H #=GS A4NY51/15-116_226-320 DR GENE3D; 273c59dc29c87826fb2779737ccf36b5/15-116_226-320; #=GS A4NY51/15-116_226-320 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Haemophilus; Haemophilus influenzae; #=GS A4NY51/15-116_226-320 DR EC; 2.1.1.199; #=GS B5WM69/14-114_222-314 AC B5WM69 #=GS B5WM69/14-114_222-314 OS Burkholderia sp. H160 #=GS B5WM69/14-114_222-314 DE Ribosomal RNA small subunit methyltransferase H #=GS B5WM69/14-114_222-314 DR GENE3D; 27746cffe0e61dea4aec5b38b46d0687/14-114_222-314; #=GS B5WM69/14-114_222-314 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia sp. H160; #=GS B5WM69/14-114_222-314 DR EC; 2.1.1.199; #=GS A0A1E3H5H6/1-63_167-258 AC A0A1E3H5H6 #=GS A0A1E3H5H6/1-63_167-258 OS Methylobrevis pamukkalensis #=GS A0A1E3H5H6/1-63_167-258 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1E3H5H6/1-63_167-258 DR GENE3D; 277d291b0369bc7b96c010edfca2b40d/1-63_167-258; #=GS A0A1E3H5H6/1-63_167-258 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhizobiales; Methylobrevis; Methylobrevis pamukkalensis; #=GS A0A1E3H5H6/1-63_167-258 DR EC; 2.1.1.199; #=GS A0A0K0TX83/13-113_216-304 AC A0A0K0TX83 #=GS A0A0K0TX83/13-113_216-304 OS Devosia sp. H5989 #=GS A0A0K0TX83/13-113_216-304 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0K0TX83/13-113_216-304 DR GENE3D; 277e0b1e18983292db0757576976f64f/13-113_216-304; #=GS A0A0K0TX83/13-113_216-304 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhizobiales; Hyphomicrobiaceae; Devosia; Devosia sp. H5989; #=GS A0A0K0TX83/13-113_216-304 DR EC; 2.1.1.199; #=GS A0A066URK6/10-111_219-315 AC A0A066URK6 #=GS A0A066URK6/10-111_219-315 OS Vibrio fortis #=GS A0A066URK6/10-111_219-315 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A066URK6/10-111_219-315 DR GENE3D; 27a27855d0cf1da408c3c5e2c9f42314/10-111_219-315; #=GS A0A066URK6/10-111_219-315 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Vibrionales; Vibrionaceae; Vibrio; Vibrio fortis; #=GS A0A066URK6/10-111_219-315 DR EC; 2.1.1.199; #=GS A0A0N8K714/9-112_213-303 AC A0A0N8K714 #=GS A0A0N8K714/9-112_213-303 OS Erythrobacteraceae bacterium HL-111 #=GS A0A0N8K714/9-112_213-303 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0N8K714/9-112_213-303 DR GENE3D; 27ee94d7757ad69b6d18cac2c99fc93f/9-112_213-303; #=GS A0A0N8K714/9-112_213-303 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Erythrobacteraceae; Erythrobacteraceae bacterium HL-111; #=GS A0A0N8K714/9-112_213-303 DR EC; 2.1.1.199; #=GS A0A1H1XUK2/9-112_213-303 AC A0A1H1XUK2 #=GS A0A1H1XUK2/9-112_213-303 OS Erythrobacter sp. HL-111 #=GS A0A1H1XUK2/9-112_213-303 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1H1XUK2/9-112_213-303 DR GENE3D; 27ee94d7757ad69b6d18cac2c99fc93f/9-112_213-303; #=GS A0A1H1XUK2/9-112_213-303 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Erythrobacteraceae; Erythrobacter; Erythrobacter sp. HL-111; #=GS A0A1H1XUK2/9-112_213-303 DR EC; 2.1.1.199; #=GS A0A162LCD2/13-114_218-310 AC A0A162LCD2 #=GS A0A162LCD2/13-114_218-310 OS Alcanivorax sp. HI0044 #=GS A0A162LCD2/13-114_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A162LCD2/13-114_218-310 DR GENE3D; 27f743cfc50272e2457546a8ea287242/13-114_218-310; #=GS A0A162LCD2/13-114_218-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Oceanospirillales; Alcanivoracaceae; Alcanivorax; Alcanivorax sp. HI0044; #=GS A0A162LCD2/13-114_218-310 DR EC; 2.1.1.199; #=GS F3LT40/14-114_219-308 AC F3LT40 #=GS F3LT40/14-114_219-308 OS Rubrivivax benzoatilyticus JA2 = ATCC BAA-35 #=GS F3LT40/14-114_219-308 DE Ribosomal RNA small subunit methyltransferase H #=GS F3LT40/14-114_219-308 DR GENE3D; 28145814f67a3fbfa2a4b184685e22e9/14-114_219-308; #=GS F3LT40/14-114_219-308 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Rubrivivax; Rubrivivax benzoatilyticus; #=GS F3LT40/14-114_219-308 DR EC; 2.1.1.199; #=GS A0A177NJP5/10-114_218-311 AC A0A177NJP5 #=GS A0A177NJP5/10-114_218-311 OS Methylomonas koyamae #=GS A0A177NJP5/10-114_218-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A177NJP5/10-114_218-311 DR GENE3D; 281a3cedf32c94beaa848ac31e6f97e1/10-114_218-311; #=GS A0A177NJP5/10-114_218-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Methylococcales; Methylococcaceae; Methylomonas; Methylomonas koyamae; #=GS A0A177NJP5/10-114_218-311 DR EC; 2.1.1.199; #=GS F3DYI2/10-113_217-311 AC F3DYI2 #=GS F3DYI2/10-113_217-311 OS Pseudomonas amygdali pv. morsprunorum str. M302280 #=GS F3DYI2/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS F3DYI2/10-113_217-311 DR GENE3D; 28270bbca5825f0c204de4dd6651e73c/10-113_217-311; #=GS F3DYI2/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 2; Pseudomonas amygdali; #=GS F3DYI2/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A1C3U7T3/6-110_213-304 AC A0A1C3U7T3 #=GS A0A1C3U7T3/6-110_213-304 OS Bradyrhizobium yuanmingense #=GS A0A1C3U7T3/6-110_213-304 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1C3U7T3/6-110_213-304 DR GENE3D; 28532165aa37fcc559f71f602d8ecea1/6-110_213-304; #=GS A0A1C3U7T3/6-110_213-304 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhizobiales; Bradyrhizobiaceae; Bradyrhizobium; Bradyrhizobium yuanmingense; #=GS A0A1C3U7T3/6-110_213-304 DR EC; 2.1.1.199; #=GS A3WA78/5-108_209-299 AC A3WA78 #=GS A3WA78/5-108_209-299 OS Erythrobacter sp. NAP1 #=GS A3WA78/5-108_209-299 DE Ribosomal RNA small subunit methyltransferase H #=GS A3WA78/5-108_209-299 DR GENE3D; 2879aeca576df40dfd1260821056c3e1/5-108_209-299; #=GS A3WA78/5-108_209-299 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Erythrobacteraceae; Erythrobacter; Erythrobacter sp. NAP1; #=GS A3WA78/5-108_209-299 DR EC; 2.1.1.199; #=GS L8XZX9/9-110_214-306 AC L8XZX9 #=GS L8XZX9/9-110_214-306 OS Wohlfahrtiimonas chitiniclastica SH04 #=GS L8XZX9/9-110_214-306 DE Ribosomal RNA small subunit methyltransferase H #=GS L8XZX9/9-110_214-306 DR GENE3D; 287fb89e03e924ac94c51a82e52d5635/9-110_214-306; #=GS L8XZX9/9-110_214-306 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Wohlfahrtiimonas; Wohlfahrtiimonas chitiniclastica; #=GS L8XZX9/9-110_214-306 DR EC; 2.1.1.199; #=GS A0A0B3TEV7/14-114_222-314 AC A0A0B3TEV7 #=GS A0A0B3TEV7/14-114_222-314 OS Pandoraea pnomenusa #=GS A0A0B3TEV7/14-114_222-314 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0B3TEV7/14-114_222-314 DR GENE3D; 28c6d85a024c90d94d415542c9755b0f/14-114_222-314; #=GS A0A0B3TEV7/14-114_222-314 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Pandoraea; Pandoraea pnomenusa; #=GS A0A0B3TEV7/14-114_222-314 DR EC; 2.1.1.199; #=GS A0A167HPA7/1-98_203-291 AC A0A167HPA7 #=GS A0A167HPA7/1-98_203-291 OS Hydrogenophaga sp. LPB0072 #=GS A0A167HPA7/1-98_203-291 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A167HPA7/1-98_203-291 DR GENE3D; 28d3830e3a3ba1ad42af111930d91f8a/1-98_203-291; #=GS A0A167HPA7/1-98_203-291 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Comamonadaceae; Hydrogenophaga; Hydrogenophaga sp. LPB0072; #=GS A0A167HPA7/1-98_203-291 DR EC; 2.1.1.199; #=GS Q39JX8/10-110_218-310 AC Q39JX8 #=GS Q39JX8/10-110_218-310 OS Burkholderia lata #=GS Q39JX8/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS Q39JX8/10-110_218-310 DR GENE3D; 28f724b285c2144a1f6aff24807aeac4/10-110_218-310; #=GS Q39JX8/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia cepacia complex; Burkholderia lata; #=GS Q39JX8/10-110_218-310 DR EC; 2.1.1.199; #=GS A0A0G3YYE3/10-110_218-310 AC A0A0G3YYE3 #=GS A0A0G3YYE3/10-110_218-310 OS Burkholderia contaminans #=GS A0A0G3YYE3/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0G3YYE3/10-110_218-310 DR GENE3D; 28f724b285c2144a1f6aff24807aeac4/10-110_218-310; #=GS A0A0G3YYE3/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia cepacia complex; Burkholderia contaminans; #=GS A0A0G3YYE3/10-110_218-310 DR EC; 2.1.1.199; #=GS A0A0B2BI05/10-110_218-310 AC A0A0B2BI05 #=GS A0A0B2BI05/10-110_218-310 OS Mumia flava #=GS A0A0B2BI05/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0B2BI05/10-110_218-310 DR GENE3D; 28f724b285c2144a1f6aff24807aeac4/10-110_218-310; #=GS A0A0B2BI05/10-110_218-310 DR ORG; Bacteria; Actinobacteria; Actinobacteria; Propionibacteriales; Nocardioidaceae; Mumia; Mumia flava; #=GS A0A0B2BI05/10-110_218-310 DR EC; 2.1.1.199; #=GS A8EIN3/16-116_224-316 AC A8EIN3 #=GS A8EIN3/16-116_224-316 OS Burkholderia pseudomallei 406e #=GS A8EIN3/16-116_224-316 DE Ribosomal RNA small subunit methyltransferase H #=GS A8EIN3/16-116_224-316 DR GENE3D; 293408be7d9ad494dcd300a6ef0c6968/16-116_224-316; #=GS A8EIN3/16-116_224-316 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; pseudomallei group; Burkholderia pseudomallei; #=GS A8EIN3/16-116_224-316 DR EC; 2.1.1.199; #=GS A0A098G4L7/7-110_214-306 AC A0A098G4L7 #=GS A0A098G4L7/7-110_214-306 OS Legionella fallonii LLAP-10 #=GS A0A098G4L7/7-110_214-306 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A098G4L7/7-110_214-306 DR GENE3D; 2956c6b4f5d6ca13d8b971a052fd893c/7-110_214-306; #=GS A0A098G4L7/7-110_214-306 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Legionellales; Legionellaceae; Legionella; Legionella fallonii; #=GS A0A098G4L7/7-110_214-306 DR EC; 2.1.1.199; #=GS Q1GYZ3/19-119_224-317 AC Q1GYZ3 #=GS Q1GYZ3/19-119_224-317 OS Methylobacillus flagellatus KT #=GS Q1GYZ3/19-119_224-317 DE Ribosomal RNA small subunit methyltransferase H #=GS Q1GYZ3/19-119_224-317 DR GENE3D; 297482f6d79e862cb2cb33d233058ec4/19-119_224-317; #=GS Q1GYZ3/19-119_224-317 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Methylophilales; Methylophilaceae; Methylobacillus; Methylobacillus flagellatus; #=GS Q1GYZ3/19-119_224-317 DR EC; 2.1.1.199; #=GS R6J6V0/7-107_210-302 AC R6J6V0 #=GS R6J6V0/7-107_210-302 OS Azospirillum sp. CAG:239 #=GS R6J6V0/7-107_210-302 DE Ribosomal RNA small subunit methyltransferase H #=GS R6J6V0/7-107_210-302 DR GENE3D; 298c6f0361bf1e4af1c37da65b59d8ff/7-107_210-302; #=GS R6J6V0/7-107_210-302 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodospirillales; Rhodospirillaceae; Azospirillum; Azospirillum sp. CAG:239; #=GS R6J6V0/7-107_210-302 DR EC; 2.1.1.199; #=GS A4VIH0/12-115_219-313 AC A4VIH0 #=GS A4VIH0/12-115_219-313 OS Pseudomonas stutzeri A1501 #=GS A4VIH0/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A4VIH0/12-115_219-313 DR GENE3D; 29ad4ac9990a061e205f7b6ec678295b/12-115_219-313; #=GS A4VIH0/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas stutzeri group; Pseudomonas stutzeri subgroup; Pseudomonas stutzeri; #=GS A4VIH0/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A0N0E5Z7/12-115_219-313 AC A0A0N0E5Z7 #=GS A0A0N0E5Z7/12-115_219-313 OS Pseudomonas fuscovaginae #=GS A0A0N0E5Z7/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0N0E5Z7/12-115_219-313 DR GENE3D; 29ba3128bb32fe86d883214daebfb368/12-115_219-313; #=GS A0A0N0E5Z7/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas fuscovaginae; #=GS A0A0N0E5Z7/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A142FU38/17-119_223-315 AC A0A142FU38 #=GS A0A142FU38/17-119_223-315 OS Marinobacter sp. LQ44 #=GS A0A142FU38/17-119_223-315 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A142FU38/17-119_223-315 DR GENE3D; 2a05fed1c0d063e5e36b7875d8c01f0c/17-119_223-315; #=GS A0A142FU38/17-119_223-315 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Alteromonadaceae; Marinobacter; Marinobacter sp. LQ44; #=GS A0A142FU38/17-119_223-315 DR EC; 2.1.1.199; #=GS A0A085TUU6/12-111_215-304 AC A0A085TUU6 #=GS A0A085TUU6/12-111_215-304 OS Thioclava atlantica #=GS A0A085TUU6/12-111_215-304 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A085TUU6/12-111_215-304 DR GENE3D; 2a26f4677d7fd0733cbbcb1f2affee89/12-111_215-304; #=GS A0A085TUU6/12-111_215-304 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Thioclava; Thioclava atlantica; #=GS A0A085TUU6/12-111_215-304 DR EC; 2.1.1.199; #=GS A0A1H0E0H7/12-115_219-313 AC A0A1H0E0H7 #=GS A0A1H0E0H7/12-115_219-313 OS Pseudomonas antarctica #=GS A0A1H0E0H7/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1H0E0H7/12-115_219-313 DR GENE3D; 2a2775146a6d1b8492e373a11f8d6b6a/12-115_219-313; #=GS A0A1H0E0H7/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas antarctica; #=GS A0A1H0E0H7/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A105URB3/10-110_218-310 AC A0A105URB3 #=GS A0A105URB3/10-110_218-310 OS Burkholderia ubonensis #=GS A0A105URB3/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A105URB3/10-110_218-310 DR GENE3D; 2a2e4ea071a71321242c871c935e5307/10-110_218-310; #=GS A0A105URB3/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia ubonensis; #=GS A0A105URB3/10-110_218-310 DR EC; 2.1.1.199; #=GS A0A1I1W0P2/8-106_210-301 AC A0A1I1W0P2 #=GS A0A1I1W0P2/8-106_210-301 OS Roseivivax sediminis #=GS A0A1I1W0P2/8-106_210-301 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1I1W0P2/8-106_210-301 DR GENE3D; 2a65b7763039ae1c905e9751e96f2351/8-106_210-301; #=GS A0A1I1W0P2/8-106_210-301 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Roseivivax; Roseivivax sediminis; #=GS A0A1I1W0P2/8-106_210-301 DR EC; 2.1.1.199; #=GS A0A0H4UUU7/6-109_213-304 AC A0A0H4UUU7 #=GS A0A0H4UUU7/6-109_213-304 OS Coxiella-like endosymbiont #=GS A0A0H4UUU7/6-109_213-304 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0H4UUU7/6-109_213-304 DR GENE3D; 2a79531b6574c02e1293f35c69f6812e/6-109_213-304; #=GS A0A0H4UUU7/6-109_213-304 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Legionellales; Coxiellaceae; Coxiella-like endosymbiont; #=GS A0A0H4UUU7/6-109_213-304 DR EC; 2.1.1.199; #=GS B9MFS0/10-109_214-303 AC B9MFS0 #=GS B9MFS0/10-109_214-303 OS Acidovorax ebreus TPSY #=GS B9MFS0/10-109_214-303 DE Ribosomal RNA small subunit methyltransferase H #=GS B9MFS0/10-109_214-303 DR GENE3D; 2a9bc0ca11c2bd72ff39c0071d84c47f/10-109_214-303; #=GS B9MFS0/10-109_214-303 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Comamonadaceae; Acidovorax; Acidovorax ebreus; #=GS B9MFS0/10-109_214-303 DR EC; 2.1.1.199; #=GS G2DCL0/10-113_217-309 AC G2DCL0 #=GS G2DCL0/10-113_217-309 OS endosymbiont of Riftia pachyptila (vent Ph05) #=GS G2DCL0/10-113_217-309 DE Ribosomal RNA small subunit methyltransferase H #=GS G2DCL0/10-113_217-309 DR GENE3D; 2ae580be011014f87458b28a8867f367/10-113_217-309; #=GS G2DCL0/10-113_217-309 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; endosymbiont of Riftia pachyptila; #=GS G2DCL0/10-113_217-309 DR EC; 2.1.1.199; #=GS A0A0R2RBN3/12-114_216-305 AC A0A0R2RBN3 #=GS A0A0R2RBN3/12-114_216-305 OS Pelagibacteraceae bacterium BACL5 MAG-120705-bin12 #=GS A0A0R2RBN3/12-114_216-305 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0R2RBN3/12-114_216-305 DR GENE3D; 2af6935dd027a7615d9ae28bf3f0f4e1/12-114_216-305; #=GS A0A0R2RBN3/12-114_216-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Pelagibacterales; Pelagibacteraceae; Pelagibacteraceae bacterium BACL5 MAG-120705-bin12; #=GS A0A0R2RBN3/12-114_216-305 DR EC; 2.1.1.199; #=GS A0A0R2QZA5/12-114_216-305 AC A0A0R2QZA5 #=GS A0A0R2QZA5/12-114_216-305 OS Pelagibacteraceae bacterium BACL5 MAG-121015-bin10 #=GS A0A0R2QZA5/12-114_216-305 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0R2QZA5/12-114_216-305 DR GENE3D; 2af6935dd027a7615d9ae28bf3f0f4e1/12-114_216-305; #=GS A0A0R2QZA5/12-114_216-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Pelagibacterales; Pelagibacteraceae; Pelagibacteraceae bacterium BACL5 MAG-121015-bin10; #=GS A0A0R2QZA5/12-114_216-305 DR EC; 2.1.1.199; #=GS A0A0R2RX30/12-114_216-305 AC A0A0R2RX30 #=GS A0A0R2RX30/12-114_216-305 OS Pelagibacteraceae bacterium BACL5 MAG-120820-bin39 #=GS A0A0R2RX30/12-114_216-305 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0R2RX30/12-114_216-305 DR GENE3D; 2af6935dd027a7615d9ae28bf3f0f4e1/12-114_216-305; #=GS A0A0R2RX30/12-114_216-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Pelagibacterales; Pelagibacteraceae; Pelagibacteraceae bacterium BACL5 MAG-120820-bin39; #=GS A0A0R2RX30/12-114_216-305 DR EC; 2.1.1.199; #=GS A0A161JH78/8-112_216-258_280-310 AC A0A161JH78 #=GS A0A161JH78/8-112_216-258_280-310 OS Azospirillum humicireducens #=GS A0A161JH78/8-112_216-258_280-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A161JH78/8-112_216-258_280-310 DR GENE3D; 2b14478801d848362f2867141453d050/8-112_216-258_280-310; #=GS A0A161JH78/8-112_216-258_280-310 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodospirillales; Rhodospirillaceae; Azospirillum; Azospirillum humicireducens; #=GS A0A161JH78/8-112_216-258_280-310 DR EC; 2.1.1.199; #=GS A0A0W0ZMS0/7-110_214-306 AC A0A0W0ZMS0 #=GS A0A0W0ZMS0/7-110_214-306 OS Legionella steelei #=GS A0A0W0ZMS0/7-110_214-306 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0W0ZMS0/7-110_214-306 DR GENE3D; 2b358110e89b9ff7b6e2160241576420/7-110_214-306; #=GS A0A0W0ZMS0/7-110_214-306 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Legionellales; Legionellaceae; Legionella; Legionella steelei; #=GS A0A0W0ZMS0/7-110_214-306 DR EC; 2.1.1.199; #=GS A0A0W0R4X4/7-110_214-306 AC A0A0W0R4X4 #=GS A0A0W0R4X4/7-110_214-306 OS Legionella adelaidensis #=GS A0A0W0R4X4/7-110_214-306 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0W0R4X4/7-110_214-306 DR GENE3D; 2b42c50562b374a3e1bbb6288ceeb05a/7-110_214-306; #=GS A0A0W0R4X4/7-110_214-306 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Legionellales; Legionellaceae; Legionella; Legionella adelaidensis; #=GS A0A0W0R4X4/7-110_214-306 DR EC; 2.1.1.199; #=GS X6KUL7/9-107_208-299 AC X6KUL7 #=GS X6KUL7/9-107_208-299 OS Rhodobacteraceae bacterium PD-2 #=GS X6KUL7/9-107_208-299 DE Ribosomal RNA small subunit methyltransferase H #=GS X6KUL7/9-107_208-299 DR GENE3D; 2b43c1aa97827701b39bc13a78e1766f/9-107_208-299; #=GS X6KUL7/9-107_208-299 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Rhodobacteraceae bacterium PD-2; #=GS X6KUL7/9-107_208-299 DR EC; 2.1.1.199; #=GS A0A0Q8UHW6/5-101_205-296 AC A0A0Q8UHW6 #=GS A0A0Q8UHW6/5-101_205-296 OS Phenylobacterium sp. Root77 #=GS A0A0Q8UHW6/5-101_205-296 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q8UHW6/5-101_205-296 DR GENE3D; 2b47b1199329bc73fb641eed8e1cf7c8/5-101_205-296; #=GS A0A0Q8UHW6/5-101_205-296 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Caulobacterales; Caulobacteraceae; Phenylobacterium; Phenylobacterium sp. Root77; #=GS A0A0Q8UHW6/5-101_205-296 DR EC; 2.1.1.199; #=GS A0A0Q7D484/5-101_205-296 AC A0A0Q7D484 #=GS A0A0Q7D484/5-101_205-296 OS Phenylobacterium sp. Root1277 #=GS A0A0Q7D484/5-101_205-296 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q7D484/5-101_205-296 DR GENE3D; 2b47b1199329bc73fb641eed8e1cf7c8/5-101_205-296; #=GS A0A0Q7D484/5-101_205-296 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Caulobacterales; Caulobacteraceae; Phenylobacterium; Phenylobacterium sp. Root1277; #=GS A0A0Q7D484/5-101_205-296 DR EC; 2.1.1.199; #=GS A0A0Q7F7U4/5-101_205-296 AC A0A0Q7F7U4 #=GS A0A0Q7F7U4/5-101_205-296 OS Phenylobacterium sp. Root1290 #=GS A0A0Q7F7U4/5-101_205-296 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q7F7U4/5-101_205-296 DR GENE3D; 2b47b1199329bc73fb641eed8e1cf7c8/5-101_205-296; #=GS A0A0Q7F7U4/5-101_205-296 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Caulobacterales; Caulobacteraceae; Phenylobacterium; Phenylobacterium sp. Root1290; #=GS A0A0Q7F7U4/5-101_205-296 DR EC; 2.1.1.199; #=GS A0A136HL36/15-119_222-264_285-314 AC A0A136HL36 #=GS A0A136HL36/15-119_222-264_285-314 OS Thalassospira sp. Nap_22 #=GS A0A136HL36/15-119_222-264_285-314 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A136HL36/15-119_222-264_285-314 DR GENE3D; 2b67b9c9a077a0de914fa0eb8275a2c8/15-119_222-264_285-314; #=GS A0A136HL36/15-119_222-264_285-314 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodospirillales; Rhodospirillaceae; Thalassospira; Thalassospira sp. Nap_22; #=GS A0A136HL36/15-119_222-264_285-314 DR EC; 2.1.1.199; #=GS A0A165P6N8/10-112_216-310 AC A0A165P6N8 #=GS A0A165P6N8/10-112_216-310 OS Pseudoalteromonas shioyasakiensis #=GS A0A165P6N8/10-112_216-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A165P6N8/10-112_216-310 DR GENE3D; 2bb92dff28a589a86827ef4ec76fd0ab/10-112_216-310; #=GS A0A165P6N8/10-112_216-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Pseudoalteromonadaceae; Pseudoalteromonas; Pseudoalteromonas shioyasakiensis; #=GS A0A165P6N8/10-112_216-310 DR EC; 2.1.1.199; #=GS I4KCL0/12-115_219-313 AC I4KCL0 #=GS I4KCL0/12-115_219-313 OS Pseudomonas fluorescens SS101 #=GS I4KCL0/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS I4KCL0/12-115_219-313 DR GENE3D; 2bbc77c94ff4501490cbb4177267157f/12-115_219-313; #=GS I4KCL0/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas fluorescens group; Pseudomonas fluorescens; #=GS I4KCL0/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A0W0NDS1/12-115_219-313 AC A0A0W0NDS1 #=GS A0A0W0NDS1/12-115_219-313 OS Pseudomonas sp. ICMP 19500 #=GS A0A0W0NDS1/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0W0NDS1/12-115_219-313 DR GENE3D; 2bbc77c94ff4501490cbb4177267157f/12-115_219-313; #=GS A0A0W0NDS1/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. ICMP 19500; #=GS A0A0W0NDS1/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A1E4W5R6/12-115_219-313 AC A0A1E4W5R6 #=GS A0A1E4W5R6/12-115_219-313 OS Pseudomonas sp. AP42 #=GS A0A1E4W5R6/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1E4W5R6/12-115_219-313 DR GENE3D; 2bbc77c94ff4501490cbb4177267157f/12-115_219-313; #=GS A0A1E4W5R6/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. AP42; #=GS A0A1E4W5R6/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A1H1XFC6/12-115_219-313 AC A0A1H1XFC6 #=GS A0A1H1XFC6/12-115_219-313 OS Pseudomonas sp. bs2935 #=GS A0A1H1XFC6/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1H1XFC6/12-115_219-313 DR GENE3D; 2bbc77c94ff4501490cbb4177267157f/12-115_219-313; #=GS A0A1H1XFC6/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. bs2935; #=GS A0A1H1XFC6/12-115_219-313 DR EC; 2.1.1.199; #=GS I2BK61/12-115_219-313 AC I2BK61 #=GS I2BK61/12-115_219-313 OS Pseudomonas fluorescens A506 #=GS I2BK61/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS I2BK61/12-115_219-313 DR GENE3D; 2bbc77c94ff4501490cbb4177267157f/12-115_219-313; #=GS I2BK61/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas fluorescens group; Pseudomonas fluorescens; #=GS I2BK61/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A1G3F9W2/12-115_219-313 AC A0A1G3F9W2 #=GS A0A1G3F9W2/12-115_219-313 OS Pseudomonadales bacterium RIFCSPLOWO2_12_FULL_59_450 #=GS A0A1G3F9W2/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1G3F9W2/12-115_219-313 DR GENE3D; 2bbc77c94ff4501490cbb4177267157f/12-115_219-313; #=GS A0A1G3F9W2/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadales bacterium RIFCSPLOWO2_12_FULL_59_450; #=GS A0A1G3F9W2/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A0R3C533/12-115_219-313 AC A0A0R3C533 #=GS A0A0R3C533/12-115_219-313 OS Pseudomonas sp. DSM 28142 #=GS A0A0R3C533/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0R3C533/12-115_219-313 DR GENE3D; 2bbc77c94ff4501490cbb4177267157f/12-115_219-313; #=GS A0A0R3C533/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. DSM 28142; #=GS A0A0R3C533/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A1K1XLH4/12-115_219-313 AC A0A1K1XLH4 #=GS A0A1K1XLH4/12-115_219-313 OS Pseudomonas sp. NFR02 #=GS A0A1K1XLH4/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1K1XLH4/12-115_219-313 DR GENE3D; 2bbc77c94ff4501490cbb4177267157f/12-115_219-313; #=GS A0A1K1XLH4/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. NFR02; #=GS A0A1K1XLH4/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A120FZG2/12-115_219-313 AC A0A120FZG2 #=GS A0A120FZG2/12-115_219-313 OS Pseudomonas fluorescens #=GS A0A120FZG2/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A120FZG2/12-115_219-313 DR GENE3D; 2bbc77c94ff4501490cbb4177267157f/12-115_219-313; #=GS A0A120FZG2/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas fluorescens group; Pseudomonas fluorescens; #=GS A0A120FZG2/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A0Q8YAI8/12-115_219-313 AC A0A0Q8YAI8 #=GS A0A0Q8YAI8/12-115_219-313 OS Pseudomonas sp. Root9 #=GS A0A0Q8YAI8/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q8YAI8/12-115_219-313 DR GENE3D; 2bbc77c94ff4501490cbb4177267157f/12-115_219-313; #=GS A0A0Q8YAI8/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. Root9; #=GS A0A0Q8YAI8/12-115_219-313 DR EC; 2.1.1.199; #=GS K6X4M2/15-117_221-315 AC K6X4M2 #=GS K6X4M2/15-117_221-315 OS Aliiglaciecola lipolytica E3 #=GS K6X4M2/15-117_221-315 DE Ribosomal RNA small subunit methyltransferase H #=GS K6X4M2/15-117_221-315 DR GENE3D; 2bcc2ba0395cb88fa4378a6039b6ebbc/15-117_221-315; #=GS K6X4M2/15-117_221-315 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Alteromonadaceae; Aliiglaciecola; Aliiglaciecola lipolytica; #=GS K6X4M2/15-117_221-315 DR EC; 2.1.1.199; #=GS A0A094IMW7/10-112_216-310 AC A0A094IMW7 #=GS A0A094IMW7/10-112_216-310 OS Idiomarina atlantica #=GS A0A094IMW7/10-112_216-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A094IMW7/10-112_216-310 DR GENE3D; 2bd5a97ebac0048f7ff973c0705e706b/10-112_216-310; #=GS A0A094IMW7/10-112_216-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Idiomarinaceae; Idiomarina; Idiomarina atlantica; #=GS A0A094IMW7/10-112_216-310 DR EC; 2.1.1.199; #=GS A0A1E2ZMC9/12-115_219-313 AC A0A1E2ZMC9 #=GS A0A1E2ZMC9/12-115_219-313 OS Pseudomonas viridiflava #=GS A0A1E2ZMC9/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1E2ZMC9/12-115_219-313 DR GENE3D; 2c080eada27ddfbe0445160a906cab41/12-115_219-313; #=GS A0A1E2ZMC9/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas viridiflava; #=GS A0A1E2ZMC9/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A0M3G557/15-116_226-320 AC A0A0M3G557 #=GS A0A0M3G557/15-116_226-320 OS Haemophilus haemolyticus #=GS A0A0M3G557/15-116_226-320 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0M3G557/15-116_226-320 DR GENE3D; 2c087b0d7ff5b0bae35d916069ce7d0a/15-116_226-320; #=GS A0A0M3G557/15-116_226-320 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Haemophilus; Haemophilus haemolyticus; #=GS A0A0M3G557/15-116_226-320 DR EC; 2.1.1.199; #=GS A0A0F7M3L3/7-112_216-308 AC A0A0F7M3L3 #=GS A0A0F7M3L3/7-112_216-308 OS Spongiibacter sp. IMCC21906 #=GS A0A0F7M3L3/7-112_216-308 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0F7M3L3/7-112_216-308 DR GENE3D; 2c0c0f024492ddfe591d07d1b278f6da/7-112_216-308; #=GS A0A0F7M3L3/7-112_216-308 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Cellvibrionales; Spongiibacteraceae; Spongiibacter; Spongiibacter sp. IMCC21906; #=GS A0A0F7M3L3/7-112_216-308 DR EC; 2.1.1.199; #=GS A1WC14/10-109_214-303 AC A1WC14 #=GS A1WC14/10-109_214-303 OS Acidovorax sp. JS42 #=GS A1WC14/10-109_214-303 DE Ribosomal RNA small subunit methyltransferase H #=GS A1WC14/10-109_214-303 DR GENE3D; 2c20bd521c536089848337a518c15370/10-109_214-303; #=GS A1WC14/10-109_214-303 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Comamonadaceae; Acidovorax; Acidovorax sp. JS42; #=GS A1WC14/10-109_214-303 DR EC; 2.1.1.199; #=GS A0A1E5AFA3/12-110_214-304 AC A0A1E5AFA3 #=GS A0A1E5AFA3/12-110_214-304 OS Rhodobacteraceae bacterium (ex Bugula neritina AB1) #=GS A0A1E5AFA3/12-110_214-304 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1E5AFA3/12-110_214-304 DR GENE3D; 2c2c4a563ed7aba44f75f1e4fa30a9bf/12-110_214-304; #=GS A0A1E5AFA3/12-110_214-304 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Rhodobacteraceae bacterium (ex Bugula neritina AB1); #=GS A0A1E5AFA3/12-110_214-304 DR EC; 2.1.1.199; #=GS A0A0W1RUJ9/10-113_217-305 AC A0A0W1RUJ9 #=GS A0A0W1RUJ9/10-113_217-305 OS Halothiobacillus sp. XI15 #=GS A0A0W1RUJ9/10-113_217-305 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0W1RUJ9/10-113_217-305 DR GENE3D; 2c77cb2accd2f68f5cef1cbff3252e57/10-113_217-305; #=GS A0A0W1RUJ9/10-113_217-305 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Chromatiales; Halothiobacillaceae; Halothiobacillus; Halothiobacillus sp. XI15; #=GS A0A0W1RUJ9/10-113_217-305 DR EC; 2.1.1.199; #=GS A0A0A2YNE1/14-115_225-319 AC A0A0A2YNE1 #=GS A0A0A2YNE1/14-115_225-319 OS Gallibacterium anatis #=GS A0A0A2YNE1/14-115_225-319 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0A2YNE1/14-115_225-319 DR GENE3D; 2c78ea1bc7a9830d30802862e5991f13/14-115_225-319; #=GS A0A0A2YNE1/14-115_225-319 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Gallibacterium; Gallibacterium anatis; #=GS A0A0A2YNE1/14-115_225-319 DR EC; 2.1.1.199; #=GS A0A0D6SBQ8/12-115_219-313 AC A0A0D6SBQ8 #=GS A0A0D6SBQ8/12-115_219-313 OS Pseudomonas sp. FeS53a #=GS A0A0D6SBQ8/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0D6SBQ8/12-115_219-313 DR GENE3D; 2c9e1b3bae038ccac47e9599b0b549bc/12-115_219-313; #=GS A0A0D6SBQ8/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. FeS53a; #=GS A0A0D6SBQ8/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A1G3Z7M5/3-101_204-294 AC A0A1G3Z7M5 #=GS A0A1G3Z7M5/3-101_204-294 OS Verrucomicrobia bacterium GWF2_51_19 #=GS A0A1G3Z7M5/3-101_204-294 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1G3Z7M5/3-101_204-294 DR GENE3D; 2cb18dccf862cc53e5f725772886378b/3-101_204-294; #=GS A0A1G3Z7M5/3-101_204-294 DR ORG; Bacteria; Verrucomicrobia; Verrucomicrobia bacterium GWF2_51_19; #=GS A0A1G3Z7M5/3-101_204-294 DR EC; 2.1.1.199; #=GS A0A0E3CFB7/14-115_225-319 AC A0A0E3CFB7 #=GS A0A0E3CFB7/14-115_225-319 OS Gallibacterium anatis #=GS A0A0E3CFB7/14-115_225-319 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0E3CFB7/14-115_225-319 DR GENE3D; 2cb1eeadb1bf9afcaba731a02b8cb6df/14-115_225-319; #=GS A0A0E3CFB7/14-115_225-319 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Gallibacterium; Gallibacterium anatis; #=GS A0A0E3CFB7/14-115_225-319 DR EC; 2.1.1.199; #=GS A0A0P1I2P8/20-118_222-313 AC A0A0P1I2P8 #=GS A0A0P1I2P8/20-118_222-313 OS Ruegeria sp. CECT 5091 #=GS A0A0P1I2P8/20-118_222-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0P1I2P8/20-118_222-313 DR GENE3D; 2cb8cb7b025c58685f6f2fdfa076f365/20-118_222-313; #=GS A0A0P1I2P8/20-118_222-313 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Ruegeria; Ruegeria sp. CECT 5091; #=GS A0A0P1I2P8/20-118_222-313 DR EC; 2.1.1.199; #=GS Q02H20/10-113_217-311 AC Q02H20 #=GS Q02H20/10-113_217-311 OS Pseudomonas aeruginosa UCBPP-PA14 #=GS Q02H20/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS Q02H20/10-113_217-311 DR GENE3D; 2cd692978812fa157ff9fcee9a60f2b5/10-113_217-311; #=GS Q02H20/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas aeruginosa group; Pseudomonas aeruginosa; #=GS Q02H20/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A157V2K5/10-113_217-311 AC A0A157V2K5 #=GS A0A157V2K5/10-113_217-311 OS Enterobacter cloacae #=GS A0A157V2K5/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A157V2K5/10-113_217-311 DR GENE3D; 2cd692978812fa157ff9fcee9a60f2b5/10-113_217-311; #=GS A0A157V2K5/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Enterobacterales; Enterobacteriaceae; Enterobacter; Enterobacter cloacae complex; Enterobacter cloacae; #=GS A0A157V2K5/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A150UMJ4/6-110_213-304 AC A0A150UMJ4 #=GS A0A150UMJ4/6-110_213-304 OS Bradyrhizobium sp. AT1 #=GS A0A150UMJ4/6-110_213-304 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A150UMJ4/6-110_213-304 DR GENE3D; 2cddcaea945e9bbf970fcc646892a1e0/6-110_213-304; #=GS A0A150UMJ4/6-110_213-304 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhizobiales; Bradyrhizobiaceae; Bradyrhizobium; Bradyrhizobium sp. AT1; #=GS A0A150UMJ4/6-110_213-304 DR EC; 2.1.1.199; #=GS H5WP14/13-117_222-311 AC H5WP14 #=GS H5WP14/13-117_222-311 OS Burkholderiales bacterium JOSHI_001 #=GS H5WP14/13-117_222-311 DE Ribosomal RNA small subunit methyltransferase H #=GS H5WP14/13-117_222-311 DR GENE3D; 2d042f82ddcd7904398b0b2452210beb/13-117_222-311; #=GS H5WP14/13-117_222-311 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiales bacterium JOSHI_001; #=GS H5WP14/13-117_222-311 DR EC; 2.1.1.199; #=GS A0A094L8S4/11-113_217-311 AC A0A094L8S4 #=GS A0A094L8S4/11-113_217-311 OS Idiomarina salinarum #=GS A0A094L8S4/11-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A094L8S4/11-113_217-311 DR GENE3D; 2d3bcb2b831082fc196f4feda94030d7/11-113_217-311; #=GS A0A094L8S4/11-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Idiomarinaceae; Idiomarina; Idiomarina salinarum; #=GS A0A094L8S4/11-113_217-311 DR EC; 2.1.1.199; #=GS A0A1M3G6L3/9-109_213-306 AC A0A1M3G6L3 #=GS A0A1M3G6L3/9-109_213-306 OS Thiobacillus sp. 65-69 #=GS A0A1M3G6L3/9-109_213-306 DE 16S rRNA (Cytosine(1402)-N(4))-methyltransferase #=GS A0A1M3G6L3/9-109_213-306 DR GENE3D; 2d3f60361a37534c4b05347fd292550c/9-109_213-306; #=GS A0A1M3G6L3/9-109_213-306 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Hydrogenophilales; Hydrogenophilaceae; Thiobacillus; Thiobacillus sp. 65-69; #=GS A0A1M3G6L3/9-109_213-306 DR EC; 2.1.1.199; #=GS A0A1E4PW54/9-109_213-306 AC A0A1E4PW54 #=GS A0A1E4PW54/9-109_213-306 OS Thiobacillus sp. SCN 64-317 #=GS A0A1E4PW54/9-109_213-306 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1E4PW54/9-109_213-306 DR GENE3D; 2d3f60361a37534c4b05347fd292550c/9-109_213-306; #=GS A0A1E4PW54/9-109_213-306 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Hydrogenophilales; Hydrogenophilaceae; Thiobacillus; Thiobacillus sp. SCN 64-317; #=GS A0A1E4PW54/9-109_213-306 DR EC; 2.1.1.199; #=GS A0A1E4NFJ8/9-109_213-306 AC A0A1E4NFJ8 #=GS A0A1E4NFJ8/9-109_213-306 OS Thiobacillus sp. SCN 65-179 #=GS A0A1E4NFJ8/9-109_213-306 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1E4NFJ8/9-109_213-306 DR GENE3D; 2d3f60361a37534c4b05347fd292550c/9-109_213-306; #=GS A0A1E4NFJ8/9-109_213-306 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Hydrogenophilales; Hydrogenophilaceae; Thiobacillus; Thiobacillus sp. SCN 65-179; #=GS A0A1E4NFJ8/9-109_213-306 DR EC; 2.1.1.199; #=GS A0A0Q6LIB8/2-96_197-288 AC A0A0Q6LIB8 #=GS A0A0Q6LIB8/2-96_197-288 OS Sphingomonas sp. Leaf339 #=GS A0A0Q6LIB8/2-96_197-288 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q6LIB8/2-96_197-288 DR GENE3D; 2d79c873ae12d8cdb54d156f434b6b31/2-96_197-288; #=GS A0A0Q6LIB8/2-96_197-288 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingomonas; Sphingomonas sp. Leaf339; #=GS A0A0Q6LIB8/2-96_197-288 DR EC; 2.1.1.199; #=GS A0A0V2RH40/12-115_219-313 AC A0A0V2RH40 #=GS A0A0V2RH40/12-115_219-313 OS Pseudomonas aeruginosa #=GS A0A0V2RH40/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0V2RH40/12-115_219-313 DR GENE3D; 2dd3990247ca8927789ff3adf5ecd503/12-115_219-313; #=GS A0A0V2RH40/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas aeruginosa group; Pseudomonas aeruginosa; #=GS A0A0V2RH40/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A154KQB2/15-119_222-264_285-314 AC A0A154KQB2 #=GS A0A154KQB2/15-119_222-264_285-314 OS Thalassospira xiamenensis #=GS A0A154KQB2/15-119_222-264_285-314 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A154KQB2/15-119_222-264_285-314 DR GENE3D; 2dea78f9e659d8df05c77f547bf44ed4/15-119_222-264_285-314; #=GS A0A154KQB2/15-119_222-264_285-314 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodospirillales; Rhodospirillaceae; Thalassospira; Thalassospira xiamenensis; #=GS A0A154KQB2/15-119_222-264_285-314 DR EC; 2.1.1.199; #=GS A0A1B9QYL6/10-111_219-315 AC A0A1B9QYL6 #=GS A0A1B9QYL6/10-111_219-315 OS Vibrio genomosp. F10 #=GS A0A1B9QYL6/10-111_219-315 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1B9QYL6/10-111_219-315 DR GENE3D; 2e01bb810e7304d68953db2f604c2e70/10-111_219-315; #=GS A0A1B9QYL6/10-111_219-315 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Vibrionales; Vibrionaceae; Vibrio; Vibrio genomosp. F10; #=GS A0A1B9QYL6/10-111_219-315 DR EC; 2.1.1.199; #=GS A0A1E5BK57/10-111_219-315 AC A0A1E5BK57 #=GS A0A1E5BK57/10-111_219-315 OS Vibrio genomosp. F10 str. ZF-129 #=GS A0A1E5BK57/10-111_219-315 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1E5BK57/10-111_219-315 DR GENE3D; 2e01bb810e7304d68953db2f604c2e70/10-111_219-315; #=GS A0A1E5BK57/10-111_219-315 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Vibrionales; Vibrionaceae; Vibrio; Vibrio genomosp. F10; #=GS A0A1E5BK57/10-111_219-315 DR EC; 2.1.1.199; #=GS A0A081KED5/10-109_213-305 AC A0A081KED5 #=GS A0A081KED5/10-109_213-305 OS Endozoicomonas elysicola #=GS A0A081KED5/10-109_213-305 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A081KED5/10-109_213-305 DR GENE3D; 2e22b526cd72248cf6e0f4698f775280/10-109_213-305; #=GS A0A081KED5/10-109_213-305 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Oceanospirillales; Hahellaceae; Endozoicomonas; Endozoicomonas elysicola; #=GS A0A081KED5/10-109_213-305 DR EC; 2.1.1.199; #=GS A0A1E7UYM7/14-117_221-313 AC A0A1E7UYM7 #=GS A0A1E7UYM7/14-117_221-313 OS Janthinobacterium lividum #=GS A0A1E7UYM7/14-117_221-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1E7UYM7/14-117_221-313 DR GENE3D; 2e3cf680d9e01c801ad6415ecdddc864/14-117_221-313; #=GS A0A1E7UYM7/14-117_221-313 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Oxalobacteraceae; Janthinobacterium; Janthinobacterium lividum; #=GS A0A1E7UYM7/14-117_221-313 DR EC; 2.1.1.199; #=GS A0A0T8LFA6/12-115_219-313 AC A0A0T8LFA6 #=GS A0A0T8LFA6/12-115_219-313 OS Streptococcus pneumoniae #=GS A0A0T8LFA6/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0T8LFA6/12-115_219-313 DR GENE3D; 2e67c040779855f86b533552ac7d1d61/12-115_219-313; #=GS A0A0T8LFA6/12-115_219-313 DR ORG; Bacteria; Firmicutes; Bacilli; Lactobacillales; Streptococcaceae; Streptococcus; Streptococcus pneumoniae; #=GS A0A0T8LFA6/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A1E2V0L7/8-111_215-307 AC A0A1E2V0L7 #=GS A0A1E2V0L7/8-111_215-307 OS Candidatus Thiodiazotropha endoloripes #=GS A0A1E2V0L7/8-111_215-307 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1E2V0L7/8-111_215-307 DR GENE3D; 2e6add57af266c8caddaf8c152cbe7dd/8-111_215-307; #=GS A0A1E2V0L7/8-111_215-307 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Candidatus Thiodiazotropha; Candidatus Thiodiazotropha endoloripes; #=GS A0A1E2V0L7/8-111_215-307 DR EC; 2.1.1.199; #=GS A0A0F6ZZD7/10-113_217-311 AC A0A0F6ZZD7 #=GS A0A0F6ZZD7/10-113_217-311 OS Pseudomonas syringae pv. syringae HS191 #=GS A0A0F6ZZD7/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0F6ZZD7/10-113_217-311 DR GENE3D; 2e706d6ea2718ed35e818f731917ecc2/10-113_217-311; #=GS A0A0F6ZZD7/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 1; Pseudomonas syringae; #=GS A0A0F6ZZD7/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A0P9MYF6/10-113_217-311 AC A0A0P9MYF6 #=GS A0A0P9MYF6/10-113_217-311 OS Pseudomonas syringae pv. coryli #=GS A0A0P9MYF6/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0P9MYF6/10-113_217-311 DR GENE3D; 2e706d6ea2718ed35e818f731917ecc2/10-113_217-311; #=GS A0A0P9MYF6/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 2; Pseudomonas syringae pv. coryli; #=GS A0A0P9MYF6/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A1E2VE85/16-119_223-316 AC A0A1E2VE85 #=GS A0A1E2VE85/16-119_223-316 OS Terasakiispira papahanaumokuakeensis #=GS A0A1E2VE85/16-119_223-316 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1E2VE85/16-119_223-316 DR GENE3D; 2e713098df2690578c34de5ede8a6dad/16-119_223-316; #=GS A0A1E2VE85/16-119_223-316 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Oceanospirillales; Terasakiispira; Terasakiispira papahanaumokuakeensis; #=GS A0A1E2VE85/16-119_223-316 DR EC; 2.1.1.199; #=GS A0A0Q4INU7/10-112_213-304 AC A0A0Q4INU7 #=GS A0A0Q4INU7/10-112_213-304 OS Sphingomonas sp. Leaf226 #=GS A0A0Q4INU7/10-112_213-304 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q4INU7/10-112_213-304 DR GENE3D; 2e7a709a6782438f3f7dde3d59148627/10-112_213-304; #=GS A0A0Q4INU7/10-112_213-304 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingomonas; Sphingomonas sp. Leaf226; #=GS A0A0Q4INU7/10-112_213-304 DR EC; 2.1.1.199; #=GS A0A0C1X1X0/12-115_219-313 AC A0A0C1X1X0 #=GS A0A0C1X1X0/12-115_219-313 OS Pseudomonas fluorescens #=GS A0A0C1X1X0/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0C1X1X0/12-115_219-313 DR GENE3D; 2ecff6103bbf342642efd6d5d9fea404/12-115_219-313; #=GS A0A0C1X1X0/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas fluorescens group; Pseudomonas fluorescens; #=GS A0A0C1X1X0/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A173J7L1/12-115_219-313 AC A0A173J7L1 #=GS A0A173J7L1/12-115_219-313 OS Pseudomonas sp. DR 5-09 #=GS A0A173J7L1/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A173J7L1/12-115_219-313 DR GENE3D; 2ecff6103bbf342642efd6d5d9fea404/12-115_219-313; #=GS A0A173J7L1/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. DR 5-09; #=GS A0A173J7L1/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A132F6B0/10-110_218-310 AC A0A132F6B0 #=GS A0A132F6B0/10-110_218-310 OS Burkholderia pseudomultivorans #=GS A0A132F6B0/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A132F6B0/10-110_218-310 DR GENE3D; 2ef8b00a6abe77a58b93186fe8f86df2/10-110_218-310; #=GS A0A132F6B0/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia cepacia complex; Burkholderia pseudomultivorans; #=GS A0A132F6B0/10-110_218-310 DR EC; 2.1.1.199; #=GS F0GHF9/10-110_218-310 AC F0GHF9 #=GS F0GHF9/10-110_218-310 OS Burkholderia sp. TJI49 #=GS F0GHF9/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS F0GHF9/10-110_218-310 DR GENE3D; 2ef8b00a6abe77a58b93186fe8f86df2/10-110_218-310; #=GS F0GHF9/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia sp. TJI49; #=GS F0GHF9/10-110_218-310 DR EC; 2.1.1.199; #=GS G4MC62/14-114_222-314 AC G4MC62 #=GS G4MC62/14-114_222-314 OS Candidatus Paraburkholderia kirkii UZHbot1 #=GS G4MC62/14-114_222-314 DE Ribosomal RNA small subunit methyltransferase H #=GS G4MC62/14-114_222-314 DR GENE3D; 2f0366aefb5fee8b59db656a893c62e7/14-114_222-314; #=GS G4MC62/14-114_222-314 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Paraburkholderia; Candidatus Paraburkholderia kirkii; #=GS G4MC62/14-114_222-314 DR EC; 2.1.1.199; #=GS W0R3S8/2-102_208-302 AC W0R3S8 #=GS W0R3S8/2-102_208-302 OS Bibersteinia trehalosi USDA-ARS-USMARC-190 #=GS W0R3S8/2-102_208-302 DE Ribosomal RNA small subunit methyltransferase H #=GS W0R3S8/2-102_208-302 DR GENE3D; 2f197f9a6ceed262fe4e16744732768a/2-102_208-302; #=GS W0R3S8/2-102_208-302 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Bibersteinia; Bibersteinia trehalosi; #=GS W0R3S8/2-102_208-302 DR EC; 2.1.1.199; #=GS J3HHU8/14-117_221-313 AC J3HHU8 #=GS J3HHU8/14-117_221-313 OS Herbaspirillum sp. YR522 #=GS J3HHU8/14-117_221-313 DE Ribosomal RNA small subunit methyltransferase H #=GS J3HHU8/14-117_221-313 DR GENE3D; 2f2cbe0bde249285958ef3aeceb6f27a/14-117_221-313; #=GS J3HHU8/14-117_221-313 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Oxalobacteraceae; Herbaspirillum; Herbaspirillum sp. YR522; #=GS J3HHU8/14-117_221-313 DR EC; 2.1.1.199; #=GS A0A0A8BS45/14-114_222-314 AC A0A0A8BS45 #=GS A0A0A8BS45/14-114_222-314 OS Pandoraea pulmonicola #=GS A0A0A8BS45/14-114_222-314 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0A8BS45/14-114_222-314 DR GENE3D; 2f45fe649c2b01efff93c40bb66c9f49/14-114_222-314; #=GS A0A0A8BS45/14-114_222-314 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Pandoraea; Pandoraea pulmonicola; #=GS A0A0A8BS45/14-114_222-314 DR EC; 2.1.1.199; #=GS A0A0X3TAP9/22-125_229-321 AC A0A0X3TAP9 #=GS A0A0X3TAP9/22-125_229-321 OS Thiomicrospira sp. WB1 #=GS A0A0X3TAP9/22-125_229-321 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0X3TAP9/22-125_229-321 DR GENE3D; 2f497c1370ed0adc7f697c2a290063af/22-125_229-321; #=GS A0A0X3TAP9/22-125_229-321 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Thiotrichales; Piscirickettsiaceae; Thiomicrospira; Thiomicrospira sp. WB1; #=GS A0A0X3TAP9/22-125_229-321 DR EC; 2.1.1.199; #=GS A0A0K0SXU9/27-127_232-325 AC A0A0K0SXU9 #=GS A0A0K0SXU9/27-127_232-325 OS Methylophilus sp. TWE2 #=GS A0A0K0SXU9/27-127_232-325 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0K0SXU9/27-127_232-325 DR GENE3D; 2f6b200055c3f30528c3f1aa00702791/27-127_232-325; #=GS A0A0K0SXU9/27-127_232-325 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Methylophilales; Methylophilaceae; Methylophilus; Methylophilus sp. TWE2; #=GS A0A0K0SXU9/27-127_232-325 DR EC; 2.1.1.199; #=GS A0A1J5RFF2/17-119_224-318 AC A0A1J5RFF2 #=GS A0A1J5RFF2/17-119_224-318 OS mine drainage metagenome #=GS A0A1J5RFF2/17-119_224-318 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1J5RFF2/17-119_224-318 DR GENE3D; 2f83b618ded226b4c505371d52ec9d3d/17-119_224-318; #=GS A0A1J5RFF2/17-119_224-318 DR ORG; mine drainage metagenome; #=GS A0A1J5RFF2/17-119_224-318 DR EC; 2.1.1.199; #=GS A0A158M9L5/42-132_236-328 AC A0A158M9L5 #=GS A0A158M9L5/42-132_236-328 OS Bordetella holmesii CDC-H585-BH #=GS A0A158M9L5/42-132_236-328 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A158M9L5/42-132_236-328 DR GENE3D; 2fa0768c5af5b2e33328b4638e1e1c9b/42-132_236-328; #=GS A0A158M9L5/42-132_236-328 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Alcaligenaceae; Bordetella; Bordetella holmesii; #=GS A0A158M9L5/42-132_236-328 DR EC; 2.1.1.199; #=GS A0A0W0RY03/5-108_212-304 AC A0A0W0RY03 #=GS A0A0W0RY03/5-108_212-304 OS Legionella birminghamensis #=GS A0A0W0RY03/5-108_212-304 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0W0RY03/5-108_212-304 DR GENE3D; 2fd05f2fe3ed6715ae16f60cc72b2a6b/5-108_212-304; #=GS A0A0W0RY03/5-108_212-304 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Legionellales; Legionellaceae; Legionella; Legionella birminghamensis; #=GS A0A0W0RY03/5-108_212-304 DR EC; 2.1.1.199; #=GS H3KD18/10-110_216-307 AC H3KD18 #=GS H3KD18/10-110_216-307 OS Sutterella parvirubra YIT 11816 #=GS H3KD18/10-110_216-307 DE Ribosomal RNA small subunit methyltransferase H #=GS H3KD18/10-110_216-307 DR GENE3D; 2fda4fb3cb8bbd6bc5077fddb65f0b6a/10-110_216-307; #=GS H3KD18/10-110_216-307 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Sutterellaceae; Sutterella; Sutterella parvirubra; #=GS H3KD18/10-110_216-307 DR EC; 2.1.1.199; #=GS A0A1B3BCJ0/9-112_216-308 AC A0A1B3BCJ0 #=GS A0A1B3BCJ0/9-112_216-308 OS Kangiella sediminilitoris #=GS A0A1B3BCJ0/9-112_216-308 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1B3BCJ0/9-112_216-308 DR GENE3D; 302ba92f5c4897ddf96f36ae90138e9a/9-112_216-308; #=GS A0A1B3BCJ0/9-112_216-308 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Oceanospirillales; Kangiellaceae; Kangiella; Kangiella sediminilitoris; #=GS A0A1B3BCJ0/9-112_216-308 DR EC; 2.1.1.199; #=GS R9PI41/10-112_216-310 AC R9PI41 #=GS R9PI41/10-112_216-310 OS Agarivorans albus MKT 106 #=GS R9PI41/10-112_216-310 DE Ribosomal RNA small subunit methyltransferase H #=GS R9PI41/10-112_216-310 DR GENE3D; 303ed40b2d06fd35f9590de171a55320/10-112_216-310; #=GS R9PI41/10-112_216-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Alteromonadaceae; Agarivorans; Agarivorans albus; #=GS R9PI41/10-112_216-310 DR EC; 2.1.1.199; #=GS L9UCY9/77-178_282-375 AC L9UCY9 #=GS L9UCY9/77-178_282-375 OS Halomonas titanicae BH1 #=GS L9UCY9/77-178_282-375 DE Ribosomal RNA small subunit methyltransferase H #=GS L9UCY9/77-178_282-375 DR GENE3D; 3045a9a38237f8ca20f8257981152156/77-178_282-375; #=GS L9UCY9/77-178_282-375 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Oceanospirillales; Halomonadaceae; Halomonas; Halomonas titanicae; #=GS L9UCY9/77-178_282-375 DR EC; 2.1.1.199; #=GS C5TNH9/12-114_218-311 AC C5TNH9 #=GS C5TNH9/12-114_218-311 OS Neisseria flavescens SK114 #=GS C5TNH9/12-114_218-311 DE Ribosomal RNA small subunit methyltransferase H #=GS C5TNH9/12-114_218-311 DR GENE3D; 304a83d135293a8c34e3d67b2000b1cb/12-114_218-311; #=GS C5TNH9/12-114_218-311 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Neisseriales; Neisseriaceae; Neisseria; Neisseria flavescens; #=GS C5TNH9/12-114_218-311 DR EC; 2.1.1.199; #=GS A0A103HX56/10-110_218-310 AC A0A103HX56 #=GS A0A103HX56/10-110_218-310 OS Burkholderia vietnamiensis #=GS A0A103HX56/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A103HX56/10-110_218-310 DR GENE3D; 30522e99d3de3bc4b5f33d6fa8d51a36/10-110_218-310; #=GS A0A103HX56/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia cepacia complex; Burkholderia vietnamiensis; #=GS A0A103HX56/10-110_218-310 DR EC; 2.1.1.199; #=GS A0A154R4E0/11-111_215-306 AC A0A154R4E0 #=GS A0A154R4E0/11-111_215-306 OS Rhodanobacter sp. FW510-R10 #=GS A0A154R4E0/11-111_215-306 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A154R4E0/11-111_215-306 DR GENE3D; 30719d783007468e56729ac9df497ec7/11-111_215-306; #=GS A0A154R4E0/11-111_215-306 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Xanthomonadales; Rhodanobacteraceae; Rhodanobacter; Rhodanobacter sp. FW510-R10; #=GS A0A154R4E0/11-111_215-306 DR EC; 2.1.1.199; #=GS A0A075JYA5/10-110_214-305 AC A0A075JYA5 #=GS A0A075JYA5/10-110_214-305 OS Dyella japonica A8 #=GS A0A075JYA5/10-110_214-305 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A075JYA5/10-110_214-305 DR GENE3D; 307d9db0fa5421d6dd34f1a769cbc148/10-110_214-305; #=GS A0A075JYA5/10-110_214-305 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Xanthomonadales; Rhodanobacteraceae; Dyella; Dyella japonica; #=GS A0A075JYA5/10-110_214-305 DR EC; 2.1.1.199; #=GS A0A0N8KC88/10-112_216-310 AC A0A0N8KC88 #=GS A0A0N8KC88/10-112_216-310 OS Idiomarinaceae bacterium HL-53 #=GS A0A0N8KC88/10-112_216-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0N8KC88/10-112_216-310 DR GENE3D; 3089d31d3e3af1a07f32465b099b83bc/10-112_216-310; #=GS A0A0N8KC88/10-112_216-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Idiomarinaceae; Idiomarinaceae bacterium HL-53; #=GS A0A0N8KC88/10-112_216-310 DR EC; 2.1.1.199; #=GS A0A0X3TPS9/13-111_215-306 AC A0A0X3TPS9 #=GS A0A0X3TPS9/13-111_215-306 OS Ruegeria sp. ZGT118 #=GS A0A0X3TPS9/13-111_215-306 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0X3TPS9/13-111_215-306 DR GENE3D; 30987ef866496971fea00d0aa897b5f5/13-111_215-306; #=GS A0A0X3TPS9/13-111_215-306 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Ruegeria; Ruegeria sp. ZGT118; #=GS A0A0X3TPS9/13-111_215-306 DR EC; 2.1.1.199; #=GS A0A0H2MEH5/1-101_212-254_277-306 AC A0A0H2MEH5 #=GS A0A0H2MEH5/1-101_212-254_277-306 OS Kiloniella spongiae #=GS A0A0H2MEH5/1-101_212-254_277-306 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0H2MEH5/1-101_212-254_277-306 DR GENE3D; 309fa8c100ea4d417314bae0136eb8f7/1-101_212-254_277-306; #=GS A0A0H2MEH5/1-101_212-254_277-306 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Kiloniellales; Kiloniellaceae; Kiloniella; Kiloniella spongiae; #=GS A0A0H2MEH5/1-101_212-254_277-306 DR EC; 2.1.1.199; #=GS A0A1F4G7Y6/13-122_227-316 AC A0A1F4G7Y6 #=GS A0A1F4G7Y6/13-122_227-316 OS Burkholderiales bacterium RIFCSPHIGHO2_01_FULL_63_240 #=GS A0A1F4G7Y6/13-122_227-316 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1F4G7Y6/13-122_227-316 DR GENE3D; 30bfb547d3bd0b084fa9c10d84f97fb2/13-122_227-316; #=GS A0A1F4G7Y6/13-122_227-316 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiales bacterium RIFCSPHIGHO2_01_FULL_63_240; #=GS A0A1F4G7Y6/13-122_227-316 DR EC; 2.1.1.199; #=GS W6QZY7/11-114_218-312 AC W6QZY7 #=GS W6QZY7/11-114_218-312 OS Pseudomonas pseudoalcaligenes CECT 5344 #=GS W6QZY7/11-114_218-312 DE Ribosomal RNA small subunit methyltransferase H #=GS W6QZY7/11-114_218-312 DR GENE3D; 30c436212b65ea0f4aee1f28aae55191/11-114_218-312; #=GS W6QZY7/11-114_218-312 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas aeruginosa group; Pseudomonas oleovorans/pseudoalcaligenes group; Pseudomonas pseudoalcaligenes; #=GS W6QZY7/11-114_218-312 DR EC; 2.1.1.199; #=GS A0A061CXN6/11-114_218-312 AC A0A061CXN6 #=GS A0A061CXN6/11-114_218-312 OS Pseudomonas pseudoalcaligenes #=GS A0A061CXN6/11-114_218-312 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A061CXN6/11-114_218-312 DR GENE3D; 30c436212b65ea0f4aee1f28aae55191/11-114_218-312; #=GS A0A061CXN6/11-114_218-312 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas aeruginosa group; Pseudomonas oleovorans/pseudoalcaligenes group; Pseudomonas pseudoalcaligenes; #=GS A0A061CXN6/11-114_218-312 DR EC; 2.1.1.199; #=GS A0A167EXX8/10-112_216-310 AC A0A167EXX8 #=GS A0A167EXX8/10-112_216-310 OS Pseudoalteromonas luteoviolacea H33 #=GS A0A167EXX8/10-112_216-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A167EXX8/10-112_216-310 DR GENE3D; 30d5ece15425c5ffe5337d6454a9f174/10-112_216-310; #=GS A0A167EXX8/10-112_216-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Pseudoalteromonadaceae; Pseudoalteromonas; Pseudoalteromonas luteoviolacea; #=GS A0A167EXX8/10-112_216-310 DR EC; 2.1.1.199; #=GS A0A0W7WEW9/13-110_214-307 AC A0A0W7WEW9 #=GS A0A0W7WEW9/13-110_214-307 OS Ponticoccus sp. SJ5A-1 #=GS A0A0W7WEW9/13-110_214-307 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0W7WEW9/13-110_214-307 DR GENE3D; 314ac23473147c97a5823325ca966852/13-110_214-307; #=GS A0A0W7WEW9/13-110_214-307 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Ponticoccus; Ponticoccus sp. SJ5A-1; #=GS A0A0W7WEW9/13-110_214-307 DR EC; 2.1.1.199; #=GS U1S802/15-116_226-320 AC U1S802 #=GS U1S802/15-116_226-320 OS Aggregatibacter sp. oral taxon 458 str. W10330 #=GS U1S802/15-116_226-320 DE Ribosomal RNA small subunit methyltransferase H #=GS U1S802/15-116_226-320 DR GENE3D; 3168b01b38625c2dd7cf1933e82c6661/15-116_226-320; #=GS U1S802/15-116_226-320 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Aggregatibacter; Aggregatibacter sp. oral taxon 458; #=GS U1S802/15-116_226-320 DR EC; 2.1.1.199; #=GS Q9HVZ5/10-113_217-311 AC Q9HVZ5 #=GS Q9HVZ5/10-113_217-311 OS Pseudomonas aeruginosa PAO1 #=GS Q9HVZ5/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS Q9HVZ5/10-113_217-311 DR GENE3D; 317be90da4a2b16f1bb58c0a3f675140/10-113_217-311; #=GS Q9HVZ5/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas aeruginosa group; Pseudomonas aeruginosa; #=GS Q9HVZ5/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A1G5ID31/10-113_217-311 AC A0A1G5ID31 #=GS A0A1G5ID31/10-113_217-311 OS Acinetobacter baumannii #=GS A0A1G5ID31/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1G5ID31/10-113_217-311 DR GENE3D; 317be90da4a2b16f1bb58c0a3f675140/10-113_217-311; #=GS A0A1G5ID31/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Moraxellaceae; Acinetobacter; Acinetobacter calcoaceticus/baumannii complex; Acinetobacter baumannii; #=GS A0A1G5ID31/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A0H3QUJ6/10-113_217-311 AC A0A0H3QUJ6 #=GS A0A0H3QUJ6/10-113_217-311 OS Pseudomonas aeruginosa str. Stone 130 #=GS A0A0H3QUJ6/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0H3QUJ6/10-113_217-311 DR GENE3D; 317be90da4a2b16f1bb58c0a3f675140/10-113_217-311; #=GS A0A0H3QUJ6/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas aeruginosa group; Pseudomonas aeruginosa; #=GS A0A0H3QUJ6/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A1D5BRS4/10-113_217-311 AC A0A1D5BRS4 #=GS A0A1D5BRS4/10-113_217-311 OS Pseudomonas sp. P179 #=GS A0A1D5BRS4/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1D5BRS4/10-113_217-311 DR GENE3D; 317be90da4a2b16f1bb58c0a3f675140/10-113_217-311; #=GS A0A1D5BRS4/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. P179; #=GS A0A1D5BRS4/10-113_217-311 DR EC; 2.1.1.199; #=GS G2FEU1/3-31_135-227 AC G2FEU1 #=GS G2FEU1/3-31_135-227 OS endosymbiont of Tevnia jerichonana (vent Tica) #=GS G2FEU1/3-31_135-227 DE Ribosomal RNA small subunit methyltransferase H #=GS G2FEU1/3-31_135-227 DR GENE3D; 31944e5f002f633f0c3047c726425b8a/3-31_135-227; #=GS G2FEU1/3-31_135-227 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; endosymbiont of Tevnia jerichonana; #=GS G2FEU1/3-31_135-227 DR EC; 2.1.1.199; #=GS Q3IFZ6/10-112_216-310 AC Q3IFZ6 #=GS Q3IFZ6/10-112_216-310 OS Pseudoalteromonas haloplanktis TAC125 #=GS Q3IFZ6/10-112_216-310 DE Ribosomal RNA small subunit methyltransferase H #=GS Q3IFZ6/10-112_216-310 DR GENE3D; 31b7052e12140dbb9029a2d72b0b4a50/10-112_216-310; #=GS Q3IFZ6/10-112_216-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Pseudoalteromonadaceae; Pseudoalteromonas; Pseudoalteromonas haloplanktis; #=GS Q3IFZ6/10-112_216-310 DR EC; 2.1.1.199; #=GS A0A0C3R4E4/10-112_216-310 AC A0A0C3R4E4 #=GS A0A0C3R4E4/10-112_216-310 OS Shewanella sp. cp20 #=GS A0A0C3R4E4/10-112_216-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0C3R4E4/10-112_216-310 DR GENE3D; 31bb79373e2dffb09bb2c60ac01da252/10-112_216-310; #=GS A0A0C3R4E4/10-112_216-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Shewanellaceae; Shewanella; Shewanella sp. cp20; #=GS A0A0C3R4E4/10-112_216-310 DR EC; 2.1.1.199; #=GS D0CW45/13-111_215-306 AC D0CW45 #=GS D0CW45/13-111_215-306 OS Silicibacter lacuscaerulensis ITI-1157 #=GS D0CW45/13-111_215-306 DE Ribosomal RNA small subunit methyltransferase H #=GS D0CW45/13-111_215-306 DR GENE3D; 31bf9ab44eee665be70b529019f8d944/13-111_215-306; #=GS D0CW45/13-111_215-306 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Ruegeria; Ruegeria lacuscaerulensis; #=GS D0CW45/13-111_215-306 DR EC; 2.1.1.199; #=GS A0A0W0S7I1/7-110_214-306 AC A0A0W0S7I1 #=GS A0A0W0S7I1/7-110_214-306 OS Legionella cherrii #=GS A0A0W0S7I1/7-110_214-306 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0W0S7I1/7-110_214-306 DR GENE3D; 31c196ef471cb093c7a5eb778e6a33cb/7-110_214-306; #=GS A0A0W0S7I1/7-110_214-306 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Legionellales; Legionellaceae; Legionella; Legionella cherrii; #=GS A0A0W0S7I1/7-110_214-306 DR EC; 2.1.1.199; #=GS A0A1H2GRQ3/12-115_219-311 AC A0A1H2GRQ3 #=GS A0A1H2GRQ3/12-115_219-311 OS Pseudomonas salegens #=GS A0A1H2GRQ3/12-115_219-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1H2GRQ3/12-115_219-311 DR GENE3D; 31eed2cb4bfd927e1a97abfbc5d141cb/12-115_219-311; #=GS A0A1H2GRQ3/12-115_219-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas salegens; #=GS A0A1H2GRQ3/12-115_219-311 DR EC; 2.1.1.199; #=GS A0A0C2HXH3/12-115_219-313 AC A0A0C2HXH3 #=GS A0A0C2HXH3/12-115_219-313 OS Pseudomonas batumici #=GS A0A0C2HXH3/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0C2HXH3/12-115_219-313 DR GENE3D; 31f1514435ce10855363a5124a4e3f59/12-115_219-313; #=GS A0A0C2HXH3/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas batumici; #=GS A0A0C2HXH3/12-115_219-313 DR EC; 2.1.1.199; #=GS D5BW18/15-118_222-314 AC D5BW18 #=GS D5BW18/15-118_222-314 OS Nitrosococcus halophilus Nc 4 #=GS D5BW18/15-118_222-314 DE Ribosomal RNA small subunit methyltransferase H #=GS D5BW18/15-118_222-314 DR GENE3D; 3212a3c0295d8946c3712eff8dfabf94/15-118_222-314; #=GS D5BW18/15-118_222-314 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Chromatiales; Chromatiaceae; Nitrosococcus; Nitrosococcus halophilus; #=GS D5BW18/15-118_222-314 DR EC; 2.1.1.199; #=GS A0A0B3C0Q8/12-115_219-313 AC A0A0B3C0Q8 #=GS A0A0B3C0Q8/12-115_219-313 OS Pseudomonas flexibilis #=GS A0A0B3C0Q8/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0B3C0Q8/12-115_219-313 DR GENE3D; 3218997818211e1db3607d4f379e0e3d/12-115_219-313; #=GS A0A0B3C0Q8/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas flexibilis; #=GS A0A0B3C0Q8/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A1H5SG62/13-114_218-310 AC A0A1H5SG62 #=GS A0A1H5SG62/13-114_218-310 OS Alcanivorax sp. DSM 26293 #=GS A0A1H5SG62/13-114_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1H5SG62/13-114_218-310 DR GENE3D; 3238215ef60f72435d341a4bbd94c236/13-114_218-310; #=GS A0A1H5SG62/13-114_218-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Oceanospirillales; Alcanivoracaceae; Alcanivorax; Alcanivorax sp. DSM 26293; #=GS A0A1H5SG62/13-114_218-310 DR EC; 2.1.1.199; #=GS E6VLR6/8-112_215-305 AC E6VLR6 #=GS E6VLR6/8-112_215-305 OS Rhodopseudomonas palustris DX-1 #=GS E6VLR6/8-112_215-305 DE Ribosomal RNA small subunit methyltransferase H #=GS E6VLR6/8-112_215-305 DR GENE3D; 32408f11f65432e5f7614ed12ab8e068/8-112_215-305; #=GS E6VLR6/8-112_215-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhizobiales; Bradyrhizobiaceae; Rhodopseudomonas; Rhodopseudomonas palustris; #=GS E6VLR6/8-112_215-305 DR EC; 2.1.1.199; #=GS A0A0J6KLH5/11-113_217-310 AC A0A0J6KLH5 #=GS A0A0J6KLH5/11-113_217-310 OS Chromobacterium sp. LK1 #=GS A0A0J6KLH5/11-113_217-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0J6KLH5/11-113_217-310 DR GENE3D; 32898387c07c0aa1759222e4082b1de1/11-113_217-310; #=GS A0A0J6KLH5/11-113_217-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Neisseriales; Chromobacteriaceae; Chromobacterium; Chromobacterium sp. LK1; #=GS A0A0J6KLH5/11-113_217-310 DR EC; 2.1.1.199; #=GS A0A147GDC2/12-115_219-313 AC A0A147GDC2 #=GS A0A147GDC2/12-115_219-313 OS Pseudomonas parafulva #=GS A0A147GDC2/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A147GDC2/12-115_219-313 DR GENE3D; 328dc247d57025dd783a21eb1482a64b/12-115_219-313; #=GS A0A147GDC2/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas parafulva; #=GS A0A147GDC2/12-115_219-313 DR EC; 2.1.1.199; #=GS D6V2U0/8-112_215-305 AC D6V2U0 #=GS D6V2U0/8-112_215-305 OS Afipia sp. 1NLS2 #=GS D6V2U0/8-112_215-305 DE Ribosomal RNA small subunit methyltransferase H #=GS D6V2U0/8-112_215-305 DR GENE3D; 32c17f8304e131b913b9a569299fbbb2/8-112_215-305; #=GS D6V2U0/8-112_215-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhizobiales; Bradyrhizobiaceae; Afipia; Afipia sp. 1NLS2; #=GS D6V2U0/8-112_215-305 DR EC; 2.1.1.199; #=GS K4L3D4/9-108_212-304 AC K4L3D4 #=GS K4L3D4/9-108_212-304 OS Simiduia agarivorans SA1 = DSM 21679 #=GS K4L3D4/9-108_212-304 DE Ribosomal RNA small subunit methyltransferase H #=GS K4L3D4/9-108_212-304 DR GENE3D; 32da3bea0d58ceab79e9ed9d592792a8/9-108_212-304; #=GS K4L3D4/9-108_212-304 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Cellvibrionales; Cellvibrionaceae; Simiduia; Simiduia agarivorans; #=GS K4L3D4/9-108_212-304 DR EC; 2.1.1.199; #=GS A0A1F0GXB9/12-114_218-311 AC A0A1F0GXB9 #=GS A0A1F0GXB9/12-114_218-311 OS Neisseria sp. HMSC065C04 #=GS A0A1F0GXB9/12-114_218-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1F0GXB9/12-114_218-311 DR GENE3D; 32fc65108c92553c2367b6dddc8369c2/12-114_218-311; #=GS A0A1F0GXB9/12-114_218-311 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Neisseriales; Neisseriaceae; Neisseria; Neisseria sp. HMSC065C04; #=GS A0A1F0GXB9/12-114_218-311 DR EC; 2.1.1.199; #=GS A0A0J8G326/12-115_219-313 AC A0A0J8G326 #=GS A0A0J8G326/12-115_219-313 OS Pseudomonas sp. KG01 #=GS A0A0J8G326/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0J8G326/12-115_219-313 DR GENE3D; 331b3f5ba7812978f7deffa519175e11/12-115_219-313; #=GS A0A0J8G326/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. KG01; #=GS A0A0J8G326/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A1H0JJ95/13-111_215-305 AC A0A1H0JJ95 #=GS A0A1H0JJ95/13-111_215-305 OS Lutimaribacter pacificus #=GS A0A1H0JJ95/13-111_215-305 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1H0JJ95/13-111_215-305 DR GENE3D; 334ed70827a3e5cbe9b175d84eed4e2d/13-111_215-305; #=GS A0A1H0JJ95/13-111_215-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Lutimaribacter; Lutimaribacter pacificus; #=GS A0A1H0JJ95/13-111_215-305 DR EC; 2.1.1.199; #=GS A0A0G9H0A6/10-110_214-305 AC A0A0G9H0A6 #=GS A0A0G9H0A6/10-110_214-305 OS Dyella japonica DSM 16301 #=GS A0A0G9H0A6/10-110_214-305 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0G9H0A6/10-110_214-305 DR GENE3D; 338a576c201cea4680cc0185df26e623/10-110_214-305; #=GS A0A0G9H0A6/10-110_214-305 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Xanthomonadales; Rhodanobacteraceae; Dyella; Dyella japonica; #=GS A0A0G9H0A6/10-110_214-305 DR EC; 2.1.1.199; #=GS E1P2H4/12-114_218-311 AC E1P2H4 #=GS E1P2H4/12-114_218-311 OS Neisseria lactamica Y92-1009 #=GS E1P2H4/12-114_218-311 DE Ribosomal RNA small subunit methyltransferase H #=GS E1P2H4/12-114_218-311 DR GENE3D; 33974c20d647dc80f0c0cb54c384d308/12-114_218-311; #=GS E1P2H4/12-114_218-311 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Neisseriales; Neisseriaceae; Neisseria; Neisseria lactamica; #=GS E1P2H4/12-114_218-311 DR EC; 2.1.1.199; #=GS A0A0W0JCM7/12-115_219-313 AC A0A0W0JCM7 #=GS A0A0W0JCM7/12-115_219-313 OS Pseudomonas syringae pv. syringae PD2766 #=GS A0A0W0JCM7/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0W0JCM7/12-115_219-313 DR GENE3D; 33b0e6db71ba7b28b9070d721c6039ae/12-115_219-313; #=GS A0A0W0JCM7/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 1; Pseudomonas syringae; #=GS A0A0W0JCM7/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A1G5B7A3/7-110_214-306 AC A0A1G5B7A3 #=GS A0A1G5B7A3/7-110_214-306 OS Legionella israelensis DSM 19235 #=GS A0A1G5B7A3/7-110_214-306 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1G5B7A3/7-110_214-306 DR GENE3D; 33fbbedc1f50b9f2a9f3607c4b8fcce8/7-110_214-306; #=GS A0A1G5B7A3/7-110_214-306 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Legionellales; Legionellaceae; Legionella; Legionella israelensis; #=GS A0A1G5B7A3/7-110_214-306 DR EC; 2.1.1.199; #=GS A0A0W0VL45/7-110_214-306 AC A0A0W0VL45 #=GS A0A0W0VL45/7-110_214-306 OS Legionella israelensis #=GS A0A0W0VL45/7-110_214-306 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0W0VL45/7-110_214-306 DR GENE3D; 33fbbedc1f50b9f2a9f3607c4b8fcce8/7-110_214-306; #=GS A0A0W0VL45/7-110_214-306 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Legionellales; Legionellaceae; Legionella; Legionella israelensis; #=GS A0A0W0VL45/7-110_214-306 DR EC; 2.1.1.199; #=GS A0A1A5XD11/14-114_222-314 AC A0A1A5XD11 #=GS A0A1A5XD11/14-114_222-314 OS Paraburkholderia tropica #=GS A0A1A5XD11/14-114_222-314 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1A5XD11/14-114_222-314 DR GENE3D; 3414baef0fef5684f1e585d3aa3471e2/14-114_222-314; #=GS A0A1A5XD11/14-114_222-314 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Paraburkholderia; Paraburkholderia tropica; #=GS A0A1A5XD11/14-114_222-314 DR EC; 2.1.1.199; #=GS F8GZZ5/12-115_219-313 AC F8GZZ5 #=GS F8GZZ5/12-115_219-313 OS Pseudomonas stutzeri #=GS F8GZZ5/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS F8GZZ5/12-115_219-313 DR GENE3D; 3468d99429eaf15af4fa520a200c6faa/12-115_219-313; #=GS F8GZZ5/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas stutzeri group; Pseudomonas stutzeri subgroup; Pseudomonas stutzeri; #=GS F8GZZ5/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A0M8KG26/10-112_216-310 AC A0A0M8KG26 #=GS A0A0M8KG26/10-112_216-310 OS Pseudoalteromonas sp. SW0106-04 #=GS A0A0M8KG26/10-112_216-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0M8KG26/10-112_216-310 DR GENE3D; 3468fbd8d566ff06e0fb0724487b7d9a/10-112_216-310; #=GS A0A0M8KG26/10-112_216-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Pseudoalteromonadaceae; Pseudoalteromonas; Pseudoalteromonas sp. SW0106-04; #=GS A0A0M8KG26/10-112_216-310 DR EC; 2.1.1.199; #=GS A0A171KP78/25-117_221-313 AC A0A171KP78 #=GS A0A171KP78/25-117_221-313 OS Kerstersia gyiorum #=GS A0A171KP78/25-117_221-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A171KP78/25-117_221-313 DR GENE3D; 346cbf01fb7d83a2e3cbea0134e1b62a/25-117_221-313; #=GS A0A171KP78/25-117_221-313 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Alcaligenaceae; Kerstersia; Kerstersia gyiorum; #=GS A0A171KP78/25-117_221-313 DR EC; 2.1.1.199; #=GS A0A0F5F144/15-116_226-320 AC A0A0F5F144 #=GS A0A0F5F144/15-116_226-320 OS Avibacterium paragallinarum #=GS A0A0F5F144/15-116_226-320 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0F5F144/15-116_226-320 DR GENE3D; 347aff5d4b79090bafc33370cad77ec5/15-116_226-320; #=GS A0A0F5F144/15-116_226-320 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Avibacterium; Avibacterium paragallinarum; #=GS A0A0F5F144/15-116_226-320 DR EC; 2.1.1.199; #=GS A0A1E2ZGI3/8-111_215-307 AC A0A1E2ZGI3 #=GS A0A1E2ZGI3/8-111_215-307 OS Candidatus Thiodiazotropha endolucinida #=GS A0A1E2ZGI3/8-111_215-307 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1E2ZGI3/8-111_215-307 DR GENE3D; 348ee516e591c2f4ed611295925cc5b2/8-111_215-307; #=GS A0A1E2ZGI3/8-111_215-307 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Candidatus Thiodiazotropha; Candidatus Thiodiazotropha endolucinida; #=GS A0A1E2ZGI3/8-111_215-307 DR EC; 2.1.1.199; #=GS M5DPZ1/11-113_217-309 AC M5DPZ1 #=GS M5DPZ1/11-113_217-309 OS Thalassolituus oleivorans MIL-1 #=GS M5DPZ1/11-113_217-309 DE Ribosomal RNA small subunit methyltransferase H #=GS M5DPZ1/11-113_217-309 DR GENE3D; 348f9eaaafb77fe169a63faa32eddad7/11-113_217-309; #=GS M5DPZ1/11-113_217-309 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Oceanospirillales; Oceanospirillaceae; Thalassolituus; Thalassolituus oleivorans; #=GS M5DPZ1/11-113_217-309 DR EC; 2.1.1.199; #=GS E8YFZ1/10-110_218-310 AC E8YFZ1 #=GS E8YFZ1/10-110_218-310 OS Burkholderia sp. CCGE1001 #=GS E8YFZ1/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS E8YFZ1/10-110_218-310 DR GENE3D; 34af06bab6269fa82aa471df4ae2448b/10-110_218-310; #=GS E8YFZ1/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia sp. CCGE1001; #=GS E8YFZ1/10-110_218-310 DR EC; 2.1.1.199; #=GS A0A0Y5PPD6/12-114_218-311 AC A0A0Y5PPD6 #=GS A0A0Y5PPD6/12-114_218-311 OS Neisseria meningitidis #=GS A0A0Y5PPD6/12-114_218-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Y5PPD6/12-114_218-311 DR GENE3D; 34b96e6061aefb15093e36ff0260208a/12-114_218-311; #=GS A0A0Y5PPD6/12-114_218-311 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Neisseriales; Neisseriaceae; Neisseria; Neisseria meningitidis; #=GS A0A0Y5PPD6/12-114_218-311 DR EC; 2.1.1.199; #=GS U3HE96/12-115_219-313 AC U3HE96 #=GS U3HE96/12-115_219-313 OS Pseudomonas alcaligenes OT 69 #=GS U3HE96/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS U3HE96/12-115_219-313 DR GENE3D; 34d6a42da34c86b22dc39b20eb810113/12-115_219-313; #=GS U3HE96/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas aeruginosa group; Pseudomonas alcaligenes; #=GS U3HE96/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A1F4LJ11/11-111_216-305 AC A0A1F4LJ11 #=GS A0A1F4LJ11/11-111_216-305 OS Burkholderiales bacterium RIFCSPLOWO2_12_FULL_65_40 #=GS A0A1F4LJ11/11-111_216-305 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1F4LJ11/11-111_216-305 DR GENE3D; 34e12eaefd64d59efa533b5eb3ca3edc/11-111_216-305; #=GS A0A1F4LJ11/11-111_216-305 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiales bacterium RIFCSPLOWO2_12_FULL_65_40; #=GS A0A1F4LJ11/11-111_216-305 DR EC; 2.1.1.199; #=GS A0A089YM16/12-115_219-313 AC A0A089YM16 #=GS A0A089YM16/12-115_219-313 OS Pseudomonas rhizosphaerae #=GS A0A089YM16/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A089YM16/12-115_219-313 DR GENE3D; 34eb4257c08acb17cbea7c1947f2c0fa/12-115_219-313; #=GS A0A089YM16/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas rhizosphaerae; #=GS A0A089YM16/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A1G0JAT8/10-113_217-309 AC A0A1G0JAT8 #=GS A0A1G0JAT8/10-113_217-309 OS Gammaproteobacteria bacterium RIFCSPLOWO2_02_FULL_57_10 #=GS A0A1G0JAT8/10-113_217-309 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1G0JAT8/10-113_217-309 DR GENE3D; 350b61b1ee25f4a646aa2d31a6accab6/10-113_217-309; #=GS A0A1G0JAT8/10-113_217-309 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Gammaproteobacteria bacterium RIFCSPLOWO2_02_FULL_57_10; #=GS A0A1G0JAT8/10-113_217-309 DR EC; 2.1.1.199; #=GS D0KMH2/10-111_215-311 AC D0KMH2 #=GS D0KMH2/10-111_215-311 OS Pectobacterium parmentieri WPP163 #=GS D0KMH2/10-111_215-311 DE Ribosomal RNA small subunit methyltransferase H #=GS D0KMH2/10-111_215-311 DR GENE3D; 3524572eb117ae1d74190a7ec21f4f6b/10-111_215-311; #=GS D0KMH2/10-111_215-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Enterobacterales; Pectobacteriaceae; Pectobacterium; Pectobacterium parmentieri; #=GS D0KMH2/10-111_215-311 DR EC; 2.1.1.199; #=GS A0A0H3IAF0/10-111_215-311 AC A0A0H3IAF0 #=GS A0A0H3IAF0/10-111_215-311 OS Pectobacterium sp. SCC3193 #=GS A0A0H3IAF0/10-111_215-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0H3IAF0/10-111_215-311 DR GENE3D; 3524572eb117ae1d74190a7ec21f4f6b/10-111_215-311; #=GS A0A0H3IAF0/10-111_215-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Enterobacterales; Pectobacteriaceae; Pectobacterium; Pectobacterium sp. SCC3193; #=GS A0A0H3IAF0/10-111_215-311 DR EC; 2.1.1.199; #=GS A0A1E9TQ32/11-113_217-310 AC A0A1E9TQ32 #=GS A0A1E9TQ32/11-113_217-310 OS Neisseria sp. HMSC055F11 #=GS A0A1E9TQ32/11-113_217-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1E9TQ32/11-113_217-310 DR GENE3D; 352a67b17e07fa7522f35a6370219417/11-113_217-310; #=GS A0A1E9TQ32/11-113_217-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Neisseriales; Neisseriaceae; Neisseria; Neisseria sp. HMSC055F11; #=GS A0A1E9TQ32/11-113_217-310 DR EC; 2.1.1.199; #=GS A0A0G3BEZ0/13-113_218-307 AC A0A0G3BEZ0 #=GS A0A0G3BEZ0/13-113_218-307 OS [Polyangium] brachysporum #=GS A0A0G3BEZ0/13-113_218-307 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0G3BEZ0/13-113_218-307 DR GENE3D; 35359787d8029387a67892e3add2faab/13-113_218-307; #=GS A0A0G3BEZ0/13-113_218-307 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; [Polyangium] brachysporum; #=GS A0A0G3BEZ0/13-113_218-307 DR EC; 2.1.1.199; #=GS Q9F1N8/10-112_216-310 AC Q9F1N8 #=GS Q9F1N8/10-112_216-310 OS Shewanella violacea DSS12 #=GS Q9F1N8/10-112_216-310 DE Ribosomal RNA small subunit methyltransferase H #=GS Q9F1N8/10-112_216-310 DR GENE3D; 353fa4365002a5eb9db6c116e38cdb0d/10-112_216-310; #=GS Q9F1N8/10-112_216-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Shewanellaceae; Shewanella; Shewanella violacea; #=GS Q9F1N8/10-112_216-310 DR EC; 2.1.1.199; #=GS A0A0R3N4H5/8-112_215-306 AC A0A0R3N4H5 #=GS A0A0R3N4H5/8-112_215-306 OS Bradyrhizobium lablabi #=GS A0A0R3N4H5/8-112_215-306 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0R3N4H5/8-112_215-306 DR GENE3D; 35449478af6747f165a9c2ca77b30955/8-112_215-306; #=GS A0A0R3N4H5/8-112_215-306 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhizobiales; Bradyrhizobiaceae; Bradyrhizobium; Bradyrhizobium lablabi; #=GS A0A0R3N4H5/8-112_215-306 DR EC; 2.1.1.199; #=GS A0A101LLQ8/10-113_217-311 AC A0A101LLQ8 #=GS A0A101LLQ8/10-113_217-311 OS Pseudomonas sp. EpS/L25 #=GS A0A101LLQ8/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A101LLQ8/10-113_217-311 DR GENE3D; 3546954a4dcf17c7475f53b2376ae797/10-113_217-311; #=GS A0A101LLQ8/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. EpS/L25; #=GS A0A101LLQ8/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A0X3UB67/9-110_214-306 AC A0A0X3UB67 #=GS A0A0X3UB67/9-110_214-306 OS Microbulbifer sp. ZGT114 #=GS A0A0X3UB67/9-110_214-306 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0X3UB67/9-110_214-306 DR GENE3D; 3552354465b3437c8336871c158d993c/9-110_214-306; #=GS A0A0X3UB67/9-110_214-306 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Cellvibrionales; Microbulbiferaceae; Microbulbifer; Microbulbifer sp. ZGT114; #=GS A0A0X3UB67/9-110_214-306 DR EC; 2.1.1.199; #=GS A0A107E9Q0/10-110_218-310 AC A0A107E9Q0 #=GS A0A107E9Q0/10-110_218-310 OS Burkholderia ubonensis #=GS A0A107E9Q0/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A107E9Q0/10-110_218-310 DR GENE3D; 35abcbc0b21fe3e053b47cd8128baea0/10-110_218-310; #=GS A0A107E9Q0/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia ubonensis; #=GS A0A107E9Q0/10-110_218-310 DR EC; 2.1.1.199; #=GS A0A060NXJ7/10-109_214-303 AC A0A060NXJ7 #=GS A0A060NXJ7/10-109_214-303 OS Comamonadaceae bacterium B1 #=GS A0A060NXJ7/10-109_214-303 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A060NXJ7/10-109_214-303 DR GENE3D; 35cea39fc400ee4db025e0a164b0c35c/10-109_214-303; #=GS A0A060NXJ7/10-109_214-303 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Comamonadaceae; Comamonadaceae bacterium B1; #=GS A0A060NXJ7/10-109_214-303 DR EC; 2.1.1.199; #=GS A0A066ZX42/14-115_219-311 AC A0A066ZX42 #=GS A0A066ZX42/14-115_219-311 OS Hydrogenovibrio marinus #=GS A0A066ZX42/14-115_219-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A066ZX42/14-115_219-311 DR GENE3D; 3626b26cea8c53f217692ea04f0a6295/14-115_219-311; #=GS A0A066ZX42/14-115_219-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Thiotrichales; Piscirickettsiaceae; Hydrogenovibrio; Hydrogenovibrio marinus; #=GS A0A066ZX42/14-115_219-311 DR EC; 2.1.1.199; #=GS G0AF46/14-117_221-313 AC G0AF46 #=GS G0AF46/14-117_221-313 OS Collimonas fungivorans Ter331 #=GS G0AF46/14-117_221-313 DE Ribosomal RNA small subunit methyltransferase H #=GS G0AF46/14-117_221-313 DR GENE3D; 362d8db929977ce74c1f0b06f1c9e04c/14-117_221-313; #=GS G0AF46/14-117_221-313 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Oxalobacteraceae; Collimonas; Collimonas fungivorans; #=GS G0AF46/14-117_221-313 DR EC; 2.1.1.199; #=GS A0A1A9RMW1/11-113_217-310 AC A0A1A9RMW1 #=GS A0A1A9RMW1/11-113_217-310 OS Eikenella corrodens #=GS A0A1A9RMW1/11-113_217-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1A9RMW1/11-113_217-310 DR GENE3D; 364d2af50d50aca6f87673e440081bb6/11-113_217-310; #=GS A0A1A9RMW1/11-113_217-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Neisseriales; Neisseriaceae; Eikenella; Eikenella corrodens; #=GS A0A1A9RMW1/11-113_217-310 DR EC; 2.1.1.199; #=GS Q133W3/8-112_215-305 AC Q133W3 #=GS Q133W3/8-112_215-305 OS Rhodopseudomonas palustris BisB5 #=GS Q133W3/8-112_215-305 DE Ribosomal RNA small subunit methyltransferase H #=GS Q133W3/8-112_215-305 DR GENE3D; 36741d80eef8c26656a626e66cb326e3/8-112_215-305; #=GS Q133W3/8-112_215-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhizobiales; Bradyrhizobiaceae; Rhodopseudomonas; Rhodopseudomonas palustris; #=GS Q133W3/8-112_215-305 DR EC; 2.1.1.199; #=GS S2EM87/2-74_178-272 AC S2EM87 #=GS S2EM87/2-74_178-272 OS Pseudomonas sp. G5(2012) #=GS S2EM87/2-74_178-272 DE Ribosomal RNA small subunit methyltransferase H #=GS S2EM87/2-74_178-272 DR GENE3D; 369d6c96d2f8446b02ac510fa325b45e/2-74_178-272; #=GS S2EM87/2-74_178-272 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. G5(2012); #=GS S2EM87/2-74_178-272 DR EC; 2.1.1.199; #=GS A0A1D9IJJ1/12-115_219-313 AC A0A1D9IJJ1 #=GS A0A1D9IJJ1/12-115_219-313 OS Pseudomonas sp. BS-2016 #=GS A0A1D9IJJ1/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1D9IJJ1/12-115_219-313 DR GENE3D; 36a03a0a03d2569958ef8458cd6d4546/12-115_219-313; #=GS A0A1D9IJJ1/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. BS-2016; #=GS A0A1D9IJJ1/12-115_219-313 DR EC; 2.1.1.199; #=GS G2DJT2/9-111_215-308 AC G2DJT2 #=GS G2DJT2/9-111_215-308 OS Neisseria weaveri LMG 5135 #=GS G2DJT2/9-111_215-308 DE Ribosomal RNA small subunit methyltransferase H #=GS G2DJT2/9-111_215-308 DR GENE3D; 36a33072bbc728b9601ffcb79c7e402c/9-111_215-308; #=GS G2DJT2/9-111_215-308 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Neisseriales; Neisseriaceae; Neisseria; Neisseria weaveri; #=GS G2DJT2/9-111_215-308 DR EC; 2.1.1.199; #=GS A5EPL2/8-112_215-305 AC A5EPL2 #=GS A5EPL2/8-112_215-305 OS Bradyrhizobium sp. BTAi1 #=GS A5EPL2/8-112_215-305 DE Ribosomal RNA small subunit methyltransferase H #=GS A5EPL2/8-112_215-305 DR GENE3D; 36adcc01fa1705d576751dea1b110962/8-112_215-305; #=GS A5EPL2/8-112_215-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhizobiales; Bradyrhizobiaceae; Bradyrhizobium; Bradyrhizobium sp. BTAi1; #=GS A5EPL2/8-112_215-305 DR EC; 2.1.1.199; #=GS A0A084Y6D5/10-113_217-310 AC A0A084Y6D5 #=GS A0A084Y6D5/10-113_217-310 OS Candidatus Accumulibacter sp. BA-91 #=GS A0A084Y6D5/10-113_217-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A084Y6D5/10-113_217-310 DR GENE3D; 36b2e3fc51dcbf55c55c4c35b2228287/10-113_217-310; #=GS A0A084Y6D5/10-113_217-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Candidatus Accumulibacter; Candidatus Accumulibacter sp. BA-91; #=GS A0A084Y6D5/10-113_217-310 DR EC; 2.1.1.199; #=GS A0A1H2IN12/12-115_219-313 AC A0A1H2IN12 #=GS A0A1H2IN12/12-115_219-313 OS Pseudomonas mandelii #=GS A0A1H2IN12/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1H2IN12/12-115_219-313 DR GENE3D; 36e30164e53fa498cbb4df28da231702/12-115_219-313; #=GS A0A1H2IN12/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas fluorescens group; Pseudomonas mandelii; #=GS A0A1H2IN12/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A024EG99/12-115_219-313 AC A0A024EG99 #=GS A0A024EG99/12-115_219-313 OS Pseudomonas mandelii JR-1 #=GS A0A024EG99/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A024EG99/12-115_219-313 DR GENE3D; 36e30164e53fa498cbb4df28da231702/12-115_219-313; #=GS A0A024EG99/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas fluorescens group; Pseudomonas mandelii; #=GS A0A024EG99/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A1J5K9U6/15-116_226-320 AC A0A1J5K9U6 #=GS A0A1J5K9U6/15-116_226-320 OS Pasteurella multocida subsp. multocida #=GS A0A1J5K9U6/15-116_226-320 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1J5K9U6/15-116_226-320 DR GENE3D; 36e65f9b97efa750d2b132adaf40e753/15-116_226-320; #=GS A0A1J5K9U6/15-116_226-320 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Pasteurella; Pasteurella multocida; Pasteurella multocida subsp. multocida; #=GS A0A1J5K9U6/15-116_226-320 DR EC; 2.1.1.199; #=GS A0A140D7J7/15-116_226-320 AC A0A140D7J7 #=GS A0A140D7J7/15-116_226-320 OS Pasteurella multocida #=GS A0A140D7J7/15-116_226-320 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A140D7J7/15-116_226-320 DR GENE3D; 36e65f9b97efa750d2b132adaf40e753/15-116_226-320; #=GS A0A140D7J7/15-116_226-320 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Pasteurella; Pasteurella multocida; #=GS A0A140D7J7/15-116_226-320 DR EC; 2.1.1.199; #=GS A0A1C7PM24/10-111_215-308 AC A0A1C7PM24 #=GS A0A1C7PM24/10-111_215-308 OS Aeromonas piscicola #=GS A0A1C7PM24/10-111_215-308 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1C7PM24/10-111_215-308 DR GENE3D; 3710a074f037781b89420cf2a2a6bcc6/10-111_215-308; #=GS A0A1C7PM24/10-111_215-308 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Aeromonadales; Aeromonadaceae; Aeromonas; Aeromonas piscicola; #=GS A0A1C7PM24/10-111_215-308 DR EC; 2.1.1.199; #=GS A0A154LBZ4/15-119_222-264_285-314 AC A0A154LBZ4 #=GS A0A154LBZ4/15-119_222-264_285-314 OS Thalassospira lucentensis #=GS A0A154LBZ4/15-119_222-264_285-314 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A154LBZ4/15-119_222-264_285-314 DR GENE3D; 374f2549b7b2b72df8a93df2bc78d51b/15-119_222-264_285-314; #=GS A0A154LBZ4/15-119_222-264_285-314 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodospirillales; Rhodospirillaceae; Thalassospira; Thalassospira lucentensis; #=GS A0A154LBZ4/15-119_222-264_285-314 DR EC; 2.1.1.199; #=GS A0A081NE94/13-112_216-308 AC A0A081NE94 #=GS A0A081NE94/13-112_216-308 OS Endozoicomonas numazuensis #=GS A0A081NE94/13-112_216-308 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A081NE94/13-112_216-308 DR GENE3D; 376e604022504c3a916ace7979c2da6e/13-112_216-308; #=GS A0A081NE94/13-112_216-308 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Oceanospirillales; Hahellaceae; Endozoicomonas; Endozoicomonas numazuensis; #=GS A0A081NE94/13-112_216-308 DR EC; 2.1.1.199; #=GS A0A037UNE7/31-135_239-281_302-331 AC A0A037UNE7 #=GS A0A037UNE7/31-135_239-281_302-331 OS Rhodomicrobium udaipurense JA643 #=GS A0A037UNE7/31-135_239-281_302-331 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A037UNE7/31-135_239-281_302-331 DR GENE3D; 3779e8d4fb224efbf89b92eebe54a5a0/31-135_239-281_302-331; #=GS A0A037UNE7/31-135_239-281_302-331 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhizobiales; Hyphomicrobiaceae; Rhodomicrobium; Rhodomicrobium udaipurense; #=GS A0A037UNE7/31-135_239-281_302-331 DR EC; 2.1.1.199; #=GS A0A1C3RJH4/4-104_207-249_271-299 AC A0A1C3RJH4 #=GS A0A1C3RJH4/4-104_207-249_271-299 OS Terasakiella sp. PR1 #=GS A0A1C3RJH4/4-104_207-249_271-299 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1C3RJH4/4-104_207-249_271-299 DR GENE3D; 378227ac6192da7ea1cb5cfd1cf22026/4-104_207-249_271-299; #=GS A0A1C3RJH4/4-104_207-249_271-299 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhizobiales; Methylocystaceae; Terasakiella; Terasakiella sp. PR1; #=GS A0A1C3RJH4/4-104_207-249_271-299 DR EC; 2.1.1.199; #=GS A0A101VMK7/12-117_218-306 AC A0A101VMK7 #=GS A0A101VMK7/12-117_218-306 OS Sphingomonadales bacterium BRH_c3 #=GS A0A101VMK7/12-117_218-306 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A101VMK7/12-117_218-306 DR GENE3D; 378309a09eed625e29fa409f0953b821/12-117_218-306; #=GS A0A101VMK7/12-117_218-306 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadales bacterium BRH_c3; #=GS A0A101VMK7/12-117_218-306 DR EC; 2.1.1.199; #=GS A0A0B4EHL9/12-110_214-304 AC A0A0B4EHL9 #=GS A0A0B4EHL9/12-110_214-304 OS Leisingera sp. ANG1 #=GS A0A0B4EHL9/12-110_214-304 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0B4EHL9/12-110_214-304 DR GENE3D; 378bc93960671af859f8c57dd51db6f0/12-110_214-304; #=GS A0A0B4EHL9/12-110_214-304 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Leisingera; Leisingera sp. ANG1; #=GS A0A0B4EHL9/12-110_214-304 DR EC; 2.1.1.199; #=GS A0A0B2D4I6/10-113_217-311 AC A0A0B2D4I6 #=GS A0A0B2D4I6/10-113_217-311 OS Pseudomonas flexibilis #=GS A0A0B2D4I6/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0B2D4I6/10-113_217-311 DR GENE3D; 37991acb468514c1c46db86a34226c6c/10-113_217-311; #=GS A0A0B2D4I6/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas flexibilis; #=GS A0A0B2D4I6/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A0W0TH90/7-110_214-306 AC A0A0W0TH90 #=GS A0A0W0TH90/7-110_214-306 OS Legionella feeleii #=GS A0A0W0TH90/7-110_214-306 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0W0TH90/7-110_214-306 DR GENE3D; 37c60558cd2a25e666f13b7dfe7f7e25/7-110_214-306; #=GS A0A0W0TH90/7-110_214-306 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Legionellales; Legionellaceae; Legionella; Legionella feeleii; #=GS A0A0W0TH90/7-110_214-306 DR EC; 2.1.1.199; #=GS A0A0P9S810/10-113_217-311 AC A0A0P9S810 #=GS A0A0P9S810/10-113_217-311 OS Pseudomonas amygdali pv. hibisci #=GS A0A0P9S810/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0P9S810/10-113_217-311 DR GENE3D; 37d357a8da28169173dcca0d43093e8e/10-113_217-311; #=GS A0A0P9S810/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 2; Pseudomonas amygdali; #=GS A0A0P9S810/10-113_217-311 DR EC; 2.1.1.199; #=GS F3K385/10-113_217-311 AC F3K385 #=GS F3K385/10-113_217-311 OS Pseudomonas amygdali pv. tabaci str. ATCC 11528 #=GS F3K385/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS F3K385/10-113_217-311 DR GENE3D; 37d357a8da28169173dcca0d43093e8e/10-113_217-311; #=GS F3K385/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 2; Pseudomonas amygdali; #=GS F3K385/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A0N8SIU6/10-113_217-311 AC A0A0N8SIU6 #=GS A0A0N8SIU6/10-113_217-311 OS Pseudomonas savastanoi pv. retacarpa #=GS A0A0N8SIU6/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0N8SIU6/10-113_217-311 DR GENE3D; 37d357a8da28169173dcca0d43093e8e/10-113_217-311; #=GS A0A0N8SIU6/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 2; Pseudomonas savastanoi; #=GS A0A0N8SIU6/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A0Q0CWL3/10-113_217-311 AC A0A0Q0CWL3 #=GS A0A0Q0CWL3/10-113_217-311 OS Pseudomonas savastanoi pv. savastanoi #=GS A0A0Q0CWL3/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q0CWL3/10-113_217-311 DR GENE3D; 37d357a8da28169173dcca0d43093e8e/10-113_217-311; #=GS A0A0Q0CWL3/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 2; Pseudomonas savastanoi; #=GS A0A0Q0CWL3/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A0W8HJV4/10-113_217-311 AC A0A0W8HJV4 #=GS A0A0W8HJV4/10-113_217-311 OS Pseudomonas savastanoi pv. fraxini #=GS A0A0W8HJV4/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0W8HJV4/10-113_217-311 DR GENE3D; 37d357a8da28169173dcca0d43093e8e/10-113_217-311; #=GS A0A0W8HJV4/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 2; Pseudomonas savastanoi; #=GS A0A0W8HJV4/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A0P9UK30/10-113_217-311 AC A0A0P9UK30 #=GS A0A0P9UK30/10-113_217-311 OS Pseudomonas meliae #=GS A0A0P9UK30/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0P9UK30/10-113_217-311 DR GENE3D; 37d357a8da28169173dcca0d43093e8e/10-113_217-311; #=GS A0A0P9UK30/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 2; Pseudomonas meliae; #=GS A0A0P9UK30/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A0P9UGB0/10-113_217-311 AC A0A0P9UGB0 #=GS A0A0P9UGB0/10-113_217-311 OS Pseudomonas amygdali pv. eriobotryae #=GS A0A0P9UGB0/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0P9UGB0/10-113_217-311 DR GENE3D; 37d357a8da28169173dcca0d43093e8e/10-113_217-311; #=GS A0A0P9UGB0/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 2; Pseudomonas amygdali; #=GS A0A0P9UGB0/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A0N8QUG9/10-113_217-311 AC A0A0N8QUG9 #=GS A0A0N8QUG9/10-113_217-311 OS Pseudomonas amygdali pv. ciccaronei #=GS A0A0N8QUG9/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0N8QUG9/10-113_217-311 DR GENE3D; 37d357a8da28169173dcca0d43093e8e/10-113_217-311; #=GS A0A0N8QUG9/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 2; Pseudomonas amygdali; #=GS A0A0N8QUG9/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A0N0WYA0/10-113_217-311 AC A0A0N0WYA0 #=GS A0A0N0WYA0/10-113_217-311 OS Pseudomonas amygdali pv. lachrymans #=GS A0A0N0WYA0/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0N0WYA0/10-113_217-311 DR GENE3D; 37d357a8da28169173dcca0d43093e8e/10-113_217-311; #=GS A0A0N0WYA0/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 2; Pseudomonas amygdali; #=GS A0A0N0WYA0/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A0P9I1Z0/10-113_217-311 AC A0A0P9I1Z0 #=GS A0A0P9I1Z0/10-113_217-311 OS Pseudomonas amygdali #=GS A0A0P9I1Z0/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0P9I1Z0/10-113_217-311 DR GENE3D; 37d357a8da28169173dcca0d43093e8e/10-113_217-311; #=GS A0A0P9I1Z0/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 2; Pseudomonas amygdali; #=GS A0A0P9I1Z0/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A0P9Q9H4/10-113_217-311 AC A0A0P9Q9H4 #=GS A0A0P9Q9H4/10-113_217-311 OS Pseudomonas amygdali pv. dendropanacis #=GS A0A0P9Q9H4/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0P9Q9H4/10-113_217-311 DR GENE3D; 37d357a8da28169173dcca0d43093e8e/10-113_217-311; #=GS A0A0P9Q9H4/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 2; Pseudomonas amygdali; #=GS A0A0P9Q9H4/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A0Q0BK03/10-113_217-311 AC A0A0Q0BK03 #=GS A0A0Q0BK03/10-113_217-311 OS Pseudomonas amygdali pv. tabaci #=GS A0A0Q0BK03/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q0BK03/10-113_217-311 DR GENE3D; 37d357a8da28169173dcca0d43093e8e/10-113_217-311; #=GS A0A0Q0BK03/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 2; Pseudomonas amygdali; #=GS A0A0Q0BK03/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A0N1JQG3/10-113_217-311 AC A0A0N1JQG3 #=GS A0A0N1JQG3/10-113_217-311 OS Pseudomonas amygdali pv. morsprunorum #=GS A0A0N1JQG3/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0N1JQG3/10-113_217-311 DR GENE3D; 37d357a8da28169173dcca0d43093e8e/10-113_217-311; #=GS A0A0N1JQG3/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 2; Pseudomonas amygdali; #=GS A0A0N1JQG3/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A0P9K429/10-113_217-311 AC A0A0P9K429 #=GS A0A0P9K429/10-113_217-311 OS Pseudomonas amygdali pv. aesculi #=GS A0A0P9K429/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0P9K429/10-113_217-311 DR GENE3D; 37d357a8da28169173dcca0d43093e8e/10-113_217-311; #=GS A0A0P9K429/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 2; Pseudomonas amygdali; #=GS A0A0P9K429/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A0P9WAB6/10-113_217-311 AC A0A0P9WAB6 #=GS A0A0P9WAB6/10-113_217-311 OS Pseudomonas savastanoi pv. nerii #=GS A0A0P9WAB6/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0P9WAB6/10-113_217-311 DR GENE3D; 37d357a8da28169173dcca0d43093e8e/10-113_217-311; #=GS A0A0P9WAB6/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 2; Pseudomonas savastanoi; #=GS A0A0P9WAB6/10-113_217-311 DR EC; 2.1.1.199; #=GS F2L7H9/10-110_218-310 AC F2L7H9 #=GS F2L7H9/10-110_218-310 OS Burkholderia gladioli BSR3 #=GS F2L7H9/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS F2L7H9/10-110_218-310 DR GENE3D; 37d8f1df470ec69eedf438f095e82193/10-110_218-310; #=GS F2L7H9/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia gladioli; #=GS F2L7H9/10-110_218-310 DR EC; 2.1.1.199; #=GS A0A080MA70/10-113_217-310 AC A0A080MA70 #=GS A0A080MA70/10-113_217-310 OS Candidatus Accumulibacter sp. SK-02 #=GS A0A080MA70/10-113_217-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A080MA70/10-113_217-310 DR GENE3D; 37fd59e320ac4644715abd0d5c3a8171/10-113_217-310; #=GS A0A080MA70/10-113_217-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Candidatus Accumulibacter; Candidatus Accumulibacter sp. SK-02; #=GS A0A080MA70/10-113_217-310 DR EC; 2.1.1.199; #=GS A0A127HWP1/12-115_219-313 AC A0A127HWP1 #=GS A0A127HWP1/12-115_219-313 OS Pseudomonas azotoformans #=GS A0A127HWP1/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A127HWP1/12-115_219-313 DR GENE3D; 3801f63118c90625e2fa995f0744c37c/12-115_219-313; #=GS A0A127HWP1/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas fluorescens group; Pseudomonas azotoformans; #=GS A0A127HWP1/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A0A1YWN7/12-115_219-313 AC A0A0A1YWN7 #=GS A0A0A1YWN7/12-115_219-313 OS Pseudomonas fluorescens LMG 5329 #=GS A0A0A1YWN7/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0A1YWN7/12-115_219-313 DR GENE3D; 3801f63118c90625e2fa995f0744c37c/12-115_219-313; #=GS A0A0A1YWN7/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas fluorescens group; Pseudomonas fluorescens; #=GS A0A0A1YWN7/12-115_219-313 DR EC; 2.1.1.199; #=GS W2DTE7/12-115_219-313 AC W2DTE7 #=GS W2DTE7/12-115_219-313 OS Pseudomonas sp. FH1 #=GS W2DTE7/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS W2DTE7/12-115_219-313 DR GENE3D; 3801f63118c90625e2fa995f0744c37c/12-115_219-313; #=GS W2DTE7/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas fluorescens group; Pseudomonas sp. FH1; #=GS W2DTE7/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A1H1R7S3/12-115_219-313 AC A0A1H1R7S3 #=GS A0A1H1R7S3/12-115_219-313 OS Pseudomonas chlororaphis #=GS A0A1H1R7S3/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1H1R7S3/12-115_219-313 DR GENE3D; 381ad459e15cf0e85d7a9aac2d79e620/12-115_219-313; #=GS A0A1H1R7S3/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas chlororaphis group; Pseudomonas chlororaphis; #=GS A0A1H1R7S3/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A1E1G3N8/12-115_219-313 AC A0A1E1G3N8 #=GS A0A1E1G3N8/12-115_219-313 OS Pseudomonas chlororaphis subsp. aurantiaca #=GS A0A1E1G3N8/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1E1G3N8/12-115_219-313 DR GENE3D; 381ad459e15cf0e85d7a9aac2d79e620/12-115_219-313; #=GS A0A1E1G3N8/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas chlororaphis group; Pseudomonas chlororaphis; Pseudomonas chlororaphis subsp. aurantiaca; #=GS A0A1E1G3N8/12-115_219-313 DR EC; 2.1.1.199; #=GS R5QTK4/8-108_211-301 AC R5QTK4 #=GS R5QTK4/8-108_211-301 OS Proteobacteria bacterium CAG:495 #=GS R5QTK4/8-108_211-301 DE Ribosomal RNA small subunit methyltransferase H #=GS R5QTK4/8-108_211-301 DR GENE3D; 38429858a79d9e359b1e422aa0696e16/8-108_211-301; #=GS R5QTK4/8-108_211-301 DR ORG; Bacteria; Proteobacteria; Proteobacteria bacterium CAG:495; #=GS R5QTK4/8-108_211-301 DR EC; 2.1.1.199; #=GS E7PK88/10-113_217-311 AC E7PK88 #=GS E7PK88/10-113_217-311 OS Pseudomonas savastanoi pv. glycinea str. race 4 #=GS E7PK88/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS E7PK88/10-113_217-311 DR GENE3D; 3851d773e7b236aadb71cfc722267176/10-113_217-311; #=GS E7PK88/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 2; Pseudomonas savastanoi; #=GS E7PK88/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A0N1JEN8/10-113_217-311 AC A0A0N1JEN8 #=GS A0A0N1JEN8/10-113_217-311 OS Pseudomonas syringae pv. maculicola #=GS A0A0N1JEN8/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0N1JEN8/10-113_217-311 DR GENE3D; 3851d773e7b236aadb71cfc722267176/10-113_217-311; #=GS A0A0N1JEN8/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 3; #=GS A0A0N1JEN8/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A0N8RPS2/10-113_217-311 AC A0A0N8RPS2 #=GS A0A0N8RPS2/10-113_217-311 OS Pseudomonas savastanoi pv. glycinea #=GS A0A0N8RPS2/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0N8RPS2/10-113_217-311 DR GENE3D; 3851d773e7b236aadb71cfc722267176/10-113_217-311; #=GS A0A0N8RPS2/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 2; Pseudomonas savastanoi; #=GS A0A0N8RPS2/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A0P9ZBE3/10-113_217-311 AC A0A0P9ZBE3 #=GS A0A0P9ZBE3/10-113_217-311 OS Pseudomonas savastanoi pv. phaseolicola #=GS A0A0P9ZBE3/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0P9ZBE3/10-113_217-311 DR GENE3D; 3851d773e7b236aadb71cfc722267176/10-113_217-311; #=GS A0A0P9ZBE3/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 2; Pseudomonas savastanoi; #=GS A0A0P9ZBE3/10-113_217-311 DR EC; 2.1.1.199; #=GS Q48EF0/10-113_217-311 AC Q48EF0 #=GS Q48EF0/10-113_217-311 OS Pseudomonas savastanoi pv. phaseolicola 1448A #=GS Q48EF0/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS Q48EF0/10-113_217-311 DR GENE3D; 3851d773e7b236aadb71cfc722267176/10-113_217-311; #=GS Q48EF0/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 2; Pseudomonas savastanoi; #=GS Q48EF0/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A0M9HS98/10-113_217-311 AC A0A0M9HS98 #=GS A0A0M9HS98/10-113_217-311 OS Pseudomonas amygdali pv. mellea #=GS A0A0M9HS98/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0M9HS98/10-113_217-311 DR GENE3D; 3851d773e7b236aadb71cfc722267176/10-113_217-311; #=GS A0A0M9HS98/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 2; Pseudomonas amygdali; #=GS A0A0M9HS98/10-113_217-311 DR EC; 2.1.1.199; #=GS H0SEV2/8-112_215-305 AC H0SEV2 #=GS H0SEV2/8-112_215-305 OS Bradyrhizobium sp. ORS 375 #=GS H0SEV2/8-112_215-305 DE Ribosomal RNA small subunit methyltransferase H #=GS H0SEV2/8-112_215-305 DR GENE3D; 38677300f1d04d4daaeddb1271cba453/8-112_215-305; #=GS H0SEV2/8-112_215-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhizobiales; Bradyrhizobiaceae; Bradyrhizobium; Bradyrhizobium sp. ORS 375; #=GS H0SEV2/8-112_215-305 DR EC; 2.1.1.199; #=GS A0A062UEM9/15-118_222-264_285-314 AC A0A062UEM9 #=GS A0A062UEM9/15-118_222-264_285-314 OS Hyphomonas chukchiensis #=GS A0A062UEM9/15-118_222-264_285-314 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A062UEM9/15-118_222-264_285-314 DR GENE3D; 38780bbba889d882be6f3b409236348a/15-118_222-264_285-314; #=GS A0A062UEM9/15-118_222-264_285-314 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Hyphomonadaceae; Hyphomonas; Hyphomonas chukchiensis; #=GS A0A062UEM9/15-118_222-264_285-314 DR EC; 2.1.1.199; #=GS A0A1H2NG40/12-115_219-313 AC A0A1H2NG40 #=GS A0A1H2NG40/12-115_219-313 OS Pseudomonas brenneri #=GS A0A1H2NG40/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1H2NG40/12-115_219-313 DR GENE3D; 38900619a39a73c2f6f353972a76c773/12-115_219-313; #=GS A0A1H2NG40/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas fluorescens group; Pseudomonas brenneri; #=GS A0A1H2NG40/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A098SUM6/12-115_219-313 AC A0A098SUM6 #=GS A0A098SUM6/12-115_219-313 OS Pseudomonas lutea #=GS A0A098SUM6/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A098SUM6/12-115_219-313 DR GENE3D; 38a95ea7d7f6c591e2fd7795f300fed3/12-115_219-313; #=GS A0A098SUM6/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas lutea; #=GS A0A098SUM6/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A172YW58/12-115_219-313 AC A0A172YW58 #=GS A0A172YW58/12-115_219-313 OS Pseudomonas antarctica #=GS A0A172YW58/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A172YW58/12-115_219-313 DR GENE3D; 38d35b3959e3d9569da6727cd15ac620/12-115_219-313; #=GS A0A172YW58/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas antarctica; #=GS A0A172YW58/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A0S2THT5/10-113_218-310 AC A0A0S2THT5 #=GS A0A0S2THT5/10-113_218-310 OS Candidatus Tenderia electrophaga #=GS A0A0S2THT5/10-113_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0S2THT5/10-113_218-310 DR GENE3D; 38eb6b49b2700103cdf537e036c43646/10-113_218-310; #=GS A0A0S2THT5/10-113_218-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Chromatiales; Chromatiaceae; Candidatus Tenderia; Candidatus Tenderia electrophaga; #=GS A0A0S2THT5/10-113_218-310 DR EC; 2.1.1.199; #=GS A0A059KNR4/15-119_224-313 AC A0A059KNR4 #=GS A0A059KNR4/15-119_224-313 OS Sphaerotilus natans subsp. natans DSM 6575 #=GS A0A059KNR4/15-119_224-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A059KNR4/15-119_224-313 DR GENE3D; 38ed0bee53497cd7d62f82a465a1c4fb/15-119_224-313; #=GS A0A059KNR4/15-119_224-313 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Sphaerotilus; Sphaerotilus natans; Sphaerotilus natans subsp. natans; #=GS A0A059KNR4/15-119_224-313 DR EC; 2.1.1.199; #=GS A0A1N7CAG5/15-119_224-313 AC A0A1N7CAG5 #=GS A0A1N7CAG5/15-119_224-313 OS Sphaerotilus natans #=GS A0A1N7CAG5/15-119_224-313 DE 16S rRNA (Cytosine1402-N4)-methyltransferase #=GS A0A1N7CAG5/15-119_224-313 DR GENE3D; 38ed0bee53497cd7d62f82a465a1c4fb/15-119_224-313; #=GS A0A1N7CAG5/15-119_224-313 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Sphaerotilus; Sphaerotilus natans; #=GS A0A1N7CAG5/15-119_224-313 DR EC; 2.1.1.199; #=GS A8H992/10-112_216-310 AC A8H992 #=GS A8H992/10-112_216-310 OS Shewanella pealeana ATCC 700345 #=GS A8H992/10-112_216-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A8H992/10-112_216-310 DR GENE3D; 3915e3faa77db3016544a1471d488cd7/10-112_216-310; #=GS A8H992/10-112_216-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Shewanellaceae; Shewanella; Shewanella pealeana; #=GS A8H992/10-112_216-310 DR EC; 2.1.1.199; #=GS A0A106BPG6/8-108_212-305 AC A0A106BPG6 #=GS A0A106BPG6/8-108_212-305 OS Thiobacillus denitrificans #=GS A0A106BPG6/8-108_212-305 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A106BPG6/8-108_212-305 DR GENE3D; 39292f0dc4311a6ec16ffaf96e56e87c/8-108_212-305; #=GS A0A106BPG6/8-108_212-305 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Hydrogenophilales; Hydrogenophilaceae; Thiobacillus; Thiobacillus denitrificans; #=GS A0A106BPG6/8-108_212-305 DR EC; 2.1.1.199; #=GS Q7NPZ1/11-113_217-310 AC Q7NPZ1 #=GS Q7NPZ1/11-113_217-310 OS Chromobacterium violaceum ATCC 12472 #=GS Q7NPZ1/11-113_217-310 DE Ribosomal RNA small subunit methyltransferase H #=GS Q7NPZ1/11-113_217-310 DR GENE3D; 3947bf6ca74dcd8e10febbe6570fbc93/11-113_217-310; #=GS Q7NPZ1/11-113_217-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Neisseriales; Chromobacteriaceae; Chromobacterium; Chromobacterium violaceum; #=GS Q7NPZ1/11-113_217-310 DR EC; 2.1.1.199; #=GS F5ZBQ8/12-114_218-312 AC F5ZBQ8 #=GS F5ZBQ8/12-114_218-312 OS Alteromonas naphthalenivorans #=GS F5ZBQ8/12-114_218-312 DE Ribosomal RNA small subunit methyltransferase H #=GS F5ZBQ8/12-114_218-312 DR GENE3D; 39498eb64f8dacca3f4fc3e9c8fa3ecf/12-114_218-312; #=GS F5ZBQ8/12-114_218-312 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Alteromonadaceae; Alteromonas; Alteromonas naphthalenivorans; #=GS F5ZBQ8/12-114_218-312 DR EC; 2.1.1.199; #=GS A0A0T5Z9N2/10-113_217-309 AC A0A0T5Z9N2 #=GS A0A0T5Z9N2/10-113_217-309 OS endosymbiont of Ridgeia piscesae #=GS A0A0T5Z9N2/10-113_217-309 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0T5Z9N2/10-113_217-309 DR GENE3D; 396bb1eecc5a66b114fadba0b45bf924/10-113_217-309; #=GS A0A0T5Z9N2/10-113_217-309 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; endosymbiont of Ridgeia piscesae; #=GS A0A0T5Z9N2/10-113_217-309 DR EC; 2.1.1.199; #=GS A8TR33/8-112_216-258_283-311 AC A8TR33 #=GS A8TR33/8-112_216-258_283-311 OS alpha proteobacterium BAL199 #=GS A8TR33/8-112_216-258_283-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A8TR33/8-112_216-258_283-311 DR GENE3D; 3974de7eb4050d0a689df69a1c97b463/8-112_216-258_283-311; #=GS A8TR33/8-112_216-258_283-311 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; alpha proteobacterium BAL199; #=GS A8TR33/8-112_216-258_283-311 DR EC; 2.1.1.199; #=GS A0A0U1QEK2/42-132_236-328 AC A0A0U1QEK2 #=GS A0A0U1QEK2/42-132_236-328 OS Achromobacter sp. LC458 #=GS A0A0U1QEK2/42-132_236-328 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0U1QEK2/42-132_236-328 DR GENE3D; 398187ed7e8bec801e962b88a5024a21/42-132_236-328; #=GS A0A0U1QEK2/42-132_236-328 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Alcaligenaceae; Achromobacter; Achromobacter sp. LC458; #=GS A0A0U1QEK2/42-132_236-328 DR EC; 2.1.1.199; #=GS M9R979/10-106_210-301 AC M9R979 #=GS M9R979/10-106_210-301 OS Octadecabacter antarcticus 307 #=GS M9R979/10-106_210-301 DE Ribosomal RNA small subunit methyltransferase H #=GS M9R979/10-106_210-301 DR GENE3D; 3997646e18abf559056529e4549e1d35/10-106_210-301; #=GS M9R979/10-106_210-301 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Octadecabacter; Octadecabacter antarcticus; #=GS M9R979/10-106_210-301 DR EC; 2.1.1.199; #=GS F4APD7/10-112_216-310 AC F4APD7 #=GS F4APD7/10-112_216-310 OS Glaciecola sp. 4H-3-7+YE-5 #=GS F4APD7/10-112_216-310 DE Ribosomal RNA small subunit methyltransferase H #=GS F4APD7/10-112_216-310 DR GENE3D; 39988bbbe383b38d5490374b36ff4382/10-112_216-310; #=GS F4APD7/10-112_216-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Alteromonadaceae; Glaciecola; Glaciecola sp. 4H-3-7+YE-5; #=GS F4APD7/10-112_216-310 DR EC; 2.1.1.199; #=GS A0A1I9YJR2/14-114_222-314 AC A0A1I9YJR2 #=GS A0A1I9YJR2/14-114_222-314 OS Paraburkholderia sprentiae WSM5005 #=GS A0A1I9YJR2/14-114_222-314 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1I9YJR2/14-114_222-314 DR GENE3D; 39f01aabb4a51fead24721ad1af8579d/14-114_222-314; #=GS A0A1I9YJR2/14-114_222-314 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Paraburkholderia; Paraburkholderia sprentiae; #=GS A0A1I9YJR2/14-114_222-314 DR EC; 2.1.1.199; #=GS A0A1M3P0X5/9-109_213-304 AC A0A1M3P0X5 #=GS A0A1M3P0X5/9-109_213-304 OS Rhodanobacter sp. 68-29 #=GS A0A1M3P0X5/9-109_213-304 DE 16S rRNA (Cytosine(1402)-N(4))-methyltransferase #=GS A0A1M3P0X5/9-109_213-304 DR GENE3D; 3a0250b901150005e6d38b1a62bb26a2/9-109_213-304; #=GS A0A1M3P0X5/9-109_213-304 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Xanthomonadales; Rhodanobacteraceae; Rhodanobacter; Rhodanobacter sp. 68-29; #=GS A0A1M3P0X5/9-109_213-304 DR EC; 2.1.1.199; #=GS A0A1E4MNV9/9-109_213-304 AC A0A1E4MNV9 #=GS A0A1E4MNV9/9-109_213-304 OS Rhodanobacter sp. SCN 69-32 #=GS A0A1E4MNV9/9-109_213-304 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1E4MNV9/9-109_213-304 DR GENE3D; 3a0250b901150005e6d38b1a62bb26a2/9-109_213-304; #=GS A0A1E4MNV9/9-109_213-304 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Xanthomonadales; Rhodanobacteraceae; Rhodanobacter; Rhodanobacter sp. SCN 69-32; #=GS A0A1E4MNV9/9-109_213-304 DR EC; 2.1.1.199; #=GS A0A0W0W149/7-110_214-306 AC A0A0W0W149 #=GS A0A0W0W149/7-110_214-306 OS Legionella maceachernii #=GS A0A0W0W149/7-110_214-306 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0W0W149/7-110_214-306 DR GENE3D; 3a24a2f3c144223803fec3b0fa67ebe2/7-110_214-306; #=GS A0A0W0W149/7-110_214-306 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Legionellales; Legionellaceae; Tatlockia; Legionella maceachernii; #=GS A0A0W0W149/7-110_214-306 DR EC; 2.1.1.199; #=GS S5AFF9/12-114_218-312 AC S5AFF9 #=GS S5AFF9/12-114_218-312 OS Alteromonas mediterranea 615 #=GS S5AFF9/12-114_218-312 DE Ribosomal RNA small subunit methyltransferase H #=GS S5AFF9/12-114_218-312 DR GENE3D; 3a7df039984192d80a703fa49201672c/12-114_218-312; #=GS S5AFF9/12-114_218-312 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Alteromonadaceae; Alteromonas; Alteromonas mediterranea; #=GS S5AFF9/12-114_218-312 DR EC; 2.1.1.199; #=GS G4E468/28-134_240-332 AC G4E468 #=GS G4E468/28-134_240-332 OS Thiorhodospira sibirica ATCC 700588 #=GS G4E468/28-134_240-332 DE Ribosomal RNA small subunit methyltransferase H #=GS G4E468/28-134_240-332 DR GENE3D; 3a8049a7a943a3ce969f49a87f87a72c/28-134_240-332; #=GS G4E468/28-134_240-332 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Chromatiales; Ectothiorhodospiraceae; Thiorhodospira; Thiorhodospira sibirica; #=GS G4E468/28-134_240-332 DR EC; 2.1.1.199; #=GS F0E7B0/12-115_219-313 AC F0E7B0 #=GS F0E7B0/12-115_219-313 OS Pseudomonas sp. TJI-51 #=GS F0E7B0/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS F0E7B0/12-115_219-313 DR GENE3D; 3a977c6460bd43503ca1fb0dd586a4b9/12-115_219-313; #=GS F0E7B0/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. TJI-51; #=GS F0E7B0/12-115_219-313 DR EC; 2.1.1.199; #=GS T0J539/13-122_228-319 AC T0J539 #=GS T0J539/13-122_228-319 OS Novosphingobium lindaniclasticum LE124 #=GS T0J539/13-122_228-319 DE Ribosomal RNA small subunit methyltransferase H #=GS T0J539/13-122_228-319 DR GENE3D; 3aa5b0e67a458d2d4d18317e657f7a75/13-122_228-319; #=GS T0J539/13-122_228-319 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Novosphingobium; Novosphingobium lindaniclasticum; #=GS T0J539/13-122_228-319 DR EC; 2.1.1.199; #=GS Q1MYB2/7-110_214-306 AC Q1MYB2 #=GS Q1MYB2/7-110_214-306 OS Bermanella marisrubri #=GS Q1MYB2/7-110_214-306 DE Ribosomal RNA small subunit methyltransferase H #=GS Q1MYB2/7-110_214-306 DR GENE3D; 3aae800f7a3a5efde636826b5bbb04dc/7-110_214-306; #=GS Q1MYB2/7-110_214-306 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Oceanospirillales; Oceanospirillaceae; Bermanella; Bermanella marisrubri; #=GS Q1MYB2/7-110_214-306 DR EC; 2.1.1.199; #=GS A0A139CCH4/17-118_222-315 AC A0A139CCH4 #=GS A0A139CCH4/17-118_222-315 OS Halomonadaceae bacterium T82-2 #=GS A0A139CCH4/17-118_222-315 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A139CCH4/17-118_222-315 DR GENE3D; 3b228d6a633554883866d52a9c0fdedb/17-118_222-315; #=GS A0A139CCH4/17-118_222-315 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Oceanospirillales; Halomonadaceae; Halomonadaceae bacterium T82-2; #=GS A0A139CCH4/17-118_222-315 DR EC; 2.1.1.199; #=GS A0A1G0GBV8/11-113_219-311 AC A0A1G0GBV8 #=GS A0A1G0GBV8/11-113_219-311 OS Gammaproteobacteria bacterium RIFCSPHIGHO2_12_FULL_37_14 #=GS A0A1G0GBV8/11-113_219-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1G0GBV8/11-113_219-311 DR GENE3D; 3b27d66da775a4cfda43d5e3c73ca561/11-113_219-311; #=GS A0A1G0GBV8/11-113_219-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Gammaproteobacteria bacterium RIFCSPHIGHO2_12_FULL_37_14; #=GS A0A1G0GBV8/11-113_219-311 DR EC; 2.1.1.199; #=GS A0A0A6D478/10-112_213-304 AC A0A0A6D478 #=GS A0A0A6D478/10-112_213-304 OS Sphingomonas sp. Ant20 #=GS A0A0A6D478/10-112_213-304 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0A6D478/10-112_213-304 DR GENE3D; 3b2e7f687359f17fcb339d43e2e91881/10-112_213-304; #=GS A0A0A6D478/10-112_213-304 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingomonas; Sphingomonas sp. Ant20; #=GS A0A0A6D478/10-112_213-304 DR EC; 2.1.1.199; #=GS A0A0Q4JWH7/10-112_213-304 AC A0A0Q4JWH7 #=GS A0A0Q4JWH7/10-112_213-304 OS Sphingomonas sp. Leaf30 #=GS A0A0Q4JWH7/10-112_213-304 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q4JWH7/10-112_213-304 DR GENE3D; 3b2e7f687359f17fcb339d43e2e91881/10-112_213-304; #=GS A0A0Q4JWH7/10-112_213-304 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingomonas; Sphingomonas sp. Leaf30; #=GS A0A0Q4JWH7/10-112_213-304 DR EC; 2.1.1.199; #=GS R5QLD7/7-111_215-307 AC R5QLD7 #=GS R5QLD7/7-111_215-307 OS Acetobacter sp. CAG:977 #=GS R5QLD7/7-111_215-307 DE Ribosomal RNA small subunit methyltransferase H #=GS R5QLD7/7-111_215-307 DR GENE3D; 3b55932a3a89a25678f1587864adf363/7-111_215-307; #=GS R5QLD7/7-111_215-307 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodospirillales; Acetobacteraceae; Acetobacter; Acetobacter sp. CAG:977; #=GS R5QLD7/7-111_215-307 DR EC; 2.1.1.199; #=GS A0A1E4Z1S0/10-110_218-310 AC A0A1E4Z1S0 #=GS A0A1E4Z1S0/10-110_218-310 OS Burkholderia sp. A2 #=GS A0A1E4Z1S0/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1E4Z1S0/10-110_218-310 DR GENE3D; 3b6224dc299ff6923f82ee029208538e/10-110_218-310; #=GS A0A1E4Z1S0/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia sp. A2; #=GS A0A1E4Z1S0/10-110_218-310 DR EC; 2.1.1.199; #=GS B1JUW4/10-110_218-310 AC B1JUW4 #=GS B1JUW4/10-110_218-310 OS Burkholderia cenocepacia MC0-3 #=GS B1JUW4/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS B1JUW4/10-110_218-310 DR GENE3D; 3b6224dc299ff6923f82ee029208538e/10-110_218-310; #=GS B1JUW4/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia cepacia complex; Burkholderia cenocepacia; #=GS B1JUW4/10-110_218-310 DR EC; 2.1.1.199; #=GS V4ZWK2/10-110_218-310 AC V4ZWK2 #=GS V4ZWK2/10-110_218-310 OS Burkholderia cenocepacia KC-01 #=GS V4ZWK2/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS V4ZWK2/10-110_218-310 DR GENE3D; 3b6224dc299ff6923f82ee029208538e/10-110_218-310; #=GS V4ZWK2/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia cepacia complex; Burkholderia cenocepacia; #=GS V4ZWK2/10-110_218-310 DR EC; 2.1.1.199; #=GS A0A1H1C6A7/10-110_218-310 AC A0A1H1C6A7 #=GS A0A1H1C6A7/10-110_218-310 OS Burkholderia cenocepacia #=GS A0A1H1C6A7/10-110_218-310 DE 16S rRNA (Cytosine1402-N4)-methyltransferase #=GS A0A1H1C6A7/10-110_218-310 DR GENE3D; 3b6224dc299ff6923f82ee029208538e/10-110_218-310; #=GS A0A1H1C6A7/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia cepacia complex; Burkholderia cenocepacia; #=GS A0A1H1C6A7/10-110_218-310 DR EC; 2.1.1.199; #=GS A0K478/10-110_218-310 AC A0K478 #=GS A0K478/10-110_218-310 OS Burkholderia cenocepacia HI2424 #=GS A0K478/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0K478/10-110_218-310 DR GENE3D; 3b6224dc299ff6923f82ee029208538e/10-110_218-310; #=GS A0K478/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia cepacia complex; Burkholderia cenocepacia; #=GS A0K478/10-110_218-310 DR EC; 2.1.1.199; #=GS A0A0T5P0J2/10-105_209-300 AC A0A0T5P0J2 #=GS A0A0T5P0J2/10-105_209-300 OS Roseovarius atlanticus #=GS A0A0T5P0J2/10-105_209-300 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0T5P0J2/10-105_209-300 DR GENE3D; 3b95ed7c6231e22a344acce88a7fa1fb/10-105_209-300; #=GS A0A0T5P0J2/10-105_209-300 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Roseovarius; Roseovarius atlanticus; #=GS A0A0T5P0J2/10-105_209-300 DR EC; 2.1.1.199; #=GS A0A074J8D2/15-119_222-264_285-314 AC A0A074J8D2 #=GS A0A074J8D2/15-119_222-264_285-314 OS Thalassospira permensis NBRC 106175 #=GS A0A074J8D2/15-119_222-264_285-314 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A074J8D2/15-119_222-264_285-314 DR GENE3D; 3b960286f1673e6e824db3627941e5fb/15-119_222-264_285-314; #=GS A0A074J8D2/15-119_222-264_285-314 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodospirillales; Rhodospirillaceae; Thalassospira; Thalassospira permensis; #=GS A0A074J8D2/15-119_222-264_285-314 DR EC; 2.1.1.199; #=GS A0A197BTZ2/14-115_216-306 AC A0A197BTZ2 #=GS A0A197BTZ2/14-115_216-306 OS Sphingomonas paucimobilis #=GS A0A197BTZ2/14-115_216-306 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A197BTZ2/14-115_216-306 DR GENE3D; 3b9c3674f8f58c53d0a39b87d85c4e86/14-115_216-306; #=GS A0A197BTZ2/14-115_216-306 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingomonas; Sphingomonas paucimobilis; #=GS A0A197BTZ2/14-115_216-306 DR EC; 2.1.1.199; #=GS A0A096YKQ7/10-110_218-310 AC A0A096YKQ7 #=GS A0A096YKQ7/10-110_218-310 OS Burkholderia thailandensis E264 #=GS A0A096YKQ7/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A096YKQ7/10-110_218-310 DR GENE3D; 3bbc4b9ddb5f3c3238f2f9e84c02f76a/10-110_218-310; #=GS A0A096YKQ7/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; pseudomallei group; Burkholderia thailandensis; #=GS A0A096YKQ7/10-110_218-310 DR EC; 2.1.1.199; #=GS Q2SZJ1/10-110_218-310 AC Q2SZJ1 #=GS Q2SZJ1/10-110_218-310 OS Burkholderia thailandensis E264 #=GS Q2SZJ1/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS Q2SZJ1/10-110_218-310 DR GENE3D; 3bbc4b9ddb5f3c3238f2f9e84c02f76a/10-110_218-310; #=GS Q2SZJ1/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; pseudomallei group; Burkholderia thailandensis; #=GS Q2SZJ1/10-110_218-310 DR EC; 2.1.1.199; #=GS A0A1B4JZ29/10-110_218-310 AC A0A1B4JZ29 #=GS A0A1B4JZ29/10-110_218-310 OS Burkholderia thailandensis #=GS A0A1B4JZ29/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1B4JZ29/10-110_218-310 DR GENE3D; 3bbc4b9ddb5f3c3238f2f9e84c02f76a/10-110_218-310; #=GS A0A1B4JZ29/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; pseudomallei group; Burkholderia thailandensis; #=GS A0A1B4JZ29/10-110_218-310 DR EC; 2.1.1.199; #=GS A3WVF5/95-199_302-393 AC A3WVF5 #=GS A3WVF5/95-199_302-393 OS Nitrobacter sp. Nb-311A #=GS A3WVF5/95-199_302-393 DE Ribosomal RNA small subunit methyltransferase H #=GS A3WVF5/95-199_302-393 DR GENE3D; 3c02a4c9674cb197aa9e2e94e21070eb/95-199_302-393; #=GS A3WVF5/95-199_302-393 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhizobiales; Bradyrhizobiaceae; Nitrobacter; Nitrobacter sp. Nb-311A; #=GS A3WVF5/95-199_302-393 DR EC; 2.1.1.199; #=GS G7F3C8/1-85_189-283 AC G7F3C8 #=GS G7F3C8/1-85_189-283 OS Pseudoalteromonas sp. BSi20429 #=GS G7F3C8/1-85_189-283 DE Ribosomal RNA small subunit methyltransferase H #=GS G7F3C8/1-85_189-283 DR GENE3D; 3c0c18112a62df63cd63dff168697506/1-85_189-283; #=GS G7F3C8/1-85_189-283 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Pseudoalteromonadaceae; Pseudoalteromonas; Pseudoalteromonas sp. BSi20429; #=GS G7F3C8/1-85_189-283 DR EC; 2.1.1.199; #=GS A0A0Q4KN42/6-109_210-301 AC A0A0Q4KN42 #=GS A0A0Q4KN42/6-109_210-301 OS Sphingomonas sp. Leaf32 #=GS A0A0Q4KN42/6-109_210-301 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q4KN42/6-109_210-301 DR GENE3D; 3c167e58b41679ee5175e6d1413b87ca/6-109_210-301; #=GS A0A0Q4KN42/6-109_210-301 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingomonas; Sphingomonas sp. Leaf32; #=GS A0A0Q4KN42/6-109_210-301 DR EC; 2.1.1.199; #=GS A0A0Q4FYY6/6-109_210-301 AC A0A0Q4FYY6 #=GS A0A0Q4FYY6/6-109_210-301 OS Sphingomonas sp. Leaf16 #=GS A0A0Q4FYY6/6-109_210-301 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q4FYY6/6-109_210-301 DR GENE3D; 3c167e58b41679ee5175e6d1413b87ca/6-109_210-301; #=GS A0A0Q4FYY6/6-109_210-301 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingomonas; Sphingomonas sp. Leaf16; #=GS A0A0Q4FYY6/6-109_210-301 DR EC; 2.1.1.199; #=GS A0A0Q4K0R8/6-109_210-301 AC A0A0Q4K0R8 #=GS A0A0Q4K0R8/6-109_210-301 OS Sphingomonas sp. Leaf29 #=GS A0A0Q4K0R8/6-109_210-301 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q4K0R8/6-109_210-301 DR GENE3D; 3c167e58b41679ee5175e6d1413b87ca/6-109_210-301; #=GS A0A0Q4K0R8/6-109_210-301 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingomonas; Sphingomonas sp. Leaf29; #=GS A0A0Q4K0R8/6-109_210-301 DR EC; 2.1.1.199; #=GS A0A0P9NG18/10-113_217-311 AC A0A0P9NG18 #=GS A0A0P9NG18/10-113_217-311 OS Pseudomonas syringae pv. cunninghamiae #=GS A0A0P9NG18/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0P9NG18/10-113_217-311 DR GENE3D; 3c1e4d8d8f2e992c6af97d23e97ccad4/10-113_217-311; #=GS A0A0P9NG18/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 1; Pseudomonas syringae; #=GS A0A0P9NG18/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A1B3LUW3/11-109_214-303 AC A0A1B3LUW3 #=GS A0A1B3LUW3/11-109_214-303 OS Hydrogenophaga sp. RAC07 #=GS A0A1B3LUW3/11-109_214-303 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1B3LUW3/11-109_214-303 DR GENE3D; 3c241533d2f864ae6d38201e4b1e4762/11-109_214-303; #=GS A0A1B3LUW3/11-109_214-303 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Comamonadaceae; Hydrogenophaga; Hydrogenophaga sp. RAC07; #=GS A0A1B3LUW3/11-109_214-303 DR EC; 2.1.1.199; #=GS H0J453/18-119_223-316 AC H0J453 #=GS H0J453/18-119_223-316 OS Halomonas sp. GFAJ-1 #=GS H0J453/18-119_223-316 DE Ribosomal RNA small subunit methyltransferase H #=GS H0J453/18-119_223-316 DR GENE3D; 3c5a30733e32ba27aa3ab40f79e35035/18-119_223-316; #=GS H0J453/18-119_223-316 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Oceanospirillales; Halomonadaceae; Halomonas; Halomonas sp. GFAJ-1; #=GS H0J453/18-119_223-316 DR EC; 2.1.1.199; #=GS A1TKC3/12-112_217-306 AC A1TKC3 #=GS A1TKC3/12-112_217-306 OS Acidovorax citrulli AAC00-1 #=GS A1TKC3/12-112_217-306 DE Ribosomal RNA small subunit methyltransferase H #=GS A1TKC3/12-112_217-306 DR GENE3D; 3c605c6da663ed2ceca3cd2deee18581/12-112_217-306; #=GS A1TKC3/12-112_217-306 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Comamonadaceae; Acidovorax; Acidovorax citrulli; #=GS A1TKC3/12-112_217-306 DR EC; 2.1.1.199; #=GS A0A078BD54/17-117_222-316 AC A0A078BD54 #=GS A0A078BD54/17-117_222-316 OS Thiomonas sp. CB2 #=GS A0A078BD54/17-117_222-316 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A078BD54/17-117_222-316 DR GENE3D; 3c7dbcdf511e3889f86a51cf63c272c4/17-117_222-316; #=GS A0A078BD54/17-117_222-316 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Thiomonas; Thiomonas sp. CB2; #=GS A0A078BD54/17-117_222-316 DR EC; 2.1.1.199; #=GS A0A160SNX2/17-117_222-316 AC A0A160SNX2 #=GS A0A160SNX2/17-117_222-316 OS Thiomonas sp. CB3 #=GS A0A160SNX2/17-117_222-316 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A160SNX2/17-117_222-316 DR GENE3D; 3c7dbcdf511e3889f86a51cf63c272c4/17-117_222-316; #=GS A0A160SNX2/17-117_222-316 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Thiomonas; Thiomonas sp. CB3; #=GS A0A160SNX2/17-117_222-316 DR EC; 2.1.1.199; #=GS A0A139DHU1/18-120_224-316 AC A0A139DHU1 #=GS A0A139DHU1/18-120_224-316 OS Marinobacter sp. T13-3 #=GS A0A139DHU1/18-120_224-316 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A139DHU1/18-120_224-316 DR GENE3D; 3cc77287aef3afddf116944c41ce7138/18-120_224-316; #=GS A0A139DHU1/18-120_224-316 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Alteromonadaceae; Marinobacter; Marinobacter sp. T13-3; #=GS A0A139DHU1/18-120_224-316 DR EC; 2.1.1.199; #=GS A0A0R3CWW8/6-110_213-304 AC A0A0R3CWW8 #=GS A0A0R3CWW8/6-110_213-304 OS Bradyrhizobium yuanmingense #=GS A0A0R3CWW8/6-110_213-304 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0R3CWW8/6-110_213-304 DR GENE3D; 3ccad80fb7f0aee7b994607c3b32d4da/6-110_213-304; #=GS A0A0R3CWW8/6-110_213-304 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhizobiales; Bradyrhizobiaceae; Bradyrhizobium; Bradyrhizobium yuanmingense; #=GS A0A0R3CWW8/6-110_213-304 DR EC; 2.1.1.199; #=GS A0A1K1M728/11-114_218-312 AC A0A1K1M728 #=GS A0A1K1M728/11-114_218-312 OS Pseudomonas sp. NFACC19-2 #=GS A0A1K1M728/11-114_218-312 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1K1M728/11-114_218-312 DR GENE3D; 3cf2a5a6e358fc064cd5525b62a85f3b/11-114_218-312; #=GS A0A1K1M728/11-114_218-312 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. NFACC19-2; #=GS A0A1K1M728/11-114_218-312 DR EC; 2.1.1.199; #=GS A0A0B1PTD5/18-119_223-316 AC A0A0B1PTD5 #=GS A0A0B1PTD5/18-119_223-316 OS Halomonas hydrothermalis #=GS A0A0B1PTD5/18-119_223-316 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0B1PTD5/18-119_223-316 DR GENE3D; 3cf7157b928e38a72bfad9e273888f24/18-119_223-316; #=GS A0A0B1PTD5/18-119_223-316 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Oceanospirillales; Halomonadaceae; Halomonas; Halomonas hydrothermalis; #=GS A0A0B1PTD5/18-119_223-316 DR EC; 2.1.1.199; #=GS A0A0S8ENK4/10-113_217-309 AC A0A0S8ENK4 #=GS A0A0S8ENK4/10-113_217-309 OS Thiotrichales bacterium SG8_50 #=GS A0A0S8ENK4/10-113_217-309 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0S8ENK4/10-113_217-309 DR GENE3D; 3d0585368b5f418c9fbc6ed151cf6882/10-113_217-309; #=GS A0A0S8ENK4/10-113_217-309 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Thiotrichales; Thiotrichales bacterium SG8_50; #=GS A0A0S8ENK4/10-113_217-309 DR EC; 2.1.1.199; #=GS J1YG16/9-111_216-310 AC J1YG16 #=GS J1YG16/9-111_216-310 OS Alishewanella aestuarii B11 #=GS J1YG16/9-111_216-310 DE Ribosomal RNA small subunit methyltransferase H #=GS J1YG16/9-111_216-310 DR GENE3D; 3d05f3a9c8f6395977db5cd871a61823/9-111_216-310; #=GS J1YG16/9-111_216-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Alteromonadaceae; Alishewanella; Alishewanella aestuarii; #=GS J1YG16/9-111_216-310 DR EC; 2.1.1.199; #=GS A0A0N0C1H8/6-110_213-304 AC A0A0N0C1H8 #=GS A0A0N0C1H8/6-110_213-304 OS Bradyrhizobium japonicum #=GS A0A0N0C1H8/6-110_213-304 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0N0C1H8/6-110_213-304 DR GENE3D; 3d1ad4701452f01f8e097acfa8a1d6de/6-110_213-304; #=GS A0A0N0C1H8/6-110_213-304 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhizobiales; Bradyrhizobiaceae; Bradyrhizobium; Bradyrhizobium japonicum; #=GS A0A0N0C1H8/6-110_213-304 DR EC; 2.1.1.199; #=GS A0A1L5M629/6-110_213-304 AC A0A1L5M629 #=GS A0A1L5M629/6-110_213-304 OS Bradyrhizobium diazoefficiens #=GS A0A1L5M629/6-110_213-304 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1L5M629/6-110_213-304 DR GENE3D; 3d1ad4701452f01f8e097acfa8a1d6de/6-110_213-304; #=GS A0A1L5M629/6-110_213-304 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhizobiales; Bradyrhizobiaceae; Bradyrhizobium; Bradyrhizobium diazoefficiens; #=GS A0A1L5M629/6-110_213-304 DR EC; 2.1.1.199; #=GS A0A1D7YY23/10-111_215-311 AC A0A1D7YY23 #=GS A0A1D7YY23/10-111_215-311 OS Pectobacterium wasabiae CFBP 3304 #=GS A0A1D7YY23/10-111_215-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1D7YY23/10-111_215-311 DR GENE3D; 3d1b0328e69cdb41c0efcda7d398a37c/10-111_215-311; #=GS A0A1D7YY23/10-111_215-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Enterobacterales; Pectobacteriaceae; Pectobacterium; Pectobacterium wasabiae; #=GS A0A1D7YY23/10-111_215-311 DR EC; 2.1.1.199; #=GS A0A193GAR2/41-131_235-327 AC A0A193GAR2 #=GS A0A193GAR2/41-131_235-327 OS Bordetella flabilis #=GS A0A193GAR2/41-131_235-327 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A193GAR2/41-131_235-327 DR GENE3D; 3d1b7c4f53d36dcb58b9d48f0994ad08/41-131_235-327; #=GS A0A193GAR2/41-131_235-327 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Alcaligenaceae; Bordetella; Bordetella flabilis; #=GS A0A193GAR2/41-131_235-327 DR EC; 2.1.1.199; #=GS A0A0D7K9Y5/10-110_215-304 AC A0A0D7K9Y5 #=GS A0A0D7K9Y5/10-110_215-304 OS Acidovorax temperans #=GS A0A0D7K9Y5/10-110_215-304 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0D7K9Y5/10-110_215-304 DR GENE3D; 3d1fb2d3dd891e64f6bc0e2d0ed5ffb3/10-110_215-304; #=GS A0A0D7K9Y5/10-110_215-304 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Comamonadaceae; Acidovorax; Acidovorax temperans; #=GS A0A0D7K9Y5/10-110_215-304 DR EC; 2.1.1.199; #=GS A0A0A3AAB2/14-115_225-319 AC A0A0A3AAB2 #=GS A0A0A3AAB2/14-115_225-319 OS Gallibacterium anatis #=GS A0A0A3AAB2/14-115_225-319 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0A3AAB2/14-115_225-319 DR GENE3D; 3d366d48d713af0e06c3646825522297/14-115_225-319; #=GS A0A0A3AAB2/14-115_225-319 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Gallibacterium; Gallibacterium anatis; #=GS A0A0A3AAB2/14-115_225-319 DR EC; 2.1.1.199; #=GS A0A1J0J1A5/10-113_217-311 AC A0A1J0J1A5 #=GS A0A1J0J1A5/10-113_217-311 OS Pseudomonas aeruginosa #=GS A0A1J0J1A5/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1J0J1A5/10-113_217-311 DR GENE3D; 3d75ca072ec67c43496035f3b902efa8/10-113_217-311; #=GS A0A1J0J1A5/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas aeruginosa group; Pseudomonas aeruginosa; #=GS A0A1J0J1A5/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A0Q5Q2I5/7-103_204-295 AC A0A0Q5Q2I5 #=GS A0A0Q5Q2I5/7-103_204-295 OS Sphingomonas sp. Leaf343 #=GS A0A0Q5Q2I5/7-103_204-295 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q5Q2I5/7-103_204-295 DR GENE3D; 3dc514c55514f7490ab250f088d42026/7-103_204-295; #=GS A0A0Q5Q2I5/7-103_204-295 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingomonas; Sphingomonas sp. Leaf343; #=GS A0A0Q5Q2I5/7-103_204-295 DR EC; 2.1.1.199; #=GS A0A0D6Q860/12-122_225-267_290-320 AC A0A0D6Q860 #=GS A0A0D6Q860/12-122_225-267_290-320 OS Komagataeibacter xylinus NBRC 13693 #=GS A0A0D6Q860/12-122_225-267_290-320 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0D6Q860/12-122_225-267_290-320 DR GENE3D; 3de40a5238fe05ed1ffb822a748946ec/12-122_225-267_290-320; #=GS A0A0D6Q860/12-122_225-267_290-320 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodospirillales; Acetobacteraceae; Komagataeibacter; Komagataeibacter xylinus; #=GS A0A0D6Q860/12-122_225-267_290-320 DR EC; 2.1.1.199; #=GS A0A1H2P991/12-115_219-313 AC A0A1H2P991 #=GS A0A1H2P991/12-115_219-313 OS Pseudomonas rhodesiae #=GS A0A1H2P991/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1H2P991/12-115_219-313 DR GENE3D; 3e1fd5b486f1eb5bfdbb3543432ea565/12-115_219-313; #=GS A0A1H2P991/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas fluorescens group; Pseudomonas rhodesiae; #=GS A0A1H2P991/12-115_219-313 DR EC; 2.1.1.199; #=GS G2SL92/21-129_230-319 AC G2SL92 #=GS G2SL92/21-129_230-319 OS Rhodothermus marinus SG0.5JP17-172 #=GS G2SL92/21-129_230-319 DE Ribosomal RNA small subunit methyltransferase H #=GS G2SL92/21-129_230-319 DR GENE3D; 3e49ab733ab0e369609942d22c2e26c1/21-129_230-319; #=GS G2SL92/21-129_230-319 DR ORG; Bacteria; Bacteroidetes; Bacteroidetes Order II. Incertae sedis; Rhodothermaceae; Rhodothermus; Rhodothermus marinus; #=GS G2SL92/21-129_230-319 DR EC; 2.1.1.199; #=GS A0A1F8VL25/34-117_222-311 AC A0A1F8VL25 #=GS A0A1F8VL25/34-117_222-311 OS Curvibacter sp. GWA2_64_110 #=GS A0A1F8VL25/34-117_222-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1F8VL25/34-117_222-311 DR GENE3D; 3e710a3a009652bf85d9e2329a15f3d6/34-117_222-311; #=GS A0A1F8VL25/34-117_222-311 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Comamonadaceae; Curvibacter; Curvibacter sp. GWA2_64_110; #=GS A0A1F8VL25/34-117_222-311 DR EC; 2.1.1.199; #=GS A0A0F2TW03/10-111_219-315 AC A0A0F2TW03 #=GS A0A0F2TW03/10-111_219-315 OS Vibrio cholerae #=GS A0A0F2TW03/10-111_219-315 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0F2TW03/10-111_219-315 DR GENE3D; 3e7801d2013bd577cdde2c02387f827d/10-111_219-315; #=GS A0A0F2TW03/10-111_219-315 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Vibrionales; Vibrionaceae; Vibrio; Vibrio cholerae; #=GS A0A0F2TW03/10-111_219-315 DR EC; 2.1.1.199; #=GS A0A0H3AMP0/10-111_219-315 AC A0A0H3AMP0 #=GS A0A0H3AMP0/10-111_219-315 OS Vibrio cholerae O395 #=GS A0A0H3AMP0/10-111_219-315 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0H3AMP0/10-111_219-315 DR GENE3D; 3e7801d2013bd577cdde2c02387f827d/10-111_219-315; #=GS A0A0H3AMP0/10-111_219-315 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Vibrionales; Vibrionaceae; Vibrio; Vibrio cholerae; #=GS A0A0H3AMP0/10-111_219-315 DR EC; 2.1.1.199; #=GS D7HEH9/10-111_219-315 AC D7HEH9 #=GS D7HEH9/10-111_219-315 OS Vibrio cholerae RC385 #=GS D7HEH9/10-111_219-315 DE Ribosomal RNA small subunit methyltransferase H #=GS D7HEH9/10-111_219-315 DR GENE3D; 3e7801d2013bd577cdde2c02387f827d/10-111_219-315; #=GS D7HEH9/10-111_219-315 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Vibrionales; Vibrionaceae; Vibrio; Vibrio cholerae; #=GS D7HEH9/10-111_219-315 DR EC; 2.1.1.199; #=GS C2HW17/10-111_219-315 AC C2HW17 #=GS C2HW17/10-111_219-315 OS Vibrio albensis VL426 #=GS C2HW17/10-111_219-315 DE Ribosomal RNA small subunit methyltransferase H #=GS C2HW17/10-111_219-315 DR GENE3D; 3e7801d2013bd577cdde2c02387f827d/10-111_219-315; #=GS C2HW17/10-111_219-315 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Vibrionales; Vibrionaceae; Vibrio; Vibrio albensis; #=GS C2HW17/10-111_219-315 DR EC; 2.1.1.199; #=GS A0A0P9H275/10-112_216-310 AC A0A0P9H275 #=GS A0A0P9H275/10-112_216-310 OS Pseudoalteromonas sp. P1-11 #=GS A0A0P9H275/10-112_216-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0P9H275/10-112_216-310 DR GENE3D; 3e8dd0e0ec6e778ca3781f6a26fbc259/10-112_216-310; #=GS A0A0P9H275/10-112_216-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Pseudoalteromonadaceae; Pseudoalteromonas; Pseudoalteromonas sp. P1-11; #=GS A0A0P9H275/10-112_216-310 DR EC; 2.1.1.199; #=GS A0A0Q0DQ09/10-113_217-311 AC A0A0Q0DQ09 #=GS A0A0Q0DQ09/10-113_217-311 OS Pseudomonas syringae pv. primulae #=GS A0A0Q0DQ09/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q0DQ09/10-113_217-311 DR GENE3D; 3e904923acbc0e9ced59ecf0d0488a0e/10-113_217-311; #=GS A0A0Q0DQ09/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 3; #=GS A0A0Q0DQ09/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A090SC13/10-111_219-315 AC A0A090SC13 #=GS A0A090SC13/10-111_219-315 OS Vibrio variabilis #=GS A0A090SC13/10-111_219-315 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A090SC13/10-111_219-315 DR GENE3D; 3ebf9b07eb8db38b05764491e2e9fe8a/10-111_219-315; #=GS A0A090SC13/10-111_219-315 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Vibrionales; Vibrionaceae; Vibrio; Vibrio variabilis; #=GS A0A090SC13/10-111_219-315 DR EC; 2.1.1.199; #=GS S9QRD6/13-111_215-305 AC S9QRD6 #=GS S9QRD6/13-111_215-305 OS Salipiger mucosus DSM 16094 #=GS S9QRD6/13-111_215-305 DE Ribosomal RNA small subunit methyltransferase H #=GS S9QRD6/13-111_215-305 DR GENE3D; 3ed66e3cca524534862352829115da5e/13-111_215-305; #=GS S9QRD6/13-111_215-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Salipiger; Salipiger mucosus; #=GS S9QRD6/13-111_215-305 DR EC; 2.1.1.199; #=GS A0A0M3H0T1/12-114_218-311 AC A0A0M3H0T1 #=GS A0A0M3H0T1/12-114_218-311 OS Neisseria gonorrhoeae MIA_2011_03-10 #=GS A0A0M3H0T1/12-114_218-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0M3H0T1/12-114_218-311 DR GENE3D; 3ee20c7d52112ff1335d150659491a96/12-114_218-311; #=GS A0A0M3H0T1/12-114_218-311 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Neisseriales; Neisseriaceae; Neisseria; Neisseria gonorrhoeae; #=GS A0A0M3H0T1/12-114_218-311 DR EC; 2.1.1.199; #=GS A0A1D3HCM4/12-114_218-311 AC A0A1D3HCM4 #=GS A0A1D3HCM4/12-114_218-311 OS Neisseria gonorrhoeae #=GS A0A1D3HCM4/12-114_218-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1D3HCM4/12-114_218-311 DR GENE3D; 3ee20c7d52112ff1335d150659491a96/12-114_218-311; #=GS A0A1D3HCM4/12-114_218-311 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Neisseriales; Neisseriaceae; Neisseria; Neisseria gonorrhoeae; #=GS A0A1D3HCM4/12-114_218-311 DR EC; 2.1.1.199; #=GS B4RQD7/12-114_218-311 AC B4RQD7 #=GS B4RQD7/12-114_218-311 OS Neisseria gonorrhoeae NCCP11945 #=GS B4RQD7/12-114_218-311 DE Ribosomal RNA small subunit methyltransferase H #=GS B4RQD7/12-114_218-311 DR GENE3D; 3ee20c7d52112ff1335d150659491a96/12-114_218-311; #=GS B4RQD7/12-114_218-311 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Neisseriales; Neisseriaceae; Neisseria; Neisseria gonorrhoeae; #=GS B4RQD7/12-114_218-311 DR EC; 2.1.1.199; #=GS D6H625/12-114_218-311 AC D6H625 #=GS D6H625/12-114_218-311 OS Neisseria gonorrhoeae DGI2 #=GS D6H625/12-114_218-311 DE Ribosomal RNA small subunit methyltransferase H #=GS D6H625/12-114_218-311 DR GENE3D; 3ee20c7d52112ff1335d150659491a96/12-114_218-311; #=GS D6H625/12-114_218-311 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Neisseriales; Neisseriaceae; Neisseria; Neisseria gonorrhoeae; #=GS D6H625/12-114_218-311 DR EC; 2.1.1.199; #=GS A0A0S8BA07/11-111_215-307 AC A0A0S8BA07 #=GS A0A0S8BA07/11-111_215-307 OS Betaproteobacteria bacterium SG8_39 #=GS A0A0S8BA07/11-111_215-307 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0S8BA07/11-111_215-307 DR GENE3D; 3f034a71441e19ba860575c61089f30b/11-111_215-307; #=GS A0A0S8BA07/11-111_215-307 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Betaproteobacteria bacterium SG8_39; #=GS A0A0S8BA07/11-111_215-307 DR EC; 2.1.1.199; #=GS K0MEV4/43-132_236-328 AC K0MEV4 #=GS K0MEV4/43-132_236-328 OS Bordetella parapertussis Bpp5 #=GS K0MEV4/43-132_236-328 DE Ribosomal RNA small subunit methyltransferase H #=GS K0MEV4/43-132_236-328 DR GENE3D; 3f08c57049db80552c1a2d98d6a411ff/43-132_236-328; #=GS K0MEV4/43-132_236-328 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Alcaligenaceae; Bordetella; Bordetella parapertussis; #=GS K0MEV4/43-132_236-328 DR EC; 2.1.1.199; #=GS A0A1J0S617/12-114_218-312 AC A0A1J0S617 #=GS A0A1J0S617/12-114_218-312 OS Alteromonas mediterranea #=GS A0A1J0S617/12-114_218-312 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1J0S617/12-114_218-312 DR GENE3D; 3f0cd6b8f3e2d1058a537d5cea6f6468/12-114_218-312; #=GS A0A1J0S617/12-114_218-312 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Alteromonadaceae; Alteromonas; Alteromonas mediterranea; #=GS A0A1J0S617/12-114_218-312 DR EC; 2.1.1.199; #=GS W8X5N8/34-125_229-321 AC W8X5N8 #=GS W8X5N8/34-125_229-321 OS Castellaniella defragrans 65Phen #=GS W8X5N8/34-125_229-321 DE Ribosomal RNA small subunit methyltransferase H #=GS W8X5N8/34-125_229-321 DR GENE3D; 3f12a32de734480e68f7ec8de62f2c27/34-125_229-321; #=GS W8X5N8/34-125_229-321 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Alcaligenaceae; Castellaniella; Castellaniella defragrans; #=GS W8X5N8/34-125_229-321 DR EC; 2.1.1.199; #=GS A0A1E4NP48/12-112_216-306 AC A0A1E4NP48 #=GS A0A1E4NP48/12-112_216-306 OS Rhodanobacter sp. SCN 66-43 #=GS A0A1E4NP48/12-112_216-306 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1E4NP48/12-112_216-306 DR GENE3D; 3f29806459aaa547c028e73d15327b9e/12-112_216-306; #=GS A0A1E4NP48/12-112_216-306 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Xanthomonadales; Rhodanobacteraceae; Rhodanobacter; Rhodanobacter sp. SCN 66-43; #=GS A0A1E4NP48/12-112_216-306 DR EC; 2.1.1.199; #=GS A0A1M3QS80/12-112_216-306 AC A0A1M3QS80 #=GS A0A1M3QS80/12-112_216-306 OS Xanthomonadales bacterium 66-474 #=GS A0A1M3QS80/12-112_216-306 DE 16S rRNA (Cytosine(1402)-N(4))-methyltransferase #=GS A0A1M3QS80/12-112_216-306 DR GENE3D; 3f29806459aaa547c028e73d15327b9e/12-112_216-306; #=GS A0A1M3QS80/12-112_216-306 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Xanthomonadales; Xanthomonadales bacterium 66-474; #=GS A0A1M3QS80/12-112_216-306 DR EC; 2.1.1.199; #=GS S3C6J1/9-109_215-307 AC S3C6J1 #=GS S3C6J1/9-109_215-307 OS Sutterella wadsworthensis HGA0223 #=GS S3C6J1/9-109_215-307 DE Ribosomal RNA small subunit methyltransferase H #=GS S3C6J1/9-109_215-307 DR GENE3D; 3f2e56636ff37269fd3ab8c7ca608891/9-109_215-307; #=GS S3C6J1/9-109_215-307 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Sutterellaceae; Sutterella; Sutterella wadsworthensis; #=GS S3C6J1/9-109_215-307 DR EC; 2.1.1.199; #=GS A0A0C5S103/12-115_219-313 AC A0A0C5S103 #=GS A0A0C5S103/12-115_219-313 OS Pseudomonas putida S13.1.2 #=GS A0A0C5S103/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0C5S103/12-115_219-313 DR GENE3D; 3f3425b4d0d00b5fa31797bc5e82ee86/12-115_219-313; #=GS A0A0C5S103/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas putida group; Pseudomonas putida; #=GS A0A0C5S103/12-115_219-313 DR EC; 2.1.1.199; #=GS B9CW30/11-112_218-312 AC B9CW30 #=GS B9CW30/11-112_218-312 OS Actinobacillus minor 202 #=GS B9CW30/11-112_218-312 DE Ribosomal RNA small subunit methyltransferase H #=GS B9CW30/11-112_218-312 DR GENE3D; 3f75bd61d2185d098aefd6525b9be747/11-112_218-312; #=GS B9CW30/11-112_218-312 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Actinobacillus; Actinobacillus minor; #=GS B9CW30/11-112_218-312 DR EC; 2.1.1.199; #=GS A0A0N1C9R5/13-118_224-315 AC A0A0N1C9R5 #=GS A0A0N1C9R5/13-118_224-315 OS Novosphingobium sp. AAP83 #=GS A0A0N1C9R5/13-118_224-315 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0N1C9R5/13-118_224-315 DR GENE3D; 3fb0d749131b4f52ed0a63c297147843/13-118_224-315; #=GS A0A0N1C9R5/13-118_224-315 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Novosphingobium; Novosphingobium sp. AAP83; #=GS A0A0N1C9R5/13-118_224-315 DR EC; 2.1.1.199; #=GS F6CXD8/11-113_217-309 AC F6CXD8 #=GS F6CXD8/11-113_217-309 OS Marinomonas posidonica IVIA-Po-181 #=GS F6CXD8/11-113_217-309 DE Ribosomal RNA small subunit methyltransferase H #=GS F6CXD8/11-113_217-309 DR GENE3D; 3fd4b9ff58db821310ccdb6f41abe5a3/11-113_217-309; #=GS F6CXD8/11-113_217-309 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Oceanospirillales; Oceanospirillaceae; Marinomonas; Marinomonas posidonica; #=GS F6CXD8/11-113_217-309 DR EC; 2.1.1.199; #=GS A0A0F3IJE1/6-110_214-307 AC A0A0F3IJE1 #=GS A0A0F3IJE1/6-110_214-307 OS Methylococcaceae bacterium Sn10-6 #=GS A0A0F3IJE1/6-110_214-307 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0F3IJE1/6-110_214-307 DR GENE3D; 400a56fcb1eea7486f80d794c40ed795/6-110_214-307; #=GS A0A0F3IJE1/6-110_214-307 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Methylococcales; Methylococcaceae; Methylococcaceae bacterium Sn10-6; #=GS A0A0F3IJE1/6-110_214-307 DR EC; 2.1.1.199; #=GS J3F6J2/12-115_219-313 AC J3F6J2 #=GS J3F6J2/12-115_219-313 OS Pseudomonas sp. GM25 #=GS J3F6J2/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS J3F6J2/12-115_219-313 DR GENE3D; 400f6d9a061ebd8d30b7d6ff3535479f/12-115_219-313; #=GS J3F6J2/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. GM25; #=GS J3F6J2/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A077F8B6/12-115_219-313 AC A0A077F8B6 #=GS A0A077F8B6/12-115_219-313 OS Pseudomonas alkylphenolica #=GS A0A077F8B6/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A077F8B6/12-115_219-313 DR GENE3D; 402e1c00a6594443bf14faf669ae702c/12-115_219-313; #=GS A0A077F8B6/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas alkylphenolica; #=GS A0A077F8B6/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A193LI48/11-113_217-309 AC A0A193LI48 #=GS A0A193LI48/11-113_217-309 OS Woeseia oceani #=GS A0A193LI48/11-113_217-309 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A193LI48/11-113_217-309 DR GENE3D; 40322457bcb3deb2a1bcd95f775c9e0c/11-113_217-309; #=GS A0A193LI48/11-113_217-309 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Chromatiales; Woeseiaceae; Woeseia; Woeseia oceani; #=GS A0A193LI48/11-113_217-309 DR EC; 2.1.1.199; #=GS A0A0G9I6H8/10-110_214-306 AC A0A0G9I6H8 #=GS A0A0G9I6H8/10-110_214-306 OS Xanthomonas hyacinthi DSM 19077 #=GS A0A0G9I6H8/10-110_214-306 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0G9I6H8/10-110_214-306 DR GENE3D; 403243792dd2de87c5f5b7cf14e40ce8/10-110_214-306; #=GS A0A0G9I6H8/10-110_214-306 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Xanthomonadales; Xanthomonadaceae; Xanthomonas; Xanthomonas hyacinthi; #=GS A0A0G9I6H8/10-110_214-306 DR EC; 2.1.1.199; #=GS A0A0G9HBA8/10-110_214-306 AC A0A0G9HBA8 #=GS A0A0G9HBA8/10-110_214-306 OS Luteibacter rhizovicinus DSM 16549 #=GS A0A0G9HBA8/10-110_214-306 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0G9HBA8/10-110_214-306 DR GENE3D; 403243792dd2de87c5f5b7cf14e40ce8/10-110_214-306; #=GS A0A0G9HBA8/10-110_214-306 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Xanthomonadales; Rhodanobacteraceae; Luteibacter; Luteibacter rhizovicinus; #=GS A0A0G9HBA8/10-110_214-306 DR EC; 2.1.1.199; #=GS A0A149PTY9/14-114_222-314 AC A0A149PTY9 #=GS A0A149PTY9/14-114_222-314 OS Caballeronia megalochromosomata #=GS A0A149PTY9/14-114_222-314 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A149PTY9/14-114_222-314 DR GENE3D; 40b63ac0a0ef948c53326a09986a0754/14-114_222-314; #=GS A0A149PTY9/14-114_222-314 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Caballeronia; Caballeronia megalochromosomata; #=GS A0A149PTY9/14-114_222-314 DR EC; 2.1.1.199; #=GS C0N691/11-114_218-310 AC C0N691 #=GS C0N691/11-114_218-310 OS Methylophaga thiooxydans DMS010 #=GS C0N691/11-114_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS C0N691/11-114_218-310 DR GENE3D; 40b85dd3949b40f6cd5114366e46ec4f/11-114_218-310; #=GS C0N691/11-114_218-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Thiotrichales; Piscirickettsiaceae; Methylophaga; Methylophaga thiooxydans; #=GS C0N691/11-114_218-310 DR EC; 2.1.1.199; #=GS A0A1C2JGF2/7-116_220-310 AC A0A1C2JGF2 #=GS A0A1C2JGF2/7-116_220-310 OS Acidithiobacillus thiooxidans #=GS A0A1C2JGF2/7-116_220-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1C2JGF2/7-116_220-310 DR GENE3D; 40bb1b55744ded97dfcc55a946c09de3/7-116_220-310; #=GS A0A1C2JGF2/7-116_220-310 DR ORG; Bacteria; Proteobacteria; Acidithiobacillia; Acidithiobacillales; Acidithiobacillaceae; Acidithiobacillus; Acidithiobacillus thiooxidans; #=GS A0A1C2JGF2/7-116_220-310 DR EC; 2.1.1.199; #=GS A0A0D7F9T2/10-113_217-311 AC A0A0D7F9T2 #=GS A0A0D7F9T2/10-113_217-311 OS Pseudomonas oryzihabitans #=GS A0A0D7F9T2/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0D7F9T2/10-113_217-311 DR GENE3D; 40c14fe7c3806a9600a9cd6d8a9c6abe/10-113_217-311; #=GS A0A0D7F9T2/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas putida group; Pseudomonas oryzihabitans; #=GS A0A0D7F9T2/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A0E3Y8C5/14-114_222-314 AC A0A0E3Y8C5 #=GS A0A0E3Y8C5/14-114_222-314 OS Pandoraea oxalativorans #=GS A0A0E3Y8C5/14-114_222-314 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0E3Y8C5/14-114_222-314 DR GENE3D; 4133f10829930a7d7651796e44e94ae6/14-114_222-314; #=GS A0A0E3Y8C5/14-114_222-314 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Pandoraea; Pandoraea oxalativorans; #=GS A0A0E3Y8C5/14-114_222-314 DR EC; 2.1.1.199; #=GS V5BVV7/7-111_215-308 AC V5BVV7 #=GS V5BVV7/7-111_215-308 OS Methyloglobulus morosus KoM1 #=GS V5BVV7/7-111_215-308 DE Ribosomal RNA small subunit methyltransferase H #=GS V5BVV7/7-111_215-308 DR GENE3D; 41348664459228cb32a37ab151ccca9b/7-111_215-308; #=GS V5BVV7/7-111_215-308 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Methylococcales; Methylococcaceae; Methyloglobulus; Methyloglobulus morosus; #=GS V5BVV7/7-111_215-308 DR EC; 2.1.1.199; #=GS A0A1B9VBR1/15-119_222-264_285-314 AC A0A1B9VBR1 #=GS A0A1B9VBR1/15-119_222-264_285-314 OS Thalassospira sp. KO164 #=GS A0A1B9VBR1/15-119_222-264_285-314 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1B9VBR1/15-119_222-264_285-314 DR GENE3D; 4195317f6e139b8a3410dc5c059825ea/15-119_222-264_285-314; #=GS A0A1B9VBR1/15-119_222-264_285-314 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodospirillales; Rhodospirillaceae; Thalassospira; Thalassospira sp. KO164; #=GS A0A1B9VBR1/15-119_222-264_285-314 DR EC; 2.1.1.199; #=GS A0A1G3FN62/13-111_215-305 AC A0A1G3FN62 #=GS A0A1G3FN62/13-111_215-305 OS Rhodobacteraceae bacterium GWE1_64_9 #=GS A0A1G3FN62/13-111_215-305 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1G3FN62/13-111_215-305 DR GENE3D; 41a8d4dab4ab9740ddc172bc445b4468/13-111_215-305; #=GS A0A1G3FN62/13-111_215-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Rhodobacteraceae bacterium GWE1_64_9; #=GS A0A1G3FN62/13-111_215-305 DR EC; 2.1.1.199; #=GS A0A1G3FSF9/13-111_215-305 AC A0A1G3FSF9 #=GS A0A1G3FSF9/13-111_215-305 OS Rhodobacteraceae bacterium GWF1_65_7 #=GS A0A1G3FSF9/13-111_215-305 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1G3FSF9/13-111_215-305 DR GENE3D; 41a8d4dab4ab9740ddc172bc445b4468/13-111_215-305; #=GS A0A1G3FSF9/13-111_215-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Rhodobacteraceae bacterium GWF1_65_7; #=GS A0A1G3FSF9/13-111_215-305 DR EC; 2.1.1.199; #=GS A0A158E840/14-114_222-314 AC A0A158E840 #=GS A0A158E840/14-114_222-314 OS Burkholderia ptereochthonis #=GS A0A158E840/14-114_222-314 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A158E840/14-114_222-314 DR GENE3D; 41af72eb82ba46939a8b6d4e4547c347/14-114_222-314; #=GS A0A158E840/14-114_222-314 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia ptereochthonis; #=GS A0A158E840/14-114_222-314 DR EC; 2.1.1.199; #=GS A0A0D9M5U3/11-113_217-310 AC A0A0D9M5U3 #=GS A0A0D9M5U3/11-113_217-310 OS Neisseria sp. HMSC06F02 #=GS A0A0D9M5U3/11-113_217-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0D9M5U3/11-113_217-310 DR GENE3D; 41bb3badae11e298618db527a49a7281/11-113_217-310; #=GS A0A0D9M5U3/11-113_217-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Neisseriales; Neisseriaceae; Neisseria; Neisseria sp. HMSC06F02; #=GS A0A0D9M5U3/11-113_217-310 DR EC; 2.1.1.199; #=GS A0A0P9ELP7/11-114_217-309 AC A0A0P9ELP7 #=GS A0A0P9ELP7/11-114_217-309 OS Thiohalorhabdus denitrificans #=GS A0A0P9ELP7/11-114_217-309 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0P9ELP7/11-114_217-309 DR GENE3D; 41d6457e5b85dfb7322921db96b9c727/11-114_217-309; #=GS A0A0P9ELP7/11-114_217-309 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Thiohalorhabdus; Thiohalorhabdus denitrificans; #=GS A0A0P9ELP7/11-114_217-309 DR EC; 2.1.1.199; #=GS A0A0N1AVG7/11-114_215-305 AC A0A0N1AVG7 #=GS A0A0N1AVG7/11-114_215-305 OS Porphyrobacter sp. AAP60 #=GS A0A0N1AVG7/11-114_215-305 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0N1AVG7/11-114_215-305 DR GENE3D; 41f67b99068289ec0ef317974cc191ce/11-114_215-305; #=GS A0A0N1AVG7/11-114_215-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Erythrobacteraceae; Porphyrobacter; Porphyrobacter sp. AAP60; #=GS A0A0N1AVG7/11-114_215-305 DR EC; 2.1.1.199; #=GS A0A0W0RJJ8/7-110_214-306 AC A0A0W0RJJ8 #=GS A0A0W0RJJ8/7-110_214-306 OS Fluoribacter bozemanae #=GS A0A0W0RJJ8/7-110_214-306 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0W0RJJ8/7-110_214-306 DR GENE3D; 41fbf4498f68fb050592dc1838a61959/7-110_214-306; #=GS A0A0W0RJJ8/7-110_214-306 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Legionellales; Legionellaceae; Fluoribacter; Fluoribacter bozemanae; #=GS A0A0W0RJJ8/7-110_214-306 DR EC; 2.1.1.199; #=GS A0A0G9MTG9/7-112_213-255_276-304 AC A0A0G9MTG9 #=GS A0A0G9MTG9/7-112_213-255_276-304 OS Erythrobacter luteus #=GS A0A0G9MTG9/7-112_213-255_276-304 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0G9MTG9/7-112_213-255_276-304 DR GENE3D; 423866f03338057f08f1bb93728f5b7c/7-112_213-255_276-304; #=GS A0A0G9MTG9/7-112_213-255_276-304 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Erythrobacteraceae; Erythrobacter; Erythrobacter luteus; #=GS A0A0G9MTG9/7-112_213-255_276-304 DR EC; 2.1.1.199; #=GS A9E2W9/11-109_213-304 AC A9E2W9 #=GS A9E2W9/11-109_213-304 OS Oceanibulbus indolifex HEL-45 #=GS A9E2W9/11-109_213-304 DE Ribosomal RNA small subunit methyltransferase H #=GS A9E2W9/11-109_213-304 DR GENE3D; 4243dc4caa3fc7249f0f4cfa592c650f/11-109_213-304; #=GS A9E2W9/11-109_213-304 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Oceanibulbus; Oceanibulbus indolifex; #=GS A9E2W9/11-109_213-304 DR EC; 2.1.1.199; #=GS A0A1B3PFF5/11-111_216-305 AC A0A1B3PFF5 #=GS A0A1B3PFF5/11-111_216-305 OS Acidovorax sp. RAC01 #=GS A0A1B3PFF5/11-111_216-305 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1B3PFF5/11-111_216-305 DR GENE3D; 42518169fdeb5b8c3604579ca6135cbc/11-111_216-305; #=GS A0A1B3PFF5/11-111_216-305 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Comamonadaceae; Acidovorax; Acidovorax sp. RAC01; #=GS A0A1B3PFF5/11-111_216-305 DR EC; 2.1.1.199; #=GS A0A0U5L0L3/10-111_215-310 AC A0A0U5L0L3 #=GS A0A0U5L0L3/10-111_215-310 OS Erwinia gerundensis #=GS A0A0U5L0L3/10-111_215-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0U5L0L3/10-111_215-310 DR GENE3D; 42bb272462e5bfbeb906c6bbca0ce48d/10-111_215-310; #=GS A0A0U5L0L3/10-111_215-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Enterobacterales; Erwiniaceae; Erwinia; Erwinia gerundensis; #=GS A0A0U5L0L3/10-111_215-310 DR EC; 2.1.1.199; #=GS A0A0D8E422/10-110_218-310 AC A0A0D8E422 #=GS A0A0D8E422/10-110_218-310 OS Burkholderia sp. USM B20 #=GS A0A0D8E422/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0D8E422/10-110_218-310 DR GENE3D; 42c7b41cb36ade9f77317a9bbd34270d/10-110_218-310; #=GS A0A0D8E422/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia sp. USM B20; #=GS A0A0D8E422/10-110_218-310 DR EC; 2.1.1.199; #=GS A0A0E9MNZ3/4-104_205-295 AC A0A0E9MNZ3 #=GS A0A0E9MNZ3/4-104_205-295 OS Sphingomonas changbaiensis NBRC 104936 #=GS A0A0E9MNZ3/4-104_205-295 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0E9MNZ3/4-104_205-295 DR GENE3D; 42f12e666c04c1b57b19ae0105dc8086/4-104_205-295; #=GS A0A0E9MNZ3/4-104_205-295 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingomonas; Sphingomonas changbaiensis; #=GS A0A0E9MNZ3/4-104_205-295 DR EC; 2.1.1.199; #=GS A0A0W0Z9M3/6-109_213-305 AC A0A0W0Z9M3 #=GS A0A0W0Z9M3/6-109_213-305 OS Legionella spiritensis #=GS A0A0W0Z9M3/6-109_213-305 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0W0Z9M3/6-109_213-305 DR GENE3D; 42f3d5c708a35a6a04f4e4afcc84492a/6-109_213-305; #=GS A0A0W0Z9M3/6-109_213-305 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Legionellales; Legionellaceae; Legionella; Legionella spiritensis; #=GS A0A0W0Z9M3/6-109_213-305 DR EC; 2.1.1.199; #=GS A0A1B5D9X4/12-115_219-313 AC A0A1B5D9X4 #=GS A0A1B5D9X4/12-115_219-313 OS Pseudomonas sp. 44 R 15 #=GS A0A1B5D9X4/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1B5D9X4/12-115_219-313 DR GENE3D; 42fe4283ab3d20486c3f1c52d6c53eef/12-115_219-313; #=GS A0A1B5D9X4/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. 44 R 15; #=GS A0A1B5D9X4/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A1B5DU00/12-115_219-313 AC A0A1B5DU00 #=GS A0A1B5DU00/12-115_219-313 OS Pseudomonas sp. 37 R 15 #=GS A0A1B5DU00/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1B5DU00/12-115_219-313 DR GENE3D; 42fe4283ab3d20486c3f1c52d6c53eef/12-115_219-313; #=GS A0A1B5DU00/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. 37 R 15; #=GS A0A1B5DU00/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A011NT70/10-113_217-310 AC A0A011NT70 #=GS A0A011NT70/10-113_217-310 OS Candidatus Accumulibacter sp. SK-12 #=GS A0A011NT70/10-113_217-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A011NT70/10-113_217-310 DR GENE3D; 430a90c82cb3f87b87223ebac53bddb0/10-113_217-310; #=GS A0A011NT70/10-113_217-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Candidatus Accumulibacter; Candidatus Accumulibacter sp. SK-12; #=GS A0A011NT70/10-113_217-310 DR EC; 2.1.1.199; #=GS A0A062TZF6/16-119_223-265_286-315 AC A0A062TZF6 #=GS A0A062TZF6/16-119_223-265_286-315 OS Hyphomonas sp. T16B2 #=GS A0A062TZF6/16-119_223-265_286-315 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A062TZF6/16-119_223-265_286-315 DR GENE3D; 4329d56c5ab342ddef3fb45141db8782/16-119_223-265_286-315; #=GS A0A062TZF6/16-119_223-265_286-315 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Hyphomonadaceae; Hyphomonas; Hyphomonas sp. T16B2; #=GS A0A062TZF6/16-119_223-265_286-315 DR EC; 2.1.1.199; #=GS A0A0L7MJ76/10-110_215-304 AC A0A0L7MJ76 #=GS A0A0L7MJ76/10-110_215-304 OS Comamonas testosteroni #=GS A0A0L7MJ76/10-110_215-304 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0L7MJ76/10-110_215-304 DR GENE3D; 43453072265da172c4d360a228a020c0/10-110_215-304; #=GS A0A0L7MJ76/10-110_215-304 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Comamonadaceae; Comamonas; Comamonas testosteroni; #=GS A0A0L7MJ76/10-110_215-304 DR EC; 2.1.1.199; #=GS A0A126R8Z4/10-111_212-302 AC A0A126R8Z4 #=GS A0A126R8Z4/10-111_212-302 OS Sphingobium sp. MI1205 #=GS A0A126R8Z4/10-111_212-302 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A126R8Z4/10-111_212-302 DR GENE3D; 436b9ed4b6d95d70120c3a404f4db0cc/10-111_212-302; #=GS A0A126R8Z4/10-111_212-302 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingobium; Sphingobium sp. MI1205; #=GS A0A126R8Z4/10-111_212-302 DR EC; 2.1.1.199; #=GS A0A1E4FBU1/16-117_220-308 AC A0A1E4FBU1 #=GS A0A1E4FBU1/16-117_220-308 OS Pelagibacterium sp. SCN 63-23 #=GS A0A1E4FBU1/16-117_220-308 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1E4FBU1/16-117_220-308 DR GENE3D; 43cdbb6df44d3b56031fdc381818e97f/16-117_220-308; #=GS A0A1E4FBU1/16-117_220-308 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhizobiales; Hyphomicrobiaceae; Pelagibacterium; Pelagibacterium sp. SCN 63-23; #=GS A0A1E4FBU1/16-117_220-308 DR EC; 2.1.1.199; #=GS A0A1G3E1N0/12-115_219-313 AC A0A1G3E1N0 #=GS A0A1G3E1N0/12-115_219-313 OS Pseudomonadales bacterium RIFCSPLOWO2_12_59_9 #=GS A0A1G3E1N0/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1G3E1N0/12-115_219-313 DR GENE3D; 43d628c3e0a41a19511caceb7b4d59ac/12-115_219-313; #=GS A0A1G3E1N0/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadales bacterium RIFCSPLOWO2_12_59_9; #=GS A0A1G3E1N0/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A0L8END0/41-132_236-328 AC A0A0L8END0 #=GS A0A0L8END0/41-132_236-328 OS Achromobacter sp. DMS1 #=GS A0A0L8END0/41-132_236-328 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0L8END0/41-132_236-328 DR GENE3D; 4418bc90e76b95c4fb2b601f29039281/41-132_236-328; #=GS A0A0L8END0/41-132_236-328 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Alcaligenaceae; Achromobacter; Achromobacter sp. DMS1; #=GS A0A0L8END0/41-132_236-328 DR EC; 2.1.1.199; #=GS A0A158E841/13-113_221-313 AC A0A158E841 #=GS A0A158E841/13-113_221-313 OS Burkholderia calidae #=GS A0A158E841/13-113_221-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A158E841/13-113_221-313 DR GENE3D; 4424d410680ab8d2a10f551b4181efb0/13-113_221-313; #=GS A0A158E841/13-113_221-313 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia calidae; #=GS A0A158E841/13-113_221-313 DR EC; 2.1.1.199; #=GS Q2Y630/10-110_216-312 AC Q2Y630 #=GS Q2Y630/10-110_216-312 OS Nitrosospira multiformis ATCC 25196 #=GS Q2Y630/10-110_216-312 DE Ribosomal RNA small subunit methyltransferase H #=GS Q2Y630/10-110_216-312 DR GENE3D; 445107ff7138f729ce93900b23072add/10-110_216-312; #=GS Q2Y630/10-110_216-312 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Nitrosomonadales; Nitrosomonadaceae; Nitrosospira; Nitrosospira multiformis; #=GS Q2Y630/10-110_216-312 DR EC; 2.1.1.199; #=GS A0A1H5TW76/10-110_216-312 AC A0A1H5TW76 #=GS A0A1H5TW76/10-110_216-312 OS Nitrosospira multiformis ATCC 25196 #=GS A0A1H5TW76/10-110_216-312 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1H5TW76/10-110_216-312 DR GENE3D; 445107ff7138f729ce93900b23072add/10-110_216-312; #=GS A0A1H5TW76/10-110_216-312 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Nitrosomonadales; Nitrosomonadaceae; Nitrosospira; Nitrosospira multiformis; #=GS A0A1H5TW76/10-110_216-312 DR EC; 2.1.1.199; #=GS A0A0C5EAY1/12-115_219-313 AC A0A0C5EAY1 #=GS A0A0C5EAY1/12-115_219-313 OS Pseudomonas sp. MRSN12121 #=GS A0A0C5EAY1/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0C5EAY1/12-115_219-313 DR GENE3D; 44803a0153ab7f4997ad93a90e7d58e4/12-115_219-313; #=GS A0A0C5EAY1/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. MRSN12121; #=GS A0A0C5EAY1/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A0D5XUB3/12-115_219-313 AC A0A0D5XUB3 #=GS A0A0D5XUB3/12-115_219-313 OS Pseudomonas chlororaphis #=GS A0A0D5XUB3/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0D5XUB3/12-115_219-313 DR GENE3D; 44803a0153ab7f4997ad93a90e7d58e4/12-115_219-313; #=GS A0A0D5XUB3/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas chlororaphis group; Pseudomonas chlororaphis; #=GS A0A0D5XUB3/12-115_219-313 DR EC; 2.1.1.199; #=GS F9Y990/7-106_208-297 AC F9Y990 #=GS F9Y990/7-106_208-297 OS Ketogulonicigenium vulgare WSH-001 #=GS F9Y990/7-106_208-297 DE Ribosomal RNA small subunit methyltransferase H #=GS F9Y990/7-106_208-297 DR GENE3D; 4489398d45a87231a4d2eff38e15068d/7-106_208-297; #=GS F9Y990/7-106_208-297 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Ketogulonicigenium; Ketogulonicigenium vulgare; #=GS F9Y990/7-106_208-297 DR EC; 2.1.1.199; #=GS E3EZJ8/7-106_208-297 AC E3EZJ8 #=GS E3EZJ8/7-106_208-297 OS Ketogulonicigenium vulgare Y25 #=GS E3EZJ8/7-106_208-297 DE Ribosomal RNA small subunit methyltransferase H #=GS E3EZJ8/7-106_208-297 DR GENE3D; 4489398d45a87231a4d2eff38e15068d/7-106_208-297; #=GS E3EZJ8/7-106_208-297 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Ketogulonicigenium; Ketogulonicigenium vulgare; #=GS E3EZJ8/7-106_208-297 DR EC; 2.1.1.199; #=GS A0A1B1VP90/7-106_208-297 AC A0A1B1VP90 #=GS A0A1B1VP90/7-106_208-297 OS Ketogulonicigenium vulgare #=GS A0A1B1VP90/7-106_208-297 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1B1VP90/7-106_208-297 DR GENE3D; 4489398d45a87231a4d2eff38e15068d/7-106_208-297; #=GS A0A1B1VP90/7-106_208-297 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Ketogulonicigenium; Ketogulonicigenium vulgare; #=GS A0A1B1VP90/7-106_208-297 DR EC; 2.1.1.199; #=GS A0A0F4TDP4/12-115_219-313 AC A0A0F4TDP4 #=GS A0A0F4TDP4/12-115_219-313 OS Pseudomonas fluorescens #=GS A0A0F4TDP4/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0F4TDP4/12-115_219-313 DR GENE3D; 44de88ddf40d12fa1539a95b14d74aa3/12-115_219-313; #=GS A0A0F4TDP4/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas fluorescens group; Pseudomonas fluorescens; #=GS A0A0F4TDP4/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A078M186/11-114_218-312 AC A0A078M186 #=GS A0A078M186/11-114_218-312 OS Pseudomonas saudiphocaensis #=GS A0A078M186/11-114_218-312 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A078M186/11-114_218-312 DR GENE3D; 4503baebd64fcef9bc02e394ad613854/11-114_218-312; #=GS A0A078M186/11-114_218-312 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas saudiphocaensis; #=GS A0A078M186/11-114_218-312 DR EC; 2.1.1.199; #=GS J3F1T7/12-115_219-313 AC J3F1T7 #=GS J3F1T7/12-115_219-313 OS Pseudomonas sp. GM21 #=GS J3F1T7/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS J3F1T7/12-115_219-313 DR GENE3D; 452ca119cf004610a23bece904631b86/12-115_219-313; #=GS J3F1T7/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. GM21; #=GS J3F1T7/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A1B8T3N3/15-116_226-320 AC A0A1B8T3N3 #=GS A0A1B8T3N3/15-116_226-320 OS Haemophilus parainfluenzae #=GS A0A1B8T3N3/15-116_226-320 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1B8T3N3/15-116_226-320 DR GENE3D; 4558caff887384cc2cb9b5f7ddf689a8/15-116_226-320; #=GS A0A1B8T3N3/15-116_226-320 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Haemophilus; Haemophilus parainfluenzae; #=GS A0A1B8T3N3/15-116_226-320 DR EC; 2.1.1.199; #=GS A0A0Q7BWR0/16-116_221-310 AC A0A0Q7BWR0 #=GS A0A0Q7BWR0/16-116_221-310 OS Pelomonas sp. Root405 #=GS A0A0Q7BWR0/16-116_221-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q7BWR0/16-116_221-310 DR GENE3D; 457d11c11c3f6952a4acf537793502c2/16-116_221-310; #=GS A0A0Q7BWR0/16-116_221-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Comamonadaceae; Pelomonas; Pelomonas sp. Root405; #=GS A0A0Q7BWR0/16-116_221-310 DR EC; 2.1.1.199; #=GS A0A0Q8HA47/16-116_221-310 AC A0A0Q8HA47 #=GS A0A0Q8HA47/16-116_221-310 OS Pelomonas sp. Root662 #=GS A0A0Q8HA47/16-116_221-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q8HA47/16-116_221-310 DR GENE3D; 457d11c11c3f6952a4acf537793502c2/16-116_221-310; #=GS A0A0Q8HA47/16-116_221-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Comamonadaceae; Pelomonas; Pelomonas sp. Root662; #=GS A0A0Q8HA47/16-116_221-310 DR EC; 2.1.1.199; #=GS W8KRR1/1-103_207-299 AC W8KRR1 #=GS W8KRR1/1-103_207-299 OS Halorhodospira halochloris str. A #=GS W8KRR1/1-103_207-299 DE Ribosomal RNA small subunit methyltransferase H #=GS W8KRR1/1-103_207-299 DR GENE3D; 457d1911c846e4e010ea4d4e324b0aef/1-103_207-299; #=GS W8KRR1/1-103_207-299 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Chromatiales; Ectothiorhodospiraceae; Halorhodospira; Halorhodospira halochloris; #=GS W8KRR1/1-103_207-299 DR EC; 2.1.1.199; #=GS A0A1J4Y6T6/7-112_218-310 AC A0A1J4Y6T6 #=GS A0A1J4Y6T6/7-112_218-310 OS Zetaproteobacteria bacterium CG1_02_49_23 #=GS A0A1J4Y6T6/7-112_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1J4Y6T6/7-112_218-310 DR GENE3D; 457d57250877a41d8d404b4a6bce6057/7-112_218-310; #=GS A0A1J4Y6T6/7-112_218-310 DR ORG; Bacteria; Proteobacteria; Zetaproteobacteria; Zetaproteobacteria bacterium CG1_02_49_23; #=GS A0A1J4Y6T6/7-112_218-310 DR EC; 2.1.1.199; #=GS A0A1C3JT45/11-113_217-309 AC A0A1C3JT45 #=GS A0A1C3JT45/11-113_217-309 OS Marinomonas gallaica #=GS A0A1C3JT45/11-113_217-309 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1C3JT45/11-113_217-309 DR GENE3D; 45863c0af85a26c05934121c0e8ab9d0/11-113_217-309; #=GS A0A1C3JT45/11-113_217-309 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Oceanospirillales; Oceanospirillaceae; Marinomonas; Marinomonas gallaica; #=GS A0A1C3JT45/11-113_217-309 DR EC; 2.1.1.199; #=GS K2KBX4/11-113_217-311 AC K2KBX4 #=GS K2KBX4/11-113_217-311 OS Idiomarina xiamenensis 10-D-4 #=GS K2KBX4/11-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS K2KBX4/11-113_217-311 DR GENE3D; 4588aed9fcd2e6543d5b6c1b50b32f4d/11-113_217-311; #=GS K2KBX4/11-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Idiomarinaceae; Idiomarina; Idiomarina xiamenensis; #=GS K2KBX4/11-113_217-311 DR EC; 2.1.1.199; #=GS Q2IYL6/8-112_215-303 AC Q2IYL6 #=GS Q2IYL6/8-112_215-303 OS Rhodopseudomonas palustris HaA2 #=GS Q2IYL6/8-112_215-303 DE Ribosomal RNA small subunit methyltransferase H #=GS Q2IYL6/8-112_215-303 DR GENE3D; 45b6243efc7090695a274b884a543bd0/8-112_215-303; #=GS Q2IYL6/8-112_215-303 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhizobiales; Bradyrhizobiaceae; Rhodopseudomonas; Rhodopseudomonas palustris; #=GS Q2IYL6/8-112_215-303 DR EC; 2.1.1.199; #=GS A0A148NBY1/9-113_217-308 AC A0A148NBY1 #=GS A0A148NBY1/9-113_217-308 OS Methylothermaceae bacteria B42 #=GS A0A148NBY1/9-113_217-308 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A148NBY1/9-113_217-308 DR GENE3D; 45c1d10e98a331a262724eeacf925feb/9-113_217-308; #=GS A0A148NBY1/9-113_217-308 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Methylococcales; Methylothermaceae; Methylothermaceae bacteria B42; #=GS A0A148NBY1/9-113_217-308 DR EC; 2.1.1.199; #=GS A0A099KMW0/10-112_216-310 AC A0A099KMW0 #=GS A0A099KMW0/10-112_216-310 OS Colwellia psychrerythraea #=GS A0A099KMW0/10-112_216-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A099KMW0/10-112_216-310 DR GENE3D; 45cbc14b215aa0ab4124060d78533f01/10-112_216-310; #=GS A0A099KMW0/10-112_216-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Colwelliaceae; Colwellia; Colwellia psychrerythraea; #=GS A0A099KMW0/10-112_216-310 DR EC; 2.1.1.199; #=GS A0A154UE67/12-114_218-311 AC A0A154UE67 #=GS A0A154UE67/12-114_218-311 OS Neisseria flavescens #=GS A0A154UE67/12-114_218-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A154UE67/12-114_218-311 DR GENE3D; 45f7858e527eca70852590eb59b5424b/12-114_218-311; #=GS A0A154UE67/12-114_218-311 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Neisseriales; Neisseriaceae; Neisseria; Neisseria flavescens; #=GS A0A154UE67/12-114_218-311 DR EC; 2.1.1.199; #=GS A0A157ZRK6/10-110_218-310 AC A0A157ZRK6 #=GS A0A157ZRK6/10-110_218-310 OS Burkholderia arationis #=GS A0A157ZRK6/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A157ZRK6/10-110_218-310 DR GENE3D; 46631b192bced1e8d3a7295efcb2ce84/10-110_218-310; #=GS A0A157ZRK6/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia arationis; #=GS A0A157ZRK6/10-110_218-310 DR EC; 2.1.1.199; #=GS A0A1C7Z5R5/12-115_219-313 AC A0A1C7Z5R5 #=GS A0A1C7Z5R5/12-115_219-313 OS Pseudomonas syringae #=GS A0A1C7Z5R5/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1C7Z5R5/12-115_219-313 DR GENE3D; 466aeae6b09a8a9b51d127a483bfa434/12-115_219-313; #=GS A0A1C7Z5R5/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 1; Pseudomonas syringae; #=GS A0A1C7Z5R5/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A1J0AZ61/12-115_219-313 AC A0A1J0AZ61 #=GS A0A1J0AZ61/12-115_219-313 OS Pseudomonas aeruginosa #=GS A0A1J0AZ61/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1J0AZ61/12-115_219-313 DR GENE3D; 466c080b0678d1bc2c2475d2e57a5ba1/12-115_219-313; #=GS A0A1J0AZ61/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas aeruginosa group; Pseudomonas aeruginosa; #=GS A0A1J0AZ61/12-115_219-313 DR EC; 2.1.1.199; #=GS I3I4M6/9-112_216-308 AC I3I4M6 #=GS I3I4M6/9-112_216-308 OS Cellvibrio sp. BR #=GS I3I4M6/9-112_216-308 DE Ribosomal RNA small subunit methyltransferase H #=GS I3I4M6/9-112_216-308 DR GENE3D; 46a4cdf4df8fc396c7acd05d209ac471/9-112_216-308; #=GS I3I4M6/9-112_216-308 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Cellvibrionales; Cellvibrionaceae; Cellvibrio; Cellvibrio sp. BR; #=GS I3I4M6/9-112_216-308 DR EC; 2.1.1.199; #=GS A0A1G0JDX6/11-114_218-310 AC A0A1G0JDX6 #=GS A0A1G0JDX6/11-114_218-310 OS Gammaproteobacteria bacterium RIFCSPLOWO2_12_47_11 #=GS A0A1G0JDX6/11-114_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1G0JDX6/11-114_218-310 DR GENE3D; 46b3da1cce49a1b81bb2d46ee64b864c/11-114_218-310; #=GS A0A1G0JDX6/11-114_218-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Gammaproteobacteria bacterium RIFCSPLOWO2_12_47_11; #=GS A0A1G0JDX6/11-114_218-310 DR EC; 2.1.1.199; #=GS A0A1F4FNB4/5-102_206-298 AC A0A1F4FNB4 #=GS A0A1F4FNB4/5-102_206-298 OS Betaproteobacteria bacterium RIFCSPLOWO2_12_FULL_65_14 #=GS A0A1F4FNB4/5-102_206-298 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1F4FNB4/5-102_206-298 DR GENE3D; 46c0af0ee0951f1c20d80d4d8ddd640a/5-102_206-298; #=GS A0A1F4FNB4/5-102_206-298 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Betaproteobacteria bacterium RIFCSPLOWO2_12_FULL_65_14; #=GS A0A1F4FNB4/5-102_206-298 DR EC; 2.1.1.199; #=GS A0A024HMU6/10-113_217-311 AC A0A024HMU6 #=GS A0A024HMU6/10-113_217-311 OS Pseudomonas knackmussii B13 #=GS A0A024HMU6/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A024HMU6/10-113_217-311 DR GENE3D; 46df2a0199149a2a1f6e767e1f24afc2/10-113_217-311; #=GS A0A024HMU6/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas knackmussii; #=GS A0A024HMU6/10-113_217-311 DR EC; 2.1.1.199; #=GS D0I4Y1/10-111_218-314 AC D0I4Y1 #=GS D0I4Y1/10-111_218-314 OS Grimontia hollisae CIP 101886 #=GS D0I4Y1/10-111_218-314 DE Ribosomal RNA small subunit methyltransferase H #=GS D0I4Y1/10-111_218-314 DR GENE3D; 46e411431a4a3d5c435236f3bf1f884b/10-111_218-314; #=GS D0I4Y1/10-111_218-314 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Vibrionales; Vibrionaceae; Grimontia; Grimontia hollisae; #=GS D0I4Y1/10-111_218-314 DR EC; 2.1.1.199; #=GS A0A1K2HQ78/7-107_211-304 AC A0A1K2HQ78 #=GS A0A1K2HQ78/7-107_211-304 OS Chitinimonas taiwanensis DSM 18899 #=GS A0A1K2HQ78/7-107_211-304 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1K2HQ78/7-107_211-304 DR GENE3D; 47004010ffd91849c04d9ded9e251b03/7-107_211-304; #=GS A0A1K2HQ78/7-107_211-304 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Chitinimonas; Chitinimonas taiwanensis; #=GS A0A1K2HQ78/7-107_211-304 DR EC; 2.1.1.199; #=GS A0A127MGI2/9-109_210-301 AC A0A127MGI2 #=GS A0A127MGI2/9-109_210-301 OS Sphingorhabdus sp. M41 #=GS A0A127MGI2/9-109_210-301 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A127MGI2/9-109_210-301 DR GENE3D; 47302f3bc20710fd563de67eb758ad75/9-109_210-301; #=GS A0A127MGI2/9-109_210-301 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingorhabdus; Sphingorhabdus sp. M41; #=GS A0A127MGI2/9-109_210-301 DR EC; 2.1.1.199; #=GS Q604V0/1-104_208-298 AC Q604V0 #=GS Q604V0/1-104_208-298 OS Methylococcus capsulatus str. Bath #=GS Q604V0/1-104_208-298 DE Ribosomal RNA small subunit methyltransferase H #=GS Q604V0/1-104_208-298 DR GENE3D; 475458a58ec726040a1f404696846c3f/1-104_208-298; #=GS Q604V0/1-104_208-298 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Methylococcales; Methylococcaceae; Methylococcus; Methylococcus capsulatus; #=GS Q604V0/1-104_208-298 DR EC; 2.1.1.199; #=GS Q21SW1/29-112_217-306 AC Q21SW1 #=GS Q21SW1/29-112_217-306 OS Rhodoferax ferrireducens T118 #=GS Q21SW1/29-112_217-306 DE Ribosomal RNA small subunit methyltransferase H #=GS Q21SW1/29-112_217-306 DR GENE3D; 4766409af282f401fc77e49374b8e8df/29-112_217-306; #=GS Q21SW1/29-112_217-306 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Comamonadaceae; Rhodoferax; Rhodoferax ferrireducens; #=GS Q21SW1/29-112_217-306 DR EC; 2.1.1.199; #=GS A0A072T5M2/10-110_215-304 AC A0A072T5M2 #=GS A0A072T5M2/10-110_215-304 OS Delftia tsuruhatensis #=GS A0A072T5M2/10-110_215-304 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A072T5M2/10-110_215-304 DR GENE3D; 47724a95f29440de7e611323dff88937/10-110_215-304; #=GS A0A072T5M2/10-110_215-304 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Comamonadaceae; Delftia; Delftia tsuruhatensis; #=GS A0A072T5M2/10-110_215-304 DR EC; 2.1.1.199; #=GS S2XMK9/10-110_215-304 AC S2XMK9 #=GS S2XMK9/10-110_215-304 OS Delftia acidovorans CCUG 15835 #=GS S2XMK9/10-110_215-304 DE Ribosomal RNA small subunit methyltransferase H #=GS S2XMK9/10-110_215-304 DR GENE3D; 47724a95f29440de7e611323dff88937/10-110_215-304; #=GS S2XMK9/10-110_215-304 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Comamonadaceae; Delftia; Delftia acidovorans; #=GS S2XMK9/10-110_215-304 DR EC; 2.1.1.199; #=GS S2WI13/10-110_215-304 AC S2WI13 #=GS S2WI13/10-110_215-304 OS Delftia acidovorans CCUG 274B #=GS S2WI13/10-110_215-304 DE Ribosomal RNA small subunit methyltransferase H #=GS S2WI13/10-110_215-304 DR GENE3D; 47724a95f29440de7e611323dff88937/10-110_215-304; #=GS S2WI13/10-110_215-304 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Comamonadaceae; Delftia; Delftia acidovorans; #=GS S2WI13/10-110_215-304 DR EC; 2.1.1.199; #=GS A0A151FXI8/6-110_213-304 AC A0A151FXI8 #=GS A0A151FXI8/6-110_213-304 OS Bradyrhizobium liaoningense #=GS A0A151FXI8/6-110_213-304 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A151FXI8/6-110_213-304 DR GENE3D; 477d9cf1d422b61bb7409b31f58fb415/6-110_213-304; #=GS A0A151FXI8/6-110_213-304 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhizobiales; Bradyrhizobiaceae; Bradyrhizobium; Bradyrhizobium liaoningense; #=GS A0A151FXI8/6-110_213-304 DR EC; 2.1.1.199; #=GS A4XQR6/11-114_218-312 AC A4XQR6 #=GS A4XQR6/11-114_218-312 OS Pseudomonas mendocina ymp #=GS A4XQR6/11-114_218-312 DE Ribosomal RNA small subunit methyltransferase H #=GS A4XQR6/11-114_218-312 DR GENE3D; 47901fc0730f9316d3f1083f0546bd64/11-114_218-312; #=GS A4XQR6/11-114_218-312 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas aeruginosa group; Pseudomonas mendocina; #=GS A4XQR6/11-114_218-312 DR EC; 2.1.1.199; #=GS M1L7I9/31-120_224-316 AC M1L7I9 #=GS M1L7I9/31-120_224-316 OS Candidatus Kinetoplastibacterium oncopeltii TCC290E #=GS M1L7I9/31-120_224-316 DE Ribosomal RNA small subunit methyltransferase H #=GS M1L7I9/31-120_224-316 DR GENE3D; 4798110c40627653b14056d790c14edf/31-120_224-316; #=GS M1L7I9/31-120_224-316 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Kinetoplastibacterium; Candidatus Kinetoplastibacterium oncopeltii; #=GS M1L7I9/31-120_224-316 DR EC; 2.1.1.199; #=GS A0A0M1JB00/13-116_221-313 AC A0A0M1JB00 #=GS A0A0M1JB00/13-116_221-313 OS Achromatium sp. WMS1 #=GS A0A0M1JB00/13-116_221-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0M1JB00/13-116_221-313 DR GENE3D; 47a2411c831ffe303a1c8c266097984f/13-116_221-313; #=GS A0A0M1JB00/13-116_221-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Thiotrichales; Thiotrichaceae; Achromatium; Achromatium sp. WMS1; #=GS A0A0M1JB00/13-116_221-313 DR EC; 2.1.1.199; #=GS A0A0Q4KZ92/7-110_211-302 AC A0A0Q4KZ92 #=GS A0A0Q4KZ92/7-110_211-302 OS Sphingomonas sp. Leaf33 #=GS A0A0Q4KZ92/7-110_211-302 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q4KZ92/7-110_211-302 DR GENE3D; 47adf64e98c557905da5977a1508e91f/7-110_211-302; #=GS A0A0Q4KZ92/7-110_211-302 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingomonas; Sphingomonas sp. Leaf33; #=GS A0A0Q4KZ92/7-110_211-302 DR EC; 2.1.1.199; #=GS B7UZJ8/10-113_217-311 AC B7UZJ8 #=GS B7UZJ8/10-113_217-311 OS Pseudomonas aeruginosa LESB58 #=GS B7UZJ8/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS B7UZJ8/10-113_217-311 DR GENE3D; 47cb3c97b1558a6021749535590cc1a0/10-113_217-311; #=GS B7UZJ8/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas aeruginosa group; Pseudomonas aeruginosa; #=GS B7UZJ8/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A0Q7AUR2/12-116_221-310 AC A0A0Q7AUR2 #=GS A0A0Q7AUR2/12-116_221-310 OS Rhizobacter sp. Root404 #=GS A0A0Q7AUR2/12-116_221-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q7AUR2/12-116_221-310 DR GENE3D; 47cc32780727baf50ece3a96aac24654/12-116_221-310; #=GS A0A0Q7AUR2/12-116_221-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Rhizobacter; Rhizobacter sp. Root404; #=GS A0A0Q7AUR2/12-116_221-310 DR EC; 2.1.1.199; #=GS A0A177J264/6-107_208-298 AC A0A177J264 #=GS A0A177J264/6-107_208-298 OS Sphingobium yanoikuyae #=GS A0A177J264/6-107_208-298 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A177J264/6-107_208-298 DR GENE3D; 482782692193f6379566fda6af608e28/6-107_208-298; #=GS A0A177J264/6-107_208-298 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingobium; Sphingobium yanoikuyae; #=GS A0A177J264/6-107_208-298 DR EC; 2.1.1.199; #=GS Q2S9Y4/11-113_217-308 AC Q2S9Y4 #=GS Q2S9Y4/11-113_217-308 OS Hahella chejuensis KCTC 2396 #=GS Q2S9Y4/11-113_217-308 DE Ribosomal RNA small subunit methyltransferase H #=GS Q2S9Y4/11-113_217-308 DR GENE3D; 482f38fe2afae84312bdf94009749372/11-113_217-308; #=GS Q2S9Y4/11-113_217-308 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Oceanospirillales; Hahellaceae; Hahella; Hahella chejuensis; #=GS Q2S9Y4/11-113_217-308 DR EC; 2.1.1.199; #=GS A9KET2/7-110_214-305 AC A9KET2 #=GS A9KET2/7-110_214-305 OS Coxiella burnetii Dugway 5J108-111 #=GS A9KET2/7-110_214-305 DE Ribosomal RNA small subunit methyltransferase H #=GS A9KET2/7-110_214-305 DR GENE3D; 4842955ac65d8d9a21a599ece66ee44b/7-110_214-305; #=GS A9KET2/7-110_214-305 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Legionellales; Coxiellaceae; Coxiella; Coxiella burnetii; #=GS A9KET2/7-110_214-305 DR EC; 2.1.1.199; #=GS C6DEV1/10-111_215-311 AC C6DEV1 #=GS C6DEV1/10-111_215-311 OS Pectobacterium carotovorum subsp. carotovorum PC1 #=GS C6DEV1/10-111_215-311 DE Ribosomal RNA small subunit methyltransferase H #=GS C6DEV1/10-111_215-311 DR GENE3D; 4868c80da5f34e8a348170dac4806a81/10-111_215-311; #=GS C6DEV1/10-111_215-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Enterobacterales; Pectobacteriaceae; Pectobacterium; Pectobacterium carotovorum; Pectobacterium carotovorum subsp. carotovorum; #=GS C6DEV1/10-111_215-311 DR EC; 2.1.1.199; #=GS A0A0Q0BSP6/10-113_217-311 AC A0A0Q0BSP6 #=GS A0A0Q0BSP6/10-113_217-311 OS Pseudomonas syringae pv. aptata #=GS A0A0Q0BSP6/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q0BSP6/10-113_217-311 DR GENE3D; 48720700f23c33cabbb1da7603e43e37/10-113_217-311; #=GS A0A0Q0BSP6/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 1; Pseudomonas syringae; #=GS A0A0Q0BSP6/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A0Q0FXR6/10-113_217-311 AC A0A0Q0FXR6 #=GS A0A0Q0FXR6/10-113_217-311 OS Pseudomonas syringae pv. syringae #=GS A0A0Q0FXR6/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q0FXR6/10-113_217-311 DR GENE3D; 48720700f23c33cabbb1da7603e43e37/10-113_217-311; #=GS A0A0Q0FXR6/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas syringae group; Pseudomonas syringae group genomosp. 1; Pseudomonas syringae; #=GS A0A0Q0FXR6/10-113_217-311 DR EC; 2.1.1.199; #=GS S2KTI4/18-119_223-316 AC S2KTI4 #=GS S2KTI4/18-119_223-316 OS Halomonas anticariensis FP35 = DSM 16096 #=GS S2KTI4/18-119_223-316 DE Ribosomal RNA small subunit methyltransferase H #=GS S2KTI4/18-119_223-316 DR GENE3D; 487c9b8731e7f14adf87af5741b78399/18-119_223-316; #=GS S2KTI4/18-119_223-316 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Oceanospirillales; Halomonadaceae; Halomonas; Halomonas anticariensis; #=GS S2KTI4/18-119_223-316 DR EC; 2.1.1.199; #=GS A0A0B5CKP9/11-113_217-310 AC A0A0B5CKP9 #=GS A0A0B5CKP9/11-113_217-310 OS Neisseria elongata subsp. glycolytica ATCC 29315 #=GS A0A0B5CKP9/11-113_217-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0B5CKP9/11-113_217-310 DR GENE3D; 489877b0f2757953b7888082e2f8655d/11-113_217-310; #=GS A0A0B5CKP9/11-113_217-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Neisseriales; Neisseriaceae; Neisseria; Neisseria elongata; Neisseria elongata subsp. glycolytica; #=GS A0A0B5CKP9/11-113_217-310 DR EC; 2.1.1.199; #=GS M4WSC9/10-113_217-311 AC M4WSC9 #=GS M4WSC9/10-113_217-311 OS Pseudomonas denitrificans ATCC 13867 #=GS M4WSC9/10-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS M4WSC9/10-113_217-311 DR GENE3D; 48a9997af5a5ee4140c79a6c7ac58327/10-113_217-311; #=GS M4WSC9/10-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas pertucinogena group; Pseudomonas denitrificans; #=GS M4WSC9/10-113_217-311 DR EC; 2.1.1.199; #=GS A0A0N2CWH4/15-116_226-320 AC A0A0N2CWH4 #=GS A0A0N2CWH4/15-116_226-320 OS Aggregatibacter aphrophilus F0387 #=GS A0A0N2CWH4/15-116_226-320 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0N2CWH4/15-116_226-320 DR GENE3D; 48dc1755cb44dc6544a378e8420adef1/15-116_226-320; #=GS A0A0N2CWH4/15-116_226-320 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Aggregatibacter; Aggregatibacter aphrophilus; #=GS A0A0N2CWH4/15-116_226-320 DR EC; 2.1.1.199; #=GS C6AKG2/15-116_226-320 AC C6AKG2 #=GS C6AKG2/15-116_226-320 OS Aggregatibacter aphrophilus NJ8700 #=GS C6AKG2/15-116_226-320 DE Ribosomal RNA small subunit methyltransferase H #=GS C6AKG2/15-116_226-320 DR GENE3D; 48dc1755cb44dc6544a378e8420adef1/15-116_226-320; #=GS C6AKG2/15-116_226-320 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Aggregatibacter; Aggregatibacter aphrophilus; #=GS C6AKG2/15-116_226-320 DR EC; 2.1.1.199; #=GS A0A062VBG2/15-118_222-264_285-314 AC A0A062VBG2 #=GS A0A062VBG2/15-118_222-264_285-314 OS Hyphomonas polymorpha PS728 #=GS A0A062VBG2/15-118_222-264_285-314 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A062VBG2/15-118_222-264_285-314 DR GENE3D; 48f43631448ed9f091329ec3974a5789/15-118_222-264_285-314; #=GS A0A062VBG2/15-118_222-264_285-314 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Hyphomonadaceae; Hyphomonas; Hyphomonas polymorpha; #=GS A0A062VBG2/15-118_222-264_285-314 DR EC; 2.1.1.199; #=GS A0A090IHD8/10-113_218-312 AC A0A090IHD8 #=GS A0A090IHD8/10-113_218-312 OS Moritella viscosa #=GS A0A090IHD8/10-113_218-312 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A090IHD8/10-113_218-312 DR GENE3D; 491418caba51bf77923d56acb5da1303/10-113_218-312; #=GS A0A090IHD8/10-113_218-312 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Moritellaceae; Moritella; Moritella viscosa; #=GS A0A090IHD8/10-113_218-312 DR EC; 2.1.1.199; #=GS A0A1J6KM97/10-111_217-311 AC A0A1J6KM97 #=GS A0A1J6KM97/10-111_217-311 OS [Haemophilus] parasuis #=GS A0A1J6KM97/10-111_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1J6KM97/10-111_217-311 DR GENE3D; 498cb8e7fe2560804023894bca3edae0/10-111_217-311; #=GS A0A1J6KM97/10-111_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Haemophilus; [Haemophilus] parasuis; #=GS A0A1J6KM97/10-111_217-311 DR EC; 2.1.1.199; #=GS A0A1E4IH80/9-109_214-303 AC A0A1E4IH80 #=GS A0A1E4IH80/9-109_214-303 OS Rubrivivax sp. SCN 71-131 #=GS A0A1E4IH80/9-109_214-303 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1E4IH80/9-109_214-303 DR GENE3D; 499933c271bb7fb42bb5c0efcc259910/9-109_214-303; #=GS A0A1E4IH80/9-109_214-303 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Rubrivivax; Rubrivivax sp. SCN 71-131; #=GS A0A1E4IH80/9-109_214-303 DR EC; 2.1.1.199; #=GS A0A1H2JVV3/12-115_219-313 AC A0A1H2JVV3 #=GS A0A1H2JVV3/12-115_219-313 OS Pseudomonas fragi #=GS A0A1H2JVV3/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1H2JVV3/12-115_219-313 DR GENE3D; 499c2fb55a927e3182335bf9427e9126/12-115_219-313; #=GS A0A1H2JVV3/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas chlororaphis group; Pseudomonas fragi; #=GS A0A1H2JVV3/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A177JSC0/12-115_219-313 AC A0A177JSC0 #=GS A0A177JSC0/12-115_219-313 OS Pseudomonas monteilii #=GS A0A177JSC0/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A177JSC0/12-115_219-313 DR GENE3D; 49cda2c744311d379b317107014c2024/12-115_219-313; #=GS A0A177JSC0/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas putida group; Pseudomonas monteilii; #=GS A0A177JSC0/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A0N8HFD8/12-115_219-313 AC A0A0N8HFD8 #=GS A0A0N8HFD8/12-115_219-313 OS Pseudomonas putida #=GS A0A0N8HFD8/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0N8HFD8/12-115_219-313 DR GENE3D; 49cda2c744311d379b317107014c2024/12-115_219-313; #=GS A0A0N8HFD8/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas putida group; Pseudomonas putida; #=GS A0A0N8HFD8/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A1A9JKM9/12-115_219-313 AC A0A1A9JKM9 #=GS A0A1A9JKM9/12-115_219-313 OS Pseudomonas koreensis #=GS A0A1A9JKM9/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1A9JKM9/12-115_219-313 DR GENE3D; 4a0fa8b031201697cdac0625c1d62bfb/12-115_219-313; #=GS A0A1A9JKM9/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas koreensis; #=GS A0A1A9JKM9/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A0U3B3L3/10-112_216-310 AC A0A0U3B3L3 #=GS A0A0U3B3L3/10-112_216-310 OS Lacimicrobium alkaliphilum #=GS A0A0U3B3L3/10-112_216-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0U3B3L3/10-112_216-310 DR GENE3D; 4a24b58b68b029e4050591a6ae83fcb9/10-112_216-310; #=GS A0A0U3B3L3/10-112_216-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Alteromonadaceae; Lacimicrobium; Lacimicrobium alkaliphilum; #=GS A0A0U3B3L3/10-112_216-310 DR EC; 2.1.1.199; #=GS A0A073IHS7/9-107_211-302 AC A0A073IHS7 #=GS A0A073IHS7/9-107_211-302 OS Sulfitobacter donghicola DSW-25 = KCTC 12864 = JCM 14565 #=GS A0A073IHS7/9-107_211-302 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A073IHS7/9-107_211-302 DR GENE3D; 4a28ff2bc70e17108bc8878eb6cb1809/9-107_211-302; #=GS A0A073IHS7/9-107_211-302 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Sulfitobacter; Sulfitobacter donghicola; #=GS A0A073IHS7/9-107_211-302 DR EC; 2.1.1.199; #=GS V6F2M2/15-119_222-264_285-314 AC V6F2M2 #=GS V6F2M2/15-119_222-264_285-314 OS Magnetospirillum gryphiswaldense MSR-1 v2 #=GS V6F2M2/15-119_222-264_285-314 DE Ribosomal RNA small subunit methyltransferase H #=GS V6F2M2/15-119_222-264_285-314 DR GENE3D; 4a3b444a4f451b2eeb4f9f296952cd73/15-119_222-264_285-314; #=GS V6F2M2/15-119_222-264_285-314 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodospirillales; Rhodospirillaceae; Magnetospirillum; Magnetospirillum gryphiswaldense; #=GS V6F2M2/15-119_222-264_285-314 DR EC; 2.1.1.199; #=GS V5UD03/14-114_222-314 AC V5UD03 #=GS V5UD03/14-114_222-314 OS Pandoraea pnomenusa #=GS V5UD03/14-114_222-314 DE Ribosomal RNA small subunit methyltransferase H #=GS V5UD03/14-114_222-314 DR GENE3D; 4a44b69ec5f6d13e6652d521f5ad937e/14-114_222-314; #=GS V5UD03/14-114_222-314 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Pandoraea; Pandoraea pnomenusa; #=GS V5UD03/14-114_222-314 DR EC; 2.1.1.199; #=GS A0A0T6URD4/12-115_219-313 AC A0A0T6URD4 #=GS A0A0T6URD4/12-115_219-313 OS Pseudomonas sp. TTU2014-066ASC #=GS A0A0T6URD4/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0T6URD4/12-115_219-313 DR GENE3D; 4ae0f73ffb17db7f46747f91f077c613/12-115_219-313; #=GS A0A0T6URD4/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. TTU2014-066ASC; #=GS A0A0T6URD4/12-115_219-313 DR EC; 2.1.1.199; #=GS S5XQH0/8-107_209-298 AC S5XQH0 #=GS S5XQH0/8-107_209-298 OS Paracoccus aminophilus JCM 7686 #=GS S5XQH0/8-107_209-298 DE Ribosomal RNA small subunit methyltransferase H #=GS S5XQH0/8-107_209-298 DR GENE3D; 4b0388589fa0ce5174ddb333c2ffacad/8-107_209-298; #=GS S5XQH0/8-107_209-298 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Paracoccus; Paracoccus aminophilus; #=GS S5XQH0/8-107_209-298 DR EC; 2.1.1.199; #=GS W0DXU0/10-112_216-308 AC W0DXU0 #=GS W0DXU0/10-112_216-308 OS Thioalkalimicrobium aerophilum AL3 #=GS W0DXU0/10-112_216-308 DE Ribosomal RNA small subunit methyltransferase H #=GS W0DXU0/10-112_216-308 DR GENE3D; 4b1d8eeb9112397e901a5f3eec785c8d/10-112_216-308; #=GS W0DXU0/10-112_216-308 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Thiotrichales; Piscirickettsiaceae; Thioalkalimicrobium; Thioalkalimicrobium aerophilum; #=GS W0DXU0/10-112_216-308 DR EC; 2.1.1.199; #=GS Q47VQ1/10-112_216-310 AC Q47VQ1 #=GS Q47VQ1/10-112_216-310 OS Colwellia psychrerythraea 34H #=GS Q47VQ1/10-112_216-310 DE Ribosomal RNA small subunit methyltransferase H #=GS Q47VQ1/10-112_216-310 DR GENE3D; 4b61f3e33ba9506e26f874beda8501d4/10-112_216-310; #=GS Q47VQ1/10-112_216-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Colwelliaceae; Colwellia; Colwellia psychrerythraea; #=GS Q47VQ1/10-112_216-310 DR EC; 2.1.1.199; #=GS A0A0P7YXU9/7-110_211-301 AC A0A0P7YXU9 #=GS A0A0P7YXU9/7-110_211-301 OS Porphyrobacter sp. HL-46 #=GS A0A0P7YXU9/7-110_211-301 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0P7YXU9/7-110_211-301 DR GENE3D; 4b709110c42a1b5dbfa364e7f8068500/7-110_211-301; #=GS A0A0P7YXU9/7-110_211-301 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Erythrobacteraceae; Porphyrobacter; Porphyrobacter sp. HL-46; #=GS A0A0P7YXU9/7-110_211-301 DR EC; 2.1.1.199; #=GS A0A0W0VQM4/7-110_214-306 AC A0A0W0VQM4 #=GS A0A0W0VQM4/7-110_214-306 OS Legionella londiniensis #=GS A0A0W0VQM4/7-110_214-306 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0W0VQM4/7-110_214-306 DR GENE3D; 4b7768e878dd006afc61e5cf1b2ec4c1/7-110_214-306; #=GS A0A0W0VQM4/7-110_214-306 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Legionellales; Legionellaceae; Legionella; Legionella londiniensis; #=GS A0A0W0VQM4/7-110_214-306 DR EC; 2.1.1.199; #=GS J2V7A1/12-115_219-313 AC J2V7A1 #=GS J2V7A1/12-115_219-313 OS Pseudomonas sp. GM16 #=GS J2V7A1/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS J2V7A1/12-115_219-313 DR GENE3D; 4bc844cb2ea7a82813ca337a4aa0a988/12-115_219-313; #=GS J2V7A1/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. GM16; #=GS J2V7A1/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A0P6RYX6/12-115_219-313 AC A0A0P6RYX6 #=GS A0A0P6RYX6/12-115_219-313 OS Pseudomonas sp. RIT-PI-r #=GS A0A0P6RYX6/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0P6RYX6/12-115_219-313 DR GENE3D; 4bc844cb2ea7a82813ca337a4aa0a988/12-115_219-313; #=GS A0A0P6RYX6/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. RIT-PI-r; #=GS A0A0P6RYX6/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A0A6DGK2/12-115_219-313 AC A0A0A6DGK2 #=GS A0A0A6DGK2/12-115_219-313 OS Pseudomonas chlororaphis #=GS A0A0A6DGK2/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0A6DGK2/12-115_219-313 DR GENE3D; 4bc844cb2ea7a82813ca337a4aa0a988/12-115_219-313; #=GS A0A0A6DGK2/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas chlororaphis group; Pseudomonas chlororaphis; #=GS A0A0A6DGK2/12-115_219-313 DR EC; 2.1.1.199; #=GS J2YXJ7/12-115_219-313 AC J2YXJ7 #=GS J2YXJ7/12-115_219-313 OS Pseudomonas sp. GM24 #=GS J2YXJ7/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS J2YXJ7/12-115_219-313 DR GENE3D; 4bc844cb2ea7a82813ca337a4aa0a988/12-115_219-313; #=GS J2YXJ7/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. GM24; #=GS J2YXJ7/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A0M1JG14/1-103_208-298 AC A0A0M1JG14 #=GS A0A0M1JG14/1-103_208-298 OS Achromatium sp. WMS3 #=GS A0A0M1JG14/1-103_208-298 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0M1JG14/1-103_208-298 DR GENE3D; 4c04e226d58cc669707e192eff1cf331/1-103_208-298; #=GS A0A0M1JG14/1-103_208-298 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Thiotrichales; Thiotrichaceae; Achromatium; Achromatium sp. WMS3; #=GS A0A0M1JG14/1-103_208-298 DR EC; 2.1.1.199; #=GS A0A129BPR4/7-110_214-306 AC A0A129BPR4 #=GS A0A129BPR4/7-110_214-306 OS Legionella pneumophila #=GS A0A129BPR4/7-110_214-306 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A129BPR4/7-110_214-306 DR GENE3D; 4c0e18312b3dbada47819d6066cd2d6b/7-110_214-306; #=GS A0A129BPR4/7-110_214-306 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Legionellales; Legionellaceae; Legionella; Legionella pneumophila; #=GS A0A129BPR4/7-110_214-306 DR EC; 2.1.1.199; #=GS A0A0H6D3V9/10-111_229-325 AC A0A0H6D3V9 #=GS A0A0H6D3V9/10-111_229-325 OS Vibrio cholerae #=GS A0A0H6D3V9/10-111_229-325 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0H6D3V9/10-111_229-325 DR GENE3D; 4c15327920452ff3e32b71a18cedb074/10-111_229-325; #=GS A0A0H6D3V9/10-111_229-325 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Vibrionales; Vibrionaceae; Vibrio; Vibrio cholerae; #=GS A0A0H6D3V9/10-111_229-325 DR EC; 2.1.1.199; #=GS A0A0W0LXL5/12-115_219-313 AC A0A0W0LXL5 #=GS A0A0W0LXL5/12-115_219-313 OS Pseudomonas marginalis ICMP 9505 #=GS A0A0W0LXL5/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0W0LXL5/12-115_219-313 DR GENE3D; 4c1af0090ca4c3247ba1ac18e39ca06c/12-115_219-313; #=GS A0A0W0LXL5/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas fluorescens group; Pseudomonas marginalis; #=GS A0A0W0LXL5/12-115_219-313 DR EC; 2.1.1.199; #=GS J8SFC5/2-107_213-302 AC J8SFC5 #=GS J8SFC5/2-107_213-302 OS Sphingomonas sp. LH128 #=GS J8SFC5/2-107_213-302 DE Ribosomal RNA small subunit methyltransferase H #=GS J8SFC5/2-107_213-302 DR GENE3D; 4c5e09ff44ef4c3478a1f6baae3c3949/2-107_213-302; #=GS J8SFC5/2-107_213-302 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingomonas; Sphingomonas sp. LH128; #=GS J8SFC5/2-107_213-302 DR EC; 2.1.1.199; #=GS A8FQ92/11-113_217-311 AC A8FQ92 #=GS A8FQ92/11-113_217-311 OS Shewanella sediminis HAW-EB3 #=GS A8FQ92/11-113_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS A8FQ92/11-113_217-311 DR GENE3D; 4cac6ce9d04ac0957ee45a0f54c54f79/11-113_217-311; #=GS A8FQ92/11-113_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Shewanellaceae; Shewanella; Shewanella sediminis; #=GS A8FQ92/11-113_217-311 DR EC; 2.1.1.199; #=GS A0A1B8QXR4/15-116_226-320 AC A0A1B8QXR4 #=GS A0A1B8QXR4/15-116_226-320 OS Haemophilus sp. CCUG 60358 #=GS A0A1B8QXR4/15-116_226-320 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1B8QXR4/15-116_226-320 DR GENE3D; 4cbf2431dbc9f5acc96af43c12da0f34/15-116_226-320; #=GS A0A1B8QXR4/15-116_226-320 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Haemophilus; Haemophilus sp. CCUG 60358; #=GS A0A1B8QXR4/15-116_226-320 DR EC; 2.1.1.199; #=GS A0A0S3EYF4/10-111_212-302 AC A0A0S3EYF4 #=GS A0A0S3EYF4/10-111_212-302 OS Sphingobium baderi #=GS A0A0S3EYF4/10-111_212-302 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0S3EYF4/10-111_212-302 DR GENE3D; 4cf259d2ae0122e8ee90f797005f7fc0/10-111_212-302; #=GS A0A0S3EYF4/10-111_212-302 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Sphingomonadales; Sphingomonadaceae; Sphingobium; Sphingobium baderi; #=GS A0A0S3EYF4/10-111_212-302 DR EC; 2.1.1.199; #=GS A0A176NQ71/12-115_219-313 AC A0A176NQ71 #=GS A0A176NQ71/12-115_219-313 OS Pseudomonas thivervalensis #=GS A0A176NQ71/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A176NQ71/12-115_219-313 DR GENE3D; 4cf33e93f32bafb5bca883cb4add0913/12-115_219-313; #=GS A0A176NQ71/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas thivervalensis; #=GS A0A176NQ71/12-115_219-313 DR EC; 2.1.1.199; #=GS D2YMG4/10-111_219-315 AC D2YMG4 #=GS D2YMG4/10-111_219-315 OS Vibrio mimicus VM573 #=GS D2YMG4/10-111_219-315 DE Ribosomal RNA small subunit methyltransferase H #=GS D2YMG4/10-111_219-315 DR GENE3D; 4cf8b15624e5161f5158b35b07587ef6/10-111_219-315; #=GS D2YMG4/10-111_219-315 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Vibrionales; Vibrionaceae; Vibrio; Vibrio mimicus; #=GS D2YMG4/10-111_219-315 DR EC; 2.1.1.199; #=GS A0A085TM92/10-111_219-315 AC A0A085TM92 #=GS A0A085TM92/10-111_219-315 OS Vibrio cholerae #=GS A0A085TM92/10-111_219-315 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A085TM92/10-111_219-315 DR GENE3D; 4cf8b15624e5161f5158b35b07587ef6/10-111_219-315; #=GS A0A085TM92/10-111_219-315 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Vibrionales; Vibrionaceae; Vibrio; Vibrio cholerae; #=GS A0A085TM92/10-111_219-315 DR EC; 2.1.1.199; #=GS A0A103BBT1/10-110_218-310 AC A0A103BBT1 #=GS A0A103BBT1/10-110_218-310 OS Burkholderia sp. ABCPW 11 #=GS A0A103BBT1/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A103BBT1/10-110_218-310 DR GENE3D; 4d21260fc1604384d7487540c5933a78/10-110_218-310; #=GS A0A103BBT1/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia cepacia complex; Burkholderia sp. ABCPW 11; #=GS A0A103BBT1/10-110_218-310 DR EC; 2.1.1.199; #=GS A0A1B4DLP3/10-110_218-310 AC A0A1B4DLP3 #=GS A0A1B4DLP3/10-110_218-310 OS Burkholderia sp. NRF60-BP8 #=GS A0A1B4DLP3/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1B4DLP3/10-110_218-310 DR GENE3D; 4d21260fc1604384d7487540c5933a78/10-110_218-310; #=GS A0A1B4DLP3/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia cepacia complex; Burkholderia sp. NRF60-BP8; #=GS A0A1B4DLP3/10-110_218-310 DR EC; 2.1.1.199; #=GS A0A095E199/10-110_218-310 AC A0A095E199 #=GS A0A095E199/10-110_218-310 OS Burkholderia cepacia #=GS A0A095E199/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A095E199/10-110_218-310 DR GENE3D; 4d21260fc1604384d7487540c5933a78/10-110_218-310; #=GS A0A095E199/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia cepacia complex; Burkholderia cepacia; #=GS A0A095E199/10-110_218-310 DR EC; 2.1.1.199; #=GS W1N6A9/18-119_223-316 AC W1N6A9 #=GS W1N6A9/18-119_223-316 OS Halomonas huangheensis #=GS W1N6A9/18-119_223-316 DE Ribosomal RNA small subunit methyltransferase H #=GS W1N6A9/18-119_223-316 DR GENE3D; 4d475bf376a16231fda209abf6be5a2a/18-119_223-316; #=GS W1N6A9/18-119_223-316 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Oceanospirillales; Halomonadaceae; Halomonas; Halomonas huangheensis; #=GS W1N6A9/18-119_223-316 DR EC; 2.1.1.199; #=GS W0SHJ5/9-109_213-306 AC W0SHJ5 #=GS W0SHJ5/9-109_213-306 OS Sulfuritalea hydrogenivorans sk43H #=GS W0SHJ5/9-109_213-306 DE Ribosomal RNA small subunit methyltransferase H #=GS W0SHJ5/9-109_213-306 DR GENE3D; 4d6c3f1199ba2a79b53a785f70295265/9-109_213-306; #=GS W0SHJ5/9-109_213-306 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Rhodocyclales; Rhodocyclaceae; Sulfuritalea; Sulfuritalea hydrogenivorans; #=GS W0SHJ5/9-109_213-306 DR EC; 2.1.1.199; #=GS S6EI82/15-116_226-320 AC S6EI82 #=GS S6EI82/15-116_226-320 OS Avibacterium paragallinarum JF4211 #=GS S6EI82/15-116_226-320 DE Ribosomal RNA small subunit methyltransferase H #=GS S6EI82/15-116_226-320 DR GENE3D; 4d6f20ca4fcfe3b34ba5e34e1800e085/15-116_226-320; #=GS S6EI82/15-116_226-320 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Avibacterium; Avibacterium paragallinarum; #=GS S6EI82/15-116_226-320 DR EC; 2.1.1.199; #=GS G8AFL6/19-123_227-269_291-321 AC G8AFL6 #=GS G8AFL6/19-123_227-269_291-321 OS Azospirillum brasilense Sp245 #=GS G8AFL6/19-123_227-269_291-321 DE Ribosomal RNA small subunit methyltransferase H #=GS G8AFL6/19-123_227-269_291-321 DR GENE3D; 4d8d3ae617d39b944d893a8a2f052752/19-123_227-269_291-321; #=GS G8AFL6/19-123_227-269_291-321 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodospirillales; Rhodospirillaceae; Azospirillum; Azospirillum brasilense; #=GS G8AFL6/19-123_227-269_291-321 DR EC; 2.1.1.199; #=GS A0A1D8S0Y3/10-112_216-310 AC A0A1D8S0Y3 #=GS A0A1D8S0Y3/10-112_216-310 OS Colwellia sp. PAMC 20917 #=GS A0A1D8S0Y3/10-112_216-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1D8S0Y3/10-112_216-310 DR GENE3D; 4d9edeb75831c50cdcab611dd99ed684/10-112_216-310; #=GS A0A1D8S0Y3/10-112_216-310 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Alteromonadales; Colwelliaceae; Colwellia; Colwellia sp. PAMC 20917; #=GS A0A1D8S0Y3/10-112_216-310 DR EC; 2.1.1.199; #=GS B0KFT4/12-115_219-313 AC B0KFT4 #=GS B0KFT4/12-115_219-313 OS Pseudomonas putida GB-1 #=GS B0KFT4/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS B0KFT4/12-115_219-313 DR GENE3D; 4e03044725a14554df8cd4e933c7d47d/12-115_219-313; #=GS B0KFT4/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas putida group; Pseudomonas putida; #=GS B0KFT4/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A0Q4MVT2/12-115_219-313 AC A0A0Q4MVT2 #=GS A0A0Q4MVT2/12-115_219-313 OS Pseudomonas sp. Leaf58 #=GS A0A0Q4MVT2/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0Q4MVT2/12-115_219-313 DR GENE3D; 4e03044725a14554df8cd4e933c7d47d/12-115_219-313; #=GS A0A0Q4MVT2/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. Leaf58; #=GS A0A0Q4MVT2/12-115_219-313 DR EC; 2.1.1.199; #=GS V7IES7/11-113_217-310 AC V7IES7 #=GS V7IES7/11-113_217-310 OS Eikenella corrodens CC92I #=GS V7IES7/11-113_217-310 DE Ribosomal RNA small subunit methyltransferase H #=GS V7IES7/11-113_217-310 DR GENE3D; 4e0ef55d27ef6c38def536c3a0a7ae15/11-113_217-310; #=GS V7IES7/11-113_217-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Neisseriales; Neisseriaceae; Eikenella; Eikenella corrodens; #=GS V7IES7/11-113_217-310 DR EC; 2.1.1.199; #=GS D0WAV3/12-114_218-311 AC D0WAV3 #=GS D0WAV3/12-114_218-311 OS Neisseria lactamica ATCC 23970 #=GS D0WAV3/12-114_218-311 DE Ribosomal RNA small subunit methyltransferase H #=GS D0WAV3/12-114_218-311 DR GENE3D; 4e8f418f3ae461619c96dffb60ab5496/12-114_218-311; #=GS D0WAV3/12-114_218-311 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Neisseriales; Neisseriaceae; Neisseria; Neisseria lactamica; #=GS D0WAV3/12-114_218-311 DR EC; 2.1.1.199; #=GS A0A104NSS3/10-110_218-310 AC A0A104NSS3 #=GS A0A104NSS3/10-110_218-310 OS Burkholderia pyrrocinia #=GS A0A104NSS3/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A104NSS3/10-110_218-310 DR GENE3D; 4ecf3ba1d6c308173ab6ce4ff2075edc/10-110_218-310; #=GS A0A104NSS3/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia cepacia complex; Burkholderia pyrrocinia; #=GS A0A104NSS3/10-110_218-310 DR EC; 2.1.1.199; #=GS A0A099RXI7/12-115_219-313 AC A0A099RXI7 #=GS A0A099RXI7/12-115_219-313 OS Pseudomonas sp. HMP271 #=GS A0A099RXI7/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A099RXI7/12-115_219-313 DR GENE3D; 4ef078c580058485d553d2b44a3d7ada/12-115_219-313; #=GS A0A099RXI7/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. HMP271; #=GS A0A099RXI7/12-115_219-313 DR EC; 2.1.1.199; #=GS Q3SMI1/8-108_212-305 AC Q3SMI1 #=GS Q3SMI1/8-108_212-305 OS Thiobacillus denitrificans ATCC 25259 #=GS Q3SMI1/8-108_212-305 DE Ribosomal RNA small subunit methyltransferase H #=GS Q3SMI1/8-108_212-305 DR GENE3D; 4f3c1d34d79849dcbe9fa60b4883c764/8-108_212-305; #=GS Q3SMI1/8-108_212-305 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Hydrogenophilales; Hydrogenophilaceae; Thiobacillus; Thiobacillus denitrificans; #=GS Q3SMI1/8-108_212-305 DR EC; 2.1.1.199; #=GS A0A103ZVG4/10-110_218-310 AC A0A103ZVG4 #=GS A0A103ZVG4/10-110_218-310 OS Burkholderia cepacia #=GS A0A103ZVG4/10-110_218-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A103ZVG4/10-110_218-310 DR GENE3D; 4f3de36d7531e3195b1f672278c25dfa/10-110_218-310; #=GS A0A103ZVG4/10-110_218-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Burkholderiaceae; Burkholderia; Burkholderia cepacia complex; Burkholderia cepacia; #=GS A0A103ZVG4/10-110_218-310 DR EC; 2.1.1.199; #=GS F9ZQV9/11-120_225-314 AC F9ZQV9 #=GS F9ZQV9/11-120_225-314 OS Acidithiobacillus caldus SM-1 #=GS F9ZQV9/11-120_225-314 DE Ribosomal RNA small subunit methyltransferase H #=GS F9ZQV9/11-120_225-314 DR GENE3D; 4f4ad7d9d4d8984574a532824a62d27a/11-120_225-314; #=GS F9ZQV9/11-120_225-314 DR ORG; Bacteria; Proteobacteria; Acidithiobacillia; Acidithiobacillales; Acidithiobacillaceae; Acidithiobacillus; Acidithiobacillus caldus; #=GS F9ZQV9/11-120_225-314 DR EC; 2.1.1.199; #=GS A0A060A2L9/11-120_225-314 AC A0A060A2L9 #=GS A0A060A2L9/11-120_225-314 OS Acidithiobacillus caldus ATCC 51756 #=GS A0A060A2L9/11-120_225-314 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A060A2L9/11-120_225-314 DR GENE3D; 4f4ad7d9d4d8984574a532824a62d27a/11-120_225-314; #=GS A0A060A2L9/11-120_225-314 DR ORG; Bacteria; Proteobacteria; Acidithiobacillia; Acidithiobacillales; Acidithiobacillaceae; Acidithiobacillus; Acidithiobacillus caldus; #=GS A0A060A2L9/11-120_225-314 DR EC; 2.1.1.199; #=GS A0A096E1F2/10-110_215-304 AC A0A096E1F2 #=GS A0A096E1F2/10-110_215-304 OS Comamonas testosteroni #=GS A0A096E1F2/10-110_215-304 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A096E1F2/10-110_215-304 DR GENE3D; 4f50510b7452ac676268304f19cc4dbb/10-110_215-304; #=GS A0A096E1F2/10-110_215-304 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales; Comamonadaceae; Comamonas; Comamonas testosteroni; #=GS A0A096E1F2/10-110_215-304 DR EC; 2.1.1.199; #=GS A0A0F3KIK3/11-113_217-310 AC A0A0F3KIK3 #=GS A0A0F3KIK3/11-113_217-310 OS Aquitalea magnusonii #=GS A0A0F3KIK3/11-113_217-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0F3KIK3/11-113_217-310 DR GENE3D; 4f72363eff0598617c8c0c76254c8182/11-113_217-310; #=GS A0A0F3KIK3/11-113_217-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Neisseriales; Chromobacteriaceae; Aquitalea; Aquitalea magnusonii; #=GS A0A0F3KIK3/11-113_217-310 DR EC; 2.1.1.199; #=GS A0A1E4X485/12-115_219-313 AC A0A1E4X485 #=GS A0A1E4X485/12-115_219-313 OS Pseudomonas sp. AP19 #=GS A0A1E4X485/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A1E4X485/12-115_219-313 DR GENE3D; 4f7ea62c07fdd5395112a61e9e49d88a/12-115_219-313; #=GS A0A1E4X485/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas sp. AP19; #=GS A0A1E4X485/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A0X7K6I1/12-115_219-313 AC A0A0X7K6I1 #=GS A0A0X7K6I1/12-115_219-313 OS Pseudomonas fluorescens #=GS A0A0X7K6I1/12-115_219-313 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A0X7K6I1/12-115_219-313 DR GENE3D; 4f7ecf346e0eb1de0f0d15b015872cfd/12-115_219-313; #=GS A0A0X7K6I1/12-115_219-313 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pseudomonadales; Pseudomonadaceae; Pseudomonas; Pseudomonas fluorescens group; Pseudomonas fluorescens; #=GS A0A0X7K6I1/12-115_219-313 DR EC; 2.1.1.199; #=GS A0A142LI20/9-113_217-310 AC A0A142LI20 #=GS A0A142LI20/9-113_217-310 OS Betaproteobacteria bacterium UKL13-2 #=GS A0A142LI20/9-113_217-310 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A142LI20/9-113_217-310 DR GENE3D; 4f8d6cd08512c8d5a0516f25ab1eb451/9-113_217-310; #=GS A0A142LI20/9-113_217-310 DR ORG; Bacteria; Proteobacteria; Betaproteobacteria; Betaproteobacteria bacterium UKL13-2; #=GS A0A142LI20/9-113_217-310 DR EC; 2.1.1.199; #=GS A8LSB5/12-111_215-305 AC A8LSB5 #=GS A8LSB5/12-111_215-305 OS Dinoroseobacter shibae DFL 12 = DSM 16493 #=GS A8LSB5/12-111_215-305 DE Ribosomal RNA small subunit methyltransferase H #=GS A8LSB5/12-111_215-305 DR GENE3D; 4f93bd1d41878c9a44e2c3af225752ba/12-111_215-305; #=GS A8LSB5/12-111_215-305 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Dinoroseobacter; Dinoroseobacter shibae; #=GS A8LSB5/12-111_215-305 DR EC; 2.1.1.199; #=GS U4RZC1/10-111_217-311 AC U4RZC1 #=GS U4RZC1/10-111_217-311 OS Haemophilus parasuis MN-H #=GS U4RZC1/10-111_217-311 DE Ribosomal RNA small subunit methyltransferase H #=GS U4RZC1/10-111_217-311 DR GENE3D; 4faaaecaf0409dbccfc5ac431881258b/10-111_217-311; #=GS U4RZC1/10-111_217-311 DR ORG; Bacteria; Proteobacteria; Gammaproteobacteria; Pasteurellales; Pasteurellaceae; Haemophilus; [Haemophilus] parasuis; #=GS U4RZC1/10-111_217-311 DR EC; 2.1.1.199; #=GS A0A196QI34/14-112_216-307 AC A0A196QI34 #=GS A0A196QI34/14-112_216-307 OS Sulfitobacter geojensis #=GS A0A196QI34/14-112_216-307 DE Ribosomal RNA small subunit methyltransferase H #=GS A0A196QI34/14-112_216-307 DR GENE3D; 4fff6d575154f8ee022622c3839f64f2/14-112_216-307; #=GS A0A196QI34/14-112_216-307 DR ORG; Bacteria; Proteobacteria; Alphaproteobacteria; Rhodobacterales; Rhodobacteraceae; Sulfitobacter; Sulfitobacter geojensis; #=GS A0A196QI34/14-112_216-307 DR EC; 2.1.1.199; #=GF TC 153.3 3.9E-46 #=GF SQ 1000 Q8XVH9/14-114_222-268_289-318 ---VLRDEAIDALLW----R--D----------DGIYIDGTFGRGGHSRLILERLGPGGRLIAFDKDPAAITEAG----TV--EDA--------R----FAIEHDSFAHLDAAL-DA-----R----GIGR---VAGVLLDLGISSPQIDEELADLETGLKSAFERLEQGGRLVVISFHSLEDRIVKRFMQ-------------ALARPEQ-------------------------------------LR------LL-GR-VRP---SEAEVSAN-PRSRS----AIMRVAER T1G302/37-142_258-357 HVPVMKHEVVRLFKE----N-----S-------CKNILDLTFGGGGHTGALLREIPGA-VVYALDRDPDAHKTAV----TMASTET--------R----LKPLLGKFSEVKDVLYKT-----Y----GVQS---LDGALLDVGVSSMQFD-ELNELNQALLNVHSLLVPGGLCVAISFHSLEDRIVKRHFHGIDMREDLCLSIRDRAR-----RNLDRD---EI--ESI----VKKNW-VVEN----------------KKIIVP---SDKEVTSN-PRSRS----AKLRY--- Q54PT4/59-166_272-352 HKPVFIKEVLEILNP----Q-----P-------NKVYIDATFGMGGHSRGILETCKDC-YVIAFDRDPKVFEMTK----PLR-SEFKD------R----LITINSTFSSMRSAL-KE-----K--NLDHLK---ISGILYDFGVSSYQIDTELNEIKIGLTQGEQLLEPNSPLLAISFHSIEDRIVKQYLN-------------KYT-------------------TIE----------------EPTFK----FSPTYKSPIFP---SKEELEWN-PRSKS----AILRTA-- Q89FT9/6-110_213-304 HIPVLGREAIDHLAP----R-----E-------GGIYVDATFGAGGYSRAILDVPGTR--LIAIDRDRTAIAGGA----ELV-ERSAG------R----LTLVEDRFSHLADVC-AA-----Q----GVDA---VDGVVMDVGVSSMQLDQELEELQTALTAAERVLKPGGRLVVVSFHSLEDRIVKNFLA-------------ERSKTGG----GSRH----L---PE----VAQT--------APSFQ------LLTRRPVVA---GEDEVAHN-PRARS----AKLRAAE- Q83F35/7-110_214-305 ---VLFDEVMEGLAI----R-----P-------DGIYVDGTFGRGGHSFGILQRLGPNGRLMAMDKDPDAVAVAN----KALFEDA--------R----FSIVHETFANLQKAV-RD-----R----GWEGK--VNGILLDIGVSSPQLEDELDELRECLPQCLETLAVGGRLCVISFHSLEDRLVKRFIQ-------------KESRDH-----LPRE----I---PI----LAKD-------IKHRLK------PL-GSLIRP---TEAEIKKN-PRARS----ARLRIVEK C1DQ91/10-113_217-311 ---VLLEEAVDALSI----R-----E-------GGCYLDGTFGRGGHSRLILGRLGAGGILLGFDKDPQAVAAGL----ALATEDA--------R----FVIVQRSFAELADEM-KM-----R----GLVGK--VSGVLLDLGVSSPQLDDELGDLEQGLDAALEVLEVGGRLAVISFHSLEDRIVKRFMR-------------RQVKGEAD--KLPRD----L---PI----RPAA-------FEPRLK------LI-GKPRYA---SESELKTN-PRARS----AIMRVAEK Q9CPB4/15-116_226-320 ---VLLNEAVAGLAL----K-----E-------KGIYIDGTFGRGGHSRLILSRLADNGRLIAIDRDPRAIAEAK----TI--QDP--------R----FHIEHRSFSDIPRIC-ER-----L----NLVGK--VDGILLDLGVSSPQLDEELDELESVLKSAVQVLAPQGRLAIISFHSLEDRMVKHFMR-------------KQSKGED----IPKG----L---PL----RDDQ--IQ---RTQTLK------VI-GKAIMP---TEQEQQQN-PRSRS----AVLRVAEK A3MY82/11-112_218-312 ---VLLHEAVDGLAI----K-----P-------NGIYIDGTFGRGGHSRLILSKLSEQGRLIATDRDPRAIAEAN----TI--NDA--------R----FQIVHTAFSAIPEVC-EQ-----L----GLTGK--IDGILLDLGVSSPQLDDELDELEKALQSALSVLAPEGRLSIISFHSLEDRMVKQFMK-------------KNSKGMG----VPKG----L---PI----LESE--LN---KNIPLK------II-GKAIMP---SEAEIEAN-PRSRS----AVLRIAEK C9R2Y9/15-116_226-320 ---VLLHETVDGLAL----K-----E-------NGIYIDGTFGRGGHSRLILSQLSVNGKLIAIDRDPQAVAEAQ----KI--QDS--------R----FHIEHNTFSEILPIC-EK-----F----GLVGK--VDGILLDLGVSSPQLDDELDELENVLQSALSVLAPKGRLSVISFHSLEDRMVKQFMR-------------KQSQGEV----IPKG----L---PL----REDQ--IQ---RNRRLK------VI-GKAIMP---SEAEIVQN-PRARS----AVLRIAER A0KPY0/10-111_215-309 ---VLLHEAVEGLAI----K-----P-------DGIYVDGTFGRGGHSRLILQQLGPNGRLIAIDRDPQAIAEAA----KI--QDP--------R----FEIVHGPFSGIASYL-DE-----R----GLLGK--VDGFLLDLGVSSPQLDDELDEIETALNGALQVLAPEGRLSVISFHSLEDRLVKHFIR-------------KHEKGPE----VPHG----I---PL----TEAQ--LA---GGRKLK------SV-GKALKP---SEHEVNEN-SRSRS----SVLRVAQR Q8E9P0/10-112_216-310 ---VLLEETVGGLNI----K-----D-------DGIYIDGTFGRGGHSRQVLQRLGEKGRLIAIDRDPQAIEAAK----QF-ADDP--------R----FQIVHGGFGQLADYV-ED-----L----GLVGK--IDGVLLDLGVSSPQLDDELDQIDQALEGALTVLAPQGRLSIISFHSLEDRIVKRFIR-------------RHSQGES----VPHG----L---PI----TEDQ--IN---KSRKLR------AI-GKAIMP---SDEEIERN-ARARS----SVLRIAER Q7VUP6/43-132_236-328 -------------------------Q-------HGVFVDGTFGRGGHSRALLARLGAQARLVVFDKDPQAIAVAR----ELAAGDG--------R----VEVVHGGFATMAEEL-TA-----R----GIEQ---VDGVMLDLGVSSPQIDDELEELARALASALDLLGPGGRLAVISFHSLEDRMVKQCIA-------------AAARPAA----AHAR----L---PL----RESE--L----PQPLVR------SL-GK-VVA---DDVEVAGN-ARARS----AILRVAER Q3JND0/10-110_218-310 ---VLLDEAVDALVT----R-----P-------DGVYVDGTFGRGGHSRAVLARLGDAGRLIAFDKDPRAIETAE----SI--EDA--------R----FEIVHDSFAAMKGAL-DA-----R----GVGR---VSGVLLDLGVSSPQVDDELADLQVVLEAALSLLEQGGRLVVISFHSLEDRIVKRFLQ-------------AHASAPA----VDRR----L---PI----RAAD------LPRPPLK------LL-GR-MFP---NDAEVAAN-PRARS----AVMRIAER Q9KPF9/10-111_219-315 ---VLLNESIEGLAI----K-----P-------DGIYIDGTFGRGGHSRTILAQLGPEGRLYSIDRDPQAIAEAQ----KI--DDP--------R----FTIVHGPFSGIAEYA-QR-----Y----DLVGK--VDGVLFDLGVSSPQLDDELEEIDTALRGASDILAPQGRLSVISFHSLEDRMVKRFMR-------------KESQGPQ----VPHG----I---PL----TQDQ--IRAL-GSAKMK------TV-GKALKP---SDQEVELN-PRSRS----SVLRVAEK Q9RQJ6/6-103_207-299 HISVLLDEVVEALDA----K-----P-------GDVVVDGTFGAGGYTRAVLPTG-AS--VVAFDRDPTVRQFAA----NLP-A---D------R----FRLVQARFSEMLDEL-------------GPES---VEGVMLDLGVSSMQLDQELGELEAGLAAAERVLKPGGRLVVVTFHSLEDRIVKAFLA-------------ERAGKAP---GGSRH----A---PP---VAAGA--------APSFQ------LISNKAIAP---SEAELAVN-PRARS----SKLRAA-- Q3J4N3/11-110_214-304 HIPVLLRPLLAAVAP----V-----E-------G-TWLDGTFGAGGYARGLLEAGADR--VIGVDRDPLALKMAS----GWA-GDYGD------R----LRLVAGTFSQLDSHA-G-------------AP---LDGVVLDLGVSSMQLDLEFSELVEGLEAAERALRPGGRLAVVTFHSLEDRIVKRFLQ-------------LRSGGEG---QGNRY----A---PE----TRAD--------APRFT------LPLRRAISP---DEAELAEN-PRARS----ARLRV--- Q9JSY9/12-114_218-311 ---VLLNEAVDALAV----R-----E-------DGVYVDGTFGRGGHSRLILSRLGDAGRLIVFDKDPQAIAVAE----ELARSDK--------R----VGVVHGGFASFQTAL-DG-----L----GIGK---VDGALFDLGISSPQIDDELEEVGAVLPQVMCRLKEGGRLAVIAFHSLEDRIVKQFVK-------------KYSQHAP----LPRW----A---AV----READ--L----PEPPLK------IA-GRALKP---GEAEIAAN-PRARS----AVLRVAER A1AZK1/6-105_207-296 HIPVLLGPLLRAVAP----V-----E-------G-TWVDGTFGAGGYARGLLEQGADR--VIGIDRDPAVFRMAE----AWA-GEYGD------R----LRLVEGTFSDLDSLA-G-------------GP---VDGVVLDLGVSSMQLD-QFGQLVAGLAAAERALRPGGKLAVVSFHSLEDRIVKRFMQ-------------ARSNSAG---GGSRY----A---PE----AARE--------EPAFT------LPFRRAIGP---DEAELATN-PRARS----ALLRV--- Q2RVT6/7-111_214-311 HFPVMLDEVLSALEP----H-----A-------DGLYVDGTFGNGGYSRGLLERADCR--VIAIDRDPAARVRGA----ALE-AEFPG------R----FTLLSGCFGDMEQLL-AA-----E----GISR---IDGVALDLGVSSMQLDQELGELERALGASERLLRAGGRLVVVAFHSLEDRIVKAFVR-------------QRCGESE---GVSRH----L---PQ----ASNAG-AGN--PPPSFQ------AVSRRAVKP---LDAETRVN-PRSRS----ARLRAVE- P45057/15-116_226-320 ---VLLHEAVNGLAL----K-----E-------NGIYIDGTFGRGGHSRFILSQLSSNGRLIAVDRDPRAIAEAH----KI--QDL--------R----FQIEHNSFSHIPEIC-DK-----L----NLVGK--IDGILLDLGVSSPQLDEELDELESLLNSALDMLAPEGRLSIISFHSLEDRMVKHFMK-------------KQSKGED----IPKG----L---PL----REDQ--IQ---RNQKLR------II-GKAIQP---SDAEIQAN-PRSRS----AILRVAER Q5X6J0/7-110_214-306 ---VLLHESIKGLAI----K-----A-------DGIYFDGTFGRGGHSREILNHLSDKGRLFAIDKDLDAVQYAK----DYFGLDK--------R----FQIFHGSFAQIKEFA-SQ-----A----GVIGA--VDGILLDLGVSSPQLDNELTDLSNCLEQCLDVLGPGGRLAVISFHSLEDRIVKQFMR-------------DKEQGNR----PPVE----V---PI----KYEE-------LKTNFK------KV-GKAVKP---QSSEIKEN-VRSRS----AVLRIGEK A0A0Q7Z3S0/14-117_218-260_281-309 HDPVLRDEIVAALAI----A-----P-------GECHVDATFGAGGYTRALLAAG-AQ--VVACDRDPDAIAEGQ----ALV-AEAAG------R----LTLVHGRFGEIDRLL-AE-----R----GIEA---VDGIVFDIGVSSMQLDRELDELKAGLDAAERLLRPGGRLAVVSFHSTEDRIVKNFLR-------------ERS----------------------------------------TFL------PP-ARRVRP---GKDEEARN-PRARS----ATLRS--- A0A1G3KG36/14-117_218-260_281-309 HDPVLRDEIVAALAI----A-----P-------GECHVDATFGAGGYTRALLAAG-AQ--VVACDRDPDAIAEGQ----ALV-AEAAG------R----LTLVHGRFGEIDRLL-AE-----R----GIEA---VDGIVFDIGVSSMQLDRELDELKAGLDAAERLLRPGGRLAVVSFHSTEDRIVKNFLR-------------ERS----------------------------------------TFL------PP-ARRVRP---GKDEEARN-PRARS----ATLRS--- A0A095BN42/10-113_214-256_277-305 HDPVLREEVLAALAI----Q-----P-------GERHVDATFGAGGYTRAMLAAG-AD--VVACDRDPDAIAGGQ----ALV-EEAGG------K----LTLIHGRFSEIDRLL-AE-----R----GIDA---VDGITFDIGVSSMQLDQELDELIAGLNAAERLLRPGGRLAVVSFHSTEDRIVKNFLR-------------ERS----------------------------------------TFE------TP-ARKVRP---GKAEEARN-PRARS----ATLRS--- A0A0P0DQ66/14-117_218-260_281-309 HDPVLREEVIAALAI----A-----P-------GERHVDATFGAGGYTRAMLAAG-AD--VVACDRDPDAIAEGQ----ALV-QEAGG------R----LTLVHGRFGEIDRLL-AE-----R----GIDT---VDGITFDIGVSSMQLDQELDELTAGLAAAERVLRPGGRLAVVSFHSTEDRIVKNFLR-------------ERS----------------------------------------TFE------TP-ARKVRP---GKAEEARN-PRARS----ATLRS--- D8N628/14-114_222-268_289-318 ---VLRDEAVDALLW----R--D----------DGIYIDGTFGRGGHSRLILERLGSGGRLIAFDKDPAAITEAG----TV--EDA--------R----FAIEHDSFAQMGSAL-DA-----R----GIGR---VAGVLLDLGISSPQIDEELADLETGLKAAFERLEQGGRLVVISFHSLEDRIVKRFMQ-------------ALARPEQ-------------------------------------LR------LL-GR-VRP---SEAEVSAN-PRARS----AIMRVAER A5UIQ3/15-116_226-272 ---VLLHEAVNGLAL----K-----E-------NGIYIDGTFGRGGHSRFILSQLSSNGRLIAVDRDPRAIAEAH----KI--QDL--------R----FQIEHNSFSHIPEIC-DK-----L----NLVGK--IDGILLDLGVSSPQLDEELDELESLLNSALDMLAPEGRLSIISFHSLEDRMVKHFMK-------------NKVRA--------------------------------------------------------------------------------RI--- A0A0Q5V2C4/9-112_216-258_279-308 HDPVLIAEVLEALAP----K-----P-------GDLIIDATFGAGGYSRAILETG-AE--VMALDRDPTVQPFAD----ALA-ADFPG------R----FQLVRAPFAELATVF-AE-----S----GRAR---LDGVVFDIGVSSMQLDQELGQLTAGLEAAEQALSAGGRLAVVTFHSLEDRIVKAFMT-------------ERT-----------------------------------------FT------AAFKGARDA---TDAERARN-PRARS----ARLRAA-- A0A1F8IJU9/10-113_217-259_280-309 HAPVLLAEVIEALKP----G-----P-------GDVVIDATFGAGGYTRAILATG-AE--VIALDRDPTVQPHAD----AVA-ADHPG------R----FQLVRTPFSGLAQAF-AD-----S----GAAK---LDGAVFDIGVSSMQLDQELGELERGLEAAEATLAPGGRLAVVTFHSLEDRIVKAFLT-------------ERT-----------------------------------------FT------LQFKGAREA---GDEERSAN-PRARS----AKLRAA-- A0A0Q7EKC9/5-108_216-258_279-308 HAPVLLDEVLEALEP----R-----A-------GDVIIDATFGAGGYTRAILAAG-AT--VIALDRDPTVQPHAD----AVA-ADYSD------R----FRLVRTPFSGLAEAF-EG-----T----GEAK---LDGVVFDIGVSSMQLDQELGELRAGLEAAEATLAPGGRLAVVTFHSLEDRIVKAFLT-------------ERT-----------------------------------------FT------LKFKGAVEA---GEAELAAN-PRARS----ARLRAA-- U3G713/14-114_222-268_289-318 ---VLLEEAVDALIW----R--D----------DGIYIDGTFGRGGHSRRILERLGPGGRLVAFDKDPAAITEAG----TV--EDA--------R----FAIEHDSFAQMAQCL-DA-----R----GIER---VAGVLLDLGISSPQIDEELADLETGLKAAFERLEQGGRLVVISFHSLEDRIVKRFMQ-------------ALARPEQ-------------------------------------LR------LL-GR-VKP---SEAEVSAN-PRARS----AIMRVAER A0A1C0XL75/14-114_222-268_289-318 ---VLLEEAVDALIW----R--D----------DGIYIDGTFGRGGHSRRILERLGPGGRLVAFDKDPAAITEAG----TV--EDA--------R----FAIEHDSFAQMAQCL-DA-----R----GIER---VAGVLLDLGISSPQIDEELADLETGLKAAFERLEQGGRLVVISFHSLEDRIVKRFMQ-------------ALARPEQ-------------------------------------LR------LL-GR-VKP---SEAEVSAN-PRARS----AIMRVAER A0A0Q8RWY2/10-113_214-256_277-305 HDPVLRDEVLAALAI----A-----P-------GERHIDATFGAGGYTRAMLAAG-AD--VIACDRDPDAIAGGQ----ALV-EEAGG------K----LTLIRGRFGEIDRLL-AE-----R----GIDA---VDGITFDIGVSSMQLDQELDELMAGLNAAERLLRPGGRLAVVSFHSTEDRIVKNFLR-------------ERS----------------------------------------TFE------TP-ARKVRP---GKAEEARN-PRARS----ATLRS--- A0A0Q7T2J9/4-107_211-253_274-303 HAPVLLDEVIEALAP----G-----P-------GDVIIDATFGAGGYTRAILATG-AT--VIGLDRDPTVQPHAD----AVA-NDYPG------K----FRLIRTPFSGLADAF-AQ-----S----GEAR---LDGVVFDIGVSSMQLDQELGELRAGLEAAEATLAPGGRLVVVTFHSLEDRIVKAFLT-------------ERT-----------------------------------------FT------LSFKGAREA---GQAELGSN-PRARS----AKLRAA-- A0A0N9UZX7/14-117_218-260_281-309 HDPVLREEVIAALAI----A-----P-------GERHVDATFGAGGYTRAMLAAG-AD--VVACDRDPDAIAEGQ----ALV-AEADG------R----LTLVHGRFGEIDRLL-AE-----R----GIDA---VDGITFDIGVSSMQLDQELDELTAGLAAAERVLRPGGRLAVVSFHSTEDRIVKNFLR-------------ERS----------------------------------------TFE------TP-ARKVRP---GKAEEARN-PRARS----ATLRS--- D9QMT5/6-109_213-255_276-305 HAPVLLAEVLEALAP----K-----A-------GDVIIDATFGAGGYTRAILATG-AT--VIALDRDPTVQPHAD----AVA-NDHPG------R----FTLVRTPFSGLADAF-AD-----S----GAAR---LDGIVFDIGVSSMQLDEELGELTAGLQAAEAALSPGGRLAVVTFHSLEDRIVKAFLT-------------ERT-----------------------------------------FT------LSFKGAREA---GEAELAAN-PRARS----AKLRAA-- Q1GRX1/10-113_214-256_277-305 HDPVLLDEVIAALAI----A-----P-------GERHVDATFGAGGYTRAMLAAG-AE--VIACDRDPDAIAGGE----ALV-AEADG------R----LTLIHGRFGEIDRLL-AE-----R----GIDA---VDGITFDIGVSSMQLDQELDELVAGLAAAERVLRPGGRLAVVSFHSTEDRIVKHFLR-------------ERS----------------------------------------TFE------TP-ARKVRP---GKAEEARN-PRARS----ATLRS--- A0A0W1I8Z5/7-110_211-253_274-302 HDPVLREEVIAALAI----A-----P-------GERHVDATFGAGGYTRAMLAAG-AE--VIACDRDPDAIAEGQ----ALV-AEADG------K----LMLIHGRFGEIDRLL-AE-----R----GIDA---VDGITFDIGVSSMQLDRELDELMQGLAAAERILRPGGRLAVVSFHSTEDRIVKNFLR-------------ERS----------------------------------------TFQ------PP-ARKVRP---GKAEEARN-PRARS----ATLRS--- A0A0G0A1C6/2-106_209-277 HTPVLLEQVVEALDV----K-----K-------DGLYVDATFGEGGYSKAMLDKGA---KVLGLDLDAEQINNSK---FIIQNSEL--------K---NLKLIEGNFGDIEKVA-KE-----N----NFFP---VDGVVFDLGLSMKQINQEFENLKKGLDGAARIIKNNGKIAVVTFHSLEDRIVKNFSK------------------------------------------------------SQGLK------LLNKKPITN------------RRGRSFEKSAKLRLI-- A0A0G0B0B9/2-106_209-277 HTPVLLEQVVEALDV----K-----K-------DGLYVDATFGEGGYSKAMLDKGA---KVLGLDLDAEQINNSK---FIIQNSEL--------K---NLKLIEGNFGDIEKVA-KE-----N----NFFP---VDGVVFDLGLSMKQINQEFENLKKGLDGAARIIKNNGKIAVVTFHSLEDRIVKNFSK------------------------------------------------------SQGLK------LLNKKPITN------------RRGRSFEKSAKLRLI-- V4PYB9/6-109_213-255_276-305 HASVLLPEVLAALGD----V-----S-------GKLVVDGTFGAGGYSRAILSRG-AH--VIAFDRDARVKPYVD----ALK-GEFPD------R----FQWVNRCFSEMKEGL-AD-----L----GHDT---CDAIVLDIGVSSMQLDEELGELERALDVSEALLTPDGVLAVVTFHSLEDRIVKNFFN-------------ERA-----------------------------------------YT------LVTPKAVQA---GEAETAVN-PRARS----AKLRAV-- A0A1D9GYP5/17-115_223-269_290-319 ---VMLDEAVEALLW----R-----S-------DGVYVDGTFGRGGHSRAVLARLGPAGALVAFDKDPAAIAEAG----TI--QDA--------R----FSIEHASFAEMGACL-SG-----R----A--P---VAGVLLDLGISSPQIDEELADLERGLSAAYELLEVGGRLVVISFHSLEDRIVKRFMQ-------------AHARPQQ-------------------------------------LK------LL-GR-YKP---SEAEVADN-PRARS----AVMRVAEK N9WHJ4/14-117_218-260_281-309 HDPVLREEVIAALAI----A-----P-------GERHVDATFGAGGYTRAMLAAG-AE--VIACDRDPDAIAEGQ----ALV-AEADG------K----LMLIHGRFGEIDRLL-AE-----R----GIDA---VDGITFDIGVSSMQLDRELDELMQGLAAAERILRPGGRLAVVSFHSTEDRIVKNFLR-------------ERS----------------------------------------TFQ------PP-ARKVRP---GKAEEARN-PRARS----ATLRS--- A0A0D5AMQ5/14-114_222-268_289-318 ---VLLDEAVDALIW----R--D----------DGIYIDGTFGRGGHSRRILERLGPGGRLVAFDKDPAAITEAG----TV--EDA--------R----FAIEHDSFAQMAQCL-DA-----R----GIER---VAGVLLDLGISSPQIDEELADLETGLKAAFERLEQGGRLVVISFHSLEDRIVKRFMQ-------------ALARPEQ-------------------------------------LR------LL-GR-VKP---SEAEVSAN-PRARS----AIMRVAER A0A0N0RC77/14-117_218-260_281-309 HDPVLREEVLAALAI----A-----P-------GERHVDATFGAGGYTRAMLAAG-AE--VIACDRDPDAIAEGQ----ALV-EEAGG------K----LTLIHGRFGEIDRLL-AE-----R----GIEA---VDGITFDIGVSSMQLDRELDELMAGLNAAERLLRPGGRLAVVSFHSTEDRIVKNFLR-------------ERS----------------------------------------TFE------TP-ARKVRP---GKAEEARN-PRARS----ATLRS--- A0A0F0FTY4/17-115_223-269_290-319 ---VLLDEAVEALVW----R-----P-------DGVYVDGTFGRGGHSRAILARLGPAGALVAFDKDPAAIAEAG----TI--KDA--------R----FSIEHTSFAEMSDRL-AG-----R----G--K---VTGILLDLGISSPQIDDELADLERGLSAAYDLLQAGGRLVVISFHSLEDRIVKRFML-------------AHARPQQ-------------------------------------LR------LL-GR-VKP---GAEEIAAN-PRARS----AVMRVAEK U2ZCX3/5-108_212-254_275-304 HAPVLLDEVIEALDP----K-----P-------GDVMIDATFGAGGYTRAILARG-AA--VVGLDRDPTVRAHAD----KVA-ADFPG------R----FELKQTPFSGLSAAF-AE-----T----GHDR---LDGAVFDIGVSSMQLDQELGELTAGLEAAEATLAPGGRLAVVTFHSLEDRIVKAFLT-------------ERT-----------------------------------------FT------LMFKGAREA---GEAERAGN-PRARS----ARLRAA-- A0A0Q4FNV4/6-104_205-247_268-296 HIPVLLDEVLVALSI----G-----P-------DETHVDATFGAGGYTRAMLAAG-AT--VIAFDRDPDAIAAGR----A-L-EAAED------R----LRLVHADFSGLESAL-D-------------GP---VDGVVMDIGVSSMQLDQELDELAAGLLAAERALKPGGRLVVVTFHSLEDRMVKRFLR-------------DRS-----------------------------------------FE------RV-GRGVKA---GDDELARN-PRARS----ATLRTA-- A0A0Q8R0Z6/7-110_211-253_274-303 HVPVLLDEVVAGLDP----V-----A-------GETHVDGTFGAGGYTRALLRAG-AR--VYAFDRDPDAIAEGR----ALE-DEHDG------Q----LILVPERFSRMAEAL-SE-----R----GVDQ---VDGVTLDIGVSSMQLDRELEELEQGLAAAERVLRPGGRLAVVSFHSIEDRIVKRFLR-------------DRS----------------------------------------SFE------AV-AKPVRA---GEAELVRN-PRSRS----ATLRVA-- A0A0W1GRM4/14-117_218-260_281-309 HDPVLREEVIAALAI----L-----P-------GERHVDATFGAGGYTRAMLAAG-AA--VIACDRDPDAIAAGQ----ALV-AEADG------R----LTLIHGRFGEIDRLL-AE-----R----GIDA---VDGITFDIGVSSMQLDQELDELVAGLSAAERILRPGGRLAVVSFHSTEDRIVKNFLR-------------ERS----------------------------------------TFD------TP-ARKVRP---GKAEEARN-PRARS----ATLRS--- A0A0W1EFP0/10-113_214-256_277-305 HDPVLRDEVVAALAI----A-----P-------GETHVDATFGAGGYTRALLAAE-AN--VVACDRDPDAIAEGQ----ALV-AEAGG------R----LTLIHGRFGEIDRLL-AE-----R----GIAA---VDGIVFDIGVSSMQLDRELDELAAGLDAAERLLRPGGRLAVVSFHSTEDRIVKNFLR-------------ERS----------------------------------------TFL------TP-ARKVRP---GKAEEARN-PRARS----ATLRS--- B4WBI9/6-109_213-255_276-305 HAPVLLAEVIEALKP----G-----P-------GDVVIDATFGAGGYTRAILATG-AQ--VIGLDRDPTVQPHAD----AVA-KDFPG------Q----FQLIRTPFSGLAQAF-AD-----S----GKAK---LDGAVFDIGVSSMQLDQELGELERGLEAAEATLAPGGRLAVVTFHSLEDRIVKAFLT-------------ERT-----------------------------------------FT------LQFKGAREA---GEGERSTN-PRARS----AKLRAA-- V4Q6R8/8-111_215-257_278-307 HLSVLLPEVLTVLGN----L-----E-------DKLIVDGTFGAGGYSRAFLLGG-AR--VVAFDRDARVRPFVE----ALS-LEFPD------R----FQWVNRCFSEMAEGL-AE-----L----GHAS---CDAIVLDIGVSSMQLDEELGELERALEVAETLLKPDGVLAVVTFHSLEDRIVKNFFN-------------DRS-----------------------------------------YT------LITPKAVQA---SEAEIAGN-PRSRS----AKLRAV-- A0A0J9DUL9/14-114_222-268_289-318 ---VLLDEAVDALIW----R--D----------DGIYIDGTFGRGGHSRLILERLGPGGRLVAFDKDPAAISEAG----TI--QDA--------R----FAIEHDSFAQMAQCL-DA-----R----GVER---VAGVLLDLGISSPQIDEELADLETGLKAAFDRLEQGGRLVVISFHSLEDRIVKRFMQ-------------ALARPEQ-------------------------------------LR------LL-GR-VKP---SEAEVSAN-PRARS----AIMRVAER A0A1F4VQK1/14-114_217-288 HIPVLLNEAIDALQV----K-----T-------GQTYIDATLGGGSYSQEIIKRGGN---VLAIDLDPRAVEKSQ---ISIE-----------PN----LKAVQGNYKDLTEITHSN----------GIQT---VSGIVYDLGLSSDQLQNALGNLESSLNQAMGLLMPGGRLVVVSFHSLEDAIVKALSE-------------RSD--------------------------------V----------------SVVGAVIRP---SFKEVADN-PRSRS----AKLRTY-- H1SGH1/17-115_223-269_290-319 ---VLLDEAVEALVW----R-----P-------DGVYVDGTFGRGGHSRAILARLGPAGALVAFDKDPAAIAEAG----TI--KDA--------R----FSIEHTSFAEMSAAL-AG-----R----G--T---VAGILLDLGISSPQIDDELADLESGLSAAYDLLQEGGRLVVISFHSLEDRIVKRFMQ-------------AHARPQQ-------------------------------------LK------LL-GR-VKP---GAEEIAAN-PRARS----AVMRVAEK A0A031I2S5/7-103_204-246_267-295 HIPVLLDEVVAALAP----Q-----P-------GERIVDATFGAGGYTRAILATG-AE--VVAFDRDPDAIRAGR--------AAALP------G----LTLVHSDFSMLEAAL-D-------------AP---VDALTMDIGVSSMQLDQELDELAQGLAAAERVLKPGGRLAIVTFHSLEDRLVKRFLR-------------DRS-----------------------------------------FE------SV-GRGIRA---GEAEVARN-PRARS----ATLRTA-- A0A0M3SW38/17-114_222-267 ---VLLDEAVDALVW----R-----P-------DGVYVDGTFGRGGHSRAVLARLGPEGALVAFDKDPAAIAEAG----TI--KDA--------R----FSIEHASFAAMGERL-AG-----A-------K---VAGVLLDLGISSPQIDDELADLESGLSAAYDLLEVGGRLVVISFHSLEDRIVKRFMQ-------------AHARPQ------------------------------------------------------------------------------------ U3QVE3/17-115_223-269_290-319 ---VLLDEAVDALVW----R-----P-------DGIYVDGTFGRGGHSRAVLARLGPDGALVAFDKDPAAIAEAG----TI--GDA--------R----FSIEHASFADMAERL-AG-----R----G--H---VAGVLLDLGISSPQIDEELEDLERGLKAAYELLQVGGRLVVISFHSLEDRIVKRFMA-------------AHARPQQ-------------------------------------LR------LL-GR-YKP---GAEEVAAN-PRARS----AVMRVAEK A0A1B3ZAV3/6-109_210-252_273-301 HIPVLLDEVLEGLAV----Q-----P-------GSAQVDATFGAGGYTRAILAAG-GR--VFAFDRDPDAIADGQ----ALV-AESGG------A----LTLIAATFSALEAEL-AA-----R----DALP---VDGVVMDIGVSSMMLDRELGELADGLAAAERALGPGGRLAVVTFHSLEDRLVKRFFR-------------ERS-----------------------------------------FE------NV-ARAVRA---GEAELARN-PRARS----ATLRVA-- A0A0P0DFX2/6-109_213-255_276-305 HAPVLLAEVIEALKP----A-----P-------GEVVIDATFGAGGYTRAILATG-AA--VIALDRDPTVQPHAD----AVA-ADFPD------R----FQLVRTPFSGLAQAF-AD-----S----GKAR---LDGAVFDIGVSSMQLDQELGELERGLEAAEATLAPGGRLAVVTFHSLEDRIVKAFLT-------------ERT-----------------------------------------FT------LQFKGAREA---GDEERSAN-PRARS----AKLRAA-- A3RXL9/14-114_222-268_289-318 ---VLRDEAVDALLW----R--D----------DGIYIDGTFGRGGHSRLILERLGPGGRLIAFDKDPAAITEAG----TV--EDA--------R----FAIEHDSFAHLDAAL-DA-----R----GIGR---VAGVLLDLGISSPQIDEELADLETGLKAAFERLEQGGRLVVISFHSLEDRIVKRFMQ-------------ALARPEQ-------------------------------------LR------LL-GR-VRP---SEAEVSAN-PRARS----AIMRVAER A0A072ST86/14-114_222-268_289-318 ---VLRDEAVDALLW----R--D----------DGIYIDGTFGRGGHSRLILERLGPGGRLIAFDKDPAAITEAG----TV--EDA--------R----FAIEHDSFAHLDAAL-DA-----R----GIGR---VAGVLLDLGISSPQIDEELADLETGLKAAFERLEQGGRLVVISFHSLEDRIVKRFMQ-------------ALARPEQ-------------------------------------LR------LL-GR-VRP---SEAEVSAN-PRARS----AIMRVAER F6FY01/14-114_222-268_289-318 ---VLRDEAVDALLW----R--D----------DGIYIDGTFGRGGHSRLILERLGPGGRLIAFDKDPAAITEAG----TV--EDA--------R----FAIEHDSFAHLDAAL-DA-----R----GIGR---VAGVLLDLGISSPQIDEELADLETGLKAAFERLEQGGRLVVISFHSLEDRIVKRFMQ-------------ALARPEQ-------------------------------------LR------LL-GR-VRP---SEAEVSAN-PRARS----AIMRVAER R7X9P7/17-115_223-269_290-319 ---VLLDEAVDALVW----R-----P-------DGVYVDGTFGRGGHSRAVLARLGPDGALVAFDKDPAAIAEAG----TI--KDA--------R----FSIEHASFAAMAERL-SG-----R----G--H---VAGVLLDLGISSPQIDEELEDLERGLKAAYELLQVGGRLVVISFHSLEDRIVKRFMA-------------AHARPQQ-------------------------------------LR------LL-GR-YKP---GPEEVAAN-PRARS----AVMRVAEK Q0K6L6/17-115_223-269_290-319 ---VLLDEAVDALVW----R-----P-------DGVYVDGTFGRGGHSRAVLARLGPDGALVAFDKDPAAIAEAG----TI--KDA--------R----FSIEHASFAAMAERL-SG-----R----G--H---VAGVLLDLGISSPQIDEELEDLERGLKAAYELLQVGGRLVVISFHSLEDRIVKRFMA-------------AHARPQQ-------------------------------------LR------LL-GR-YKP---GPEEVAAN-PRARS----AVMRVAEK A0A0S9NLD2/9-112_216-258_279-308 HAPVLLAEVIEALAP----A-----P-------GDVVIDATFGAGGYTRAILKTG-AQ--VVALDRDPTVQPHAD----AVA-SDFPG------Q----FQLIRTPFSGLAGAF-AD-----S----GKAK---LDGAVFDIGVSSMQLDQELGELERGLEAAEATLAPGGRLAVVTFHSLEDRIVKAFLT-------------ERT-----------------------------------------FT------LQFKGAREA---GDEERSTN-PRARS----AKLRAA-- A0A0K1ZHQ3/14-114_222-268_289-318 ---VLRDEAVDALLW----R--D----------DGIYIDGTFGRGGHSRLILERLGPGGRLIAFDKDPAAITEAG----TV--EDA--------R----FAIEHDSFAHLDAAL-DA-----R----GIGR---VAGVLLDLGISSPQIDEELADLETGLKSAFERLEQGGRLVVISFHSLEDRIVKRFMQ-------------ALARPEQ-------------------------------------LR------LL-GR-VRP---SEAEVSAN-PRSRS----AIMRVAER A0A0X8R283/10-113_214-256_277-305 HDPVLRDEVVAALAI----G-----P-------GERHVDATFGAGGYTRAMLAAG-AE--VIACDRDPDAIAEGQ----ALV-DEAGG------R----LTLIHGRFGEIDRLL-AA-----R----GIDA---IDGIAFDIGVSSMQLDRELDELVAGLEAAERVLRPGGRLAVVSFHSTEDRIVKNFLR-------------ERS----------------------------------------TFH------PP-ARKLRP---GKAEEARN-PRARS----ATLRS--- A0A1E4JMS7/10-113_214-256_277-305 HDPVLRDEVVAALAI----G-----P-------GERHVDATFGAGGYTRAMLAAG-AE--VIACDRDPDAIAEGQ----ALV-DEAGG------R----LTLIHGRFGEIDRLL-AA-----R----GIDA---IDGIAFDIGVSSMQLDRELDELVAGLEAAERVLRPGGRLAVVSFHSTEDRIVKNFLR-------------ERS----------------------------------------TFH------PP-ARKLRP---GKAEEARN-PRARS----ATLRS--- Q46WY6/17-115_223-269_290-319 ---VLLDEAVEALVW----R-----P-------DGVYVDGTFGRGGHSRAVLARLGPDGALVAFDKDPAAIAEAG----TI--QDA--------R----FSIEHESFAAMGERL-AG-----R----G--H---VAGVLLDLGISSPQIDEELEDLERGLKAAYDLLQVGGRLVVISFHSLEDRIVKRFMA-------------AHARPQQ-------------------------------------LR------LL-GR-VKP---GAQEVADN-PRARS----AVMRVAEK C6BEJ1/14-114_222-268_289-318 ---VLLDEAVDALIW----R--D----------DGIYIDGTFGRGGHSRRILERLGPGGRLVAFDKDPAAITEAG----TV--EDA--------R----FAIEHDSFAQMAQCL-DA-----R----GIER---VAGVLLDLGISSPQIDEELADLETGLKAAFDRLEQGGRLVVISFHSLEDRIVKRFMQ-------------ALARPEQ-------------------------------------LR------LL-GR-VKP---SEAEVSAN-PRARS----AIMRVAER V4NLR2/8-111_215-257_282-311 HLSVMLPEVLTVLGN----L-----D-------GKLIVDGTFGAGGYSRAFLRGG-AH--VVAFDRDARVRPFVE----ALN-QEFPG------R----FQWVNRCFSEMAEGL-AE-----L----GHAS---CDAIVLDIGVSSMQLDEELGELERVLEIAQTLLKPDGVLAVVTFHSLEDRIVKNFFN-------------EGS-----------------------------------------YT------LITPKAVKA---SDAEIAVN-PRSRS----AKLRAV-- B2UCY5/14-114_222-268_289-318 ---VLLDEAVDALIW----R--D----------DGIYIDGTFGRGGHSRRILERLGPGGRLVAFDKDPAAITEAG----TV--EDA--------R----FAIEHDSFAQMARCL-DA-----R----GVEQ---VAGVLLDLGISSPQIDEELADLETGLKAAFDRLEQGGRLVVISFHSLEDRIVKRFMQ-------------ALARPEQ-------------------------------------LR------LL-GR-VKP---SEAEVSAN-PRARS----AIMRVAER R0CIX8/14-114_222-268_289-318 ---VLLDEAVDALIW----R--D----------DGIYIDGTFGRGGHSRRILERLGPGGRLVAFDKDPAAITEAG----TV--EDA--------R----FAIEHDSFAQMARCL-DA-----R----GVEQ---VAGVLLDLGISSPQIDEELADLETGLKAAFDRLEQGGRLVVISFHSLEDRIVKRFMQ-------------ALARPEQ-------------------------------------LR------LL-GR-VKP---SEAEVSAN-PRARS----AIMRVAER A0A0Q8QLX1/7-110_211-253_274-303 HIPVLLDEVIAGLDP----K-----A-------GETHVDGTFGAGGYTRAILRTG-AR--VIAFDRDPDAIEAGR----ALE-AGNDG------A----LTLVQDRFSRLAEAL-NE-----R----GVDQ---VDGVTLDIGVSSMQLDQELDELEQGLAAAERVLRPGGRLAVVSFHSIEDRIVKRFLR-------------ERS----------------------------------------SFD------AV-AKPVRA---SEAELARN-PRSRS----ATLRVA-- A0A142JP91/17-115_223-269_290-319 ---VLLDEAVDALVW----R-----P-------DGVYVDGTFGRGGHSRAVLARLGPDGALVAFDKDPAAIAEAG----TI--KDA--------R----FSIEHASFAAMAERL-AG-----R----G--H---VAGVLLDLGISSPQIDEELEDLERGLKAAYDLLQVGGRLVVISFHSLEDRIVKRFMA-------------AHARPQQ-------------------------------------LR------LL-GR-YKP---GAEEVAAN-PRARS----AVMRVAEK A0A0Q5QYH2/2-95_196-238_259-287 ---------LDALAI----A-----P-------GEVHVDATFGAGGYTRGMLAAG-AS--VYAFDRDPDAIAAGR----ALE-AEYDT-----------LTLVPATFSAMEAEL-AA-----R----DAVP---VDGVTMDIGVSSMQLDQELGELADGLAAAERVLKPGGTLAVITFHSGEDRMVKRFLK-------------ERS-----------------------------------------FE------QV-ARAVRA---GDEEIARN-PRARS----ATLRVA-- L1Q6F8/5-108_216-258_279-308 HAPVLLAEVIEALAP----K-----A-------GDVVIDATFGAGGYTRAILERG-AD--VVALDRDPTVQPFAD----AVA-RDFPD------R----FQLIRTPFSGLAEAF-EE-----S----GKAK---LDGAVFDIGVSSMQLDQELGELERGLEAAEATLAPGGRLVVVTFHSLEDRMVKAFLT-------------ERT-----------------------------------------FD------LLFKGAREA---GEAELAAN-PRARS----AKIRAA-- V4PGB9/6-109_213-255_276-305 HISVLLPEVLDALGD----V-----N-------GKLVVDGTFGAGGYSRAILQKG-AT--VIAFDRDARVKPYVD----ALV-ADFPG------R----FHWVNRCFSEMREGL-AD-----L----GHDA---CDAIVLDIGVSSMQLDEELGELERALDVAETLLRPDGVLAVVTFHSLEDRIVKTVFN-------------EKA-----------------------------------------YT------LVTAKAVQA---SDAETAAN-PRARS----AKLRAV-- A0A0C4YE03/2-99_207-253_274-303 ----LLDEAVEALVW----R-----P-------DGVYVDGTFGRGGHSRAILARLGPAGALVAFDKDPAAIAEAG----TI--KDA--------R----FSIEHTSFAEMPAAL-AG-----R----G--K---VAGILLDLGISSPQIDDELADLESGLSAAYDLLQEGGRLVVISFHSLEDRIVKRFMQ-------------AHARPQQ-------------------------------------LK------LL-GR-VKP---GAEEVAAN-PRARS----AVMRVAEK A0A069I224/17-115_223-269_290-319 ---VLLDEAVEALVW----R-----P-------DGVYVDGTFGRGGHSRAILARLGPAGALVAFDKDPAAIAEAG----TI--KDA--------R----FSIEHTSFAEMSDRL-AG-----R----G--K---VTGILLDLGISSPQIDDELADLERGLSAAYDLLQAGGRLVVISFHSLEDRIVKRFMQ-------------AHARPQQ-------------------------------------LR------LL-GR-VKP---GAEEIAAN-PRARS----AVMRVAEK A0A1F8C374/4-106_200-268 HTSVLLSEAIEALHI----N-----K-------GGKYIDATVGAAGHTAAILKAGGV---VLGIDDDPIMLALAKK---KLS-GET--------R----YRLVPGNFRNLKTIA-QG-----Q----GFDR---VDGILFDLGISTIHYADEVENLKAALPQALSLLKTGGRLVVISFHSGEDRIVKEFFG-------------R-----------------------------------------------------FGRPARPVIASQAEVIKN-PSARS----AKMRV--- A0A0F3LLY9/10-113_217-259_280-309 HAPVLLAEVIEALAP----A-----P-------GDVMIDATFGAGGYTRAILKTG-AQ--VVALDRDPTVQPHAD----AVA-DDFPG------Q----FQLIRTPFSGLAQAF-AD-----S----GKAK---LDGAVFDIGVSSMQLDQELGELERGLEAAEATLAPGGRLAVVTFHSLEDRIVKAFLT-------------ERT-----------------------------------------FT------LQFKGAREA---GDEERSTN-PRARS----AKLRAA-- G0EX94/17-115_223-269_290-319 ---VLLDEAVDALVW----R-----P-------DGVYVDGTFGRGGHSRAVLARLGPDGALVAFDKDPAAIAEAG----TI--KDA--------R----FSIEHASFAAMAERL-SG-----R----G--H---VAGVLLDLGISSPQIDEELEDLERGLKAAYELLQVGGRLVVISFHSLEDRIVKRFMA-------------AHARPQQ-------------------------------------LR------LL-GR-YKP---GTEEVAAN-PRARS----AVMRVAEK A0A0A7PI91/10-113_214-256_277-305 HDPVLRDEVLAALAI----A-----P-------GERHVDATFGAGGYTRAMLAAG-AD--VIACDRDPDAIAGGQ----ALV-EEAGG------K----LTLIHGRFSQIDRLL-AE-----R----GIDA---VDGITFDIGVSSMQLDQELDELMAGLNAAERLLRPGGRLAVVSFHSTEDRIVKNFLR-------------ERS----------------------------------------TFE------TP-ARKVRP---GKAEEARN-PRARS----ATLRS--- Q1LIL8/17-115_223-269_290-319 ---VLLDEAVDALVW----R-----P-------DGAYVDGTFGRGGHSRAVLARLGPAGTLVAFDKDPAAIAEAG----TI--KDA--------R----FSIEHASFAEMGDRL-AG-----R----G--P---VAGVLLDLGISSPQIDEELEDLERGLKAAYELLQVGGRLVVISFHSLEDRIVKRFMQ-------------AHARPER-------------------------------------MK------LL-GR-FKP---GAEEVAGN-PRARS----AVMRVAEK A0A132H927/17-115_223-269_290-319 ---VLLDEAVDALVW----R-----P-------DGAYVDGTFGRGGHSRAVLARLGPAGTLVAFDKDPAAIAEAG----TI--KDA--------R----FSIEHASFAEMGDRL-AG-----R----G--P---VAGVLLDLGISSPQIDEELEDLERGLKAAYELLQVGGRLVVISFHSLEDRIVKRFMQ-------------AHARPER-------------------------------------MK------LL-GR-FKP---GAEEVAGN-PRARS----AVMRVAEK F4QHS9/7-110_214-256_277-306 HLSVLLPEVLTVLGN----L-----E-------DKLIVDGTFGAGGYSRAFLLGG-AR--VVAFDRDARVRPFVE----ALS-QEFPD------R----FQWVNRCFSEMAEGL-AE-----L----GHAS---CDAIVLDIGVSSMQLDEELGELERALEVAEILLRPDGVLAVVTFHSLEDRIVKNFFN-------------DRS-----------------------------------------YT------LITPKAVQA---SEAEIAGN-PRSRS----AKLRAV-- V2KB12/17-114_222-268_289-318 ---VLLDEAVDALVW----R-----P-------DGVYVDGTFGRGGHSRAVLARLGPEGALVAFDKDPAAIAEAG----TI--KDA--------R----FSIEHASFAAMGERL-AG-----A-------K---VAGVLLDLGISSPQIDDELADLESGLSAAYDLLEVGGRLVVISFHSLEDRIVKRFMQ-------------AHARPQQ-------------------------------------MK------LL-GR-LKP---GPQEVADN-PRARS----AVMRVAEK D7CY79/10-112_215-289 HAPVMLAECLAHLAV----K-----P-------QAWYLDGTFGAGGHTRALLEAG-GN--VLALDRDPSVTRFLPED--ALA----SG------R----LRFVEGNFDALDRHA-AA-----A----GVGP---LAGVLLDLGVSSMQLDEELGALERALAAAERALAPGGRLVVLTYHSLEDRIVKRAFK-------------SSA--------------------------------L--------LT------PLTKKPLTA---SPEEVAAN-PRARA----AKLRAAE- S9RRS6/14-114_222-268_289-318 ---VLLDEAVDALIW----R--D----------DGMYIDGTFGRGGHSRRILERLGPGGRLVAFDKDPAAISEAG----TI--QDA--------R----FAIEHDSFAQMAECL-DA-----R----GVER---VAGVLLDLGISSPQIDEELADLETGLKAAFDRLEQGGRLVVISFHSLEDRIVKRFMQ-------------ALARPEQ-------------------------------------LR------LL-GR-VKP---SEAEVSAN-PRARS----AIMRVAER A0A124BSP0/14-114_222-268_289-318 ---VLLDEAVDALIW----R--D----------DGMYIDGTFGRGGHSRRILERLGPGGRLVAFDKDPAAISEAG----TI--QDA--------R----FAIEHDSFAQMAECL-DA-----R----GVER---VAGVLLDLGISSPQIDEELADLETGLKAAFDRLEQGGRLVVISFHSLEDRIVKRFMQ-------------ALARPEQ-------------------------------------LR------LL-GR-VKP---SEAEVSAN-PRARS----AIMRVAER A0A0Q5MKI8/10-113_217-259_280-309 HAPVLLAEVIEALAP----A-----P-------GDVVIDATFGAGGYTRAILKAG-AQ--VVALDRDPTVQPHAD----AVA-SDFPG------Q----FQLIRTPFSGLAQAF-AD-----S----GKAK---LDGAVFDIGVSSMQLDQELGELERGLESAEATLAPGGRLAVVTFHSLEDRIVKAFLT-------------ERT-----------------------------------------FT------LQFKGAREA---GDEERSTN-PRARS----AKLRAA-- A5VDD4/7-110_211-253_274-303 HVPVLIDEVIAGLEP----A-----T-------GETHVDGTFGAGGYTRALLQAG-AR--VYAFDRDPDAIAEGR----ALE-DGQDG------R----LILVPERFSRMAEAL-NE-----R----GIDQ---VDGVTLDIGVSSMQLDRELDELEQGLAAAERVLRPGGRLAVVSFHSIEDRIVKRFLR-------------DRS----------------------------------------SFE------AV-AKPVRA---GEAELARN-PRSRS----ATLRVA-- A0A1G2WD65/6-103_207-249_270-299 HISVLLNEVVEHLAI----G-----P-------GDVVVDGTFGAGGYSRAFLATG-AK--VVAFDRDPTVRRFAA----GFP-D---D------R----FRLVEARFSEMDAVL-------------GEGH---ADGVALDLGVSSMQIDQELAELEAGLVAAERVLKAGGRLCVVTFHSLEDRIVKTFLG-------------ERS-----------------------------------------FR------LLFNGAKAP---SEAETAAN-PRARS----AKLRAA-- V4ND13/6-109_213-255_276-305 HISVLLNEVLTVFGN----L-----N-------GKLIVDATFGAGGYTRAFLNAG-AQ--VIAFDRDARVGPYVE----SVS-AEFPE------A----FRFVNRPFSEMKDGL-AD-----L----GVDV---VDGIVADIGVSSMQLDEELGELETALEVSETLLKPEGVLAVVTFHSLEDRMVKTFLT-------------ERA-----------------------------------------YK------LISTKAIAP---SDEELKTN-PRARS----AKLRAA-- A0A192A086/14-114_222-268_289-318 ---VLLDEAVDALIW----R--D----------DGIYIDGTFGRGGHSRRILERLGPGGRLVAFDKDPAAISEAG----TI--QDA--------R----FAIEHDSFAQMAECL-DA-----R----GVER---VAGVLLDLGISSPQIDEELADLETGLKAAFDRLEQGGRLVVISFHSLEDRIVKRFMQ-------------ALARPEQ-------------------------------------LR------LL-GR-VKP---SEAEVSAN-PRARS----AIMRVAER H5WEK8/14-114_222-268_289-318 ---VLRDEAVDALLW----R--D----------DGIYIDGTFGRGGHSRLLLERLGPGGRLIAFDKDPAAITEAG----TV--EDA--------R----FAIEHDSFAHLDAAL-DA-----R----GIGR---VAGVLLDLGISSPQIDEELADLETGLRAAFERLEQGGRLVVISFHSLEDRIVKRFMQ-------------ALARPEQ-------------------------------------LR------LL-GR-VRP---SEAEVSAN-PRARS----AIMRVAER A0A0B4CX50/10-113_217-259_280-309 HAPVLLAEVIEALAP----A-----S-------GDVVIDATFGAGGYTRAILKTG-AQ--VVALDRDPTVQPHAD----AVA-NDFPG------Q----FQLIRTPFSGLAQAF-AD-----S----GKAK---LDGAVFDIGVSSMQLDQELGELERGLEAAEATLAPGGRLAVVTFHSLEDRIVKAFLT-------------ERT-----------------------------------------FT------LQFKGAREA---GDEERSTN-PRARS----AKLRAA-- D8NXV9/14-114_222-268_289-318 ---VLRDEAVDALLW----R--D----------DGIYIDGTFGRGGHSRLILERLGPGGRLIAFDKDPAAITEAG----TV--EDA--------R----FAIEHDSFAHLDAAL-DA-----R----GIGR---VAGVLLDLGISSPQIDEELADLETGLKAAFERLEQGGRLVVISFHSLEDRIVKRFMQ-------------ALARPEQ-------------------------------------LR------LL-GR-VRP---SEAEVSAN-PRARS----AIMRVAER G2ZR03/14-114_222-268_289-318 ---VLRDEAVDALLW----R--D----------DGIYIDGTFGRGGHSRLILERLGPGGRLIAFDKDPAAITEAG----TV--EDA--------R----FAIEHDSFAHLDAAL-DA-----R----GIGR---VAGVLLDLGISSPQIDEELADLETGLKAAFERLEQGGRLVVISFHSLEDRIVKRFMQ-------------ALARPEQ-------------------------------------LR------LL-GR-VRP---SEAEVSAN-PRARS----AIMRVAER L2EB69/17-115_223-269_290-319 ---VLLDEAVDALVW----R-----P-------DGAYVDGTFGRGGHSRAVLARLGPAGTLVAFDKDPAAIAEAG----TI--KDA--------R----FSIEHASFAEMGDRL-AG-----R----G--P---VAGVLLDLGISSPQIDEELEDLERGLKAAYELLQVGGRLVVISFHSLEDRIVKRFMQ-------------AHARPER-------------------------------------MK------LL-GR-FKP---GAEEVAGN-PRARS----AVMRVAEK A0A0Q8MJT4/5-101_205-247_268-296 HTSVLLDEVIAALEP----A-----P-------GKIIVDGTFGAGGYSRGFLATG-AN--VVAFDRDPSARQFAE----GL--G---D------N----FRLVDARFSEMAAEL-------------GERS---VDGVALDLGVSSMQLDQELSELEAGLEAAERVLKVGGRLAVVTFHSLEDRIVKAFFT-------------ARA-----------------------------------------FD------LLFNGARTA---GEAETSAN-PRARS----AKLRV--- A0A172Y2Y0/5-108_212-254_275-304 HAPVLLAEVIEALDP----K-----P-------GDVIIDATFGAGGYTRAILERG-AE--VVALDRDPTVQPFAE----AVA-RDFPD------R----FQLIRTPFSGLAEAF-EE-----S----GKAK---LDGAVFDIGVSSMQLDQELGELERGLEAAEATLAPGGRLVVVTFHSLEDRIVKAFLT-------------ERT-----------------------------------------FD------LLFKGAREA---GEAELAAN-PRARS----AKIRAA-- A0A0F5PE77/7-110_211-253_274-303 HIPVLLDEVIAGLDP----Q-----A-------GETHVDGTFGAGGYTRAILRTG-AR--VIAFDRDPDAITAGR----AFE-AENDG------A----LTLVQDRFSRIAEAL-SE-----R----GVDQ---VDGVTLDIGVSSMQLDQEIDELEQGLAAAERVLRPGGRLAVVSFHSIEDRIVKRFLR-------------ERS----------------------------------------SFE------AV-AKPVRA---GEAEIARN-PRSRS----ATLRVA-- A0A095DFR3/14-117_218-260_281-309 HDPVLRDEVIAALAI----A-----P-------GERHVDATFGAGGYTRAMLAAG-AE--VVACDRDPDAIAEGQ----ALV-AEAGG------K----LTLVHGRFGEIDRLL-AE-----R----GIDA---VDGITFDIGVSSMQLDRELDELVAGLSAAERLLRPGGRLAVVSFHSTEDRIVKNFLR-------------ERS----------------------------------------TFE------TP-ARKVRP---GKAEEARN-PRARS----ATLRS--- E8LKU7/8-109_213-259_281-311 ---VLLNETLAGLNI----N-----P-------DGIYVDATFGRGGHSREILKRLNKNGRLYALDRDLSAIEAAK----SI--ADE--------R----FSIVHARFSQLKEVC-ED-----F----GILGK--VNGILMDIGVSSPQLDDELEELKSALDGSIDVLDKDGRLCVISFHSLEDRIVKTFIR-------------ENSEGP-------------------------------------KLQ------KI-SGAIKA---TDAEISQN-PRSRS----AVLRVAAR A0A0S4TXA0/14-114_222-268_289-318 ---VLRDEAVDALLW----R--D----------DGIYIDGTFGRGGHSRLILERLGPGGKLIAFDKDPAAITEAG----TV--EDA--------R----FAIEHDSFAQMGSAL-DA-----R----GIGR---VAGVLLDLGISSPQIDEELADLETGLKAAFERLEQGGRLVVISFHSLEDRIVKRFMQ-------------ALARPEQ-------------------------------------LR------LL-GR-VRP---SEAEVSAN-PRARS----AIMRVAER M4RYN4/10-113_214-256_277-306 HDPVLIAEVVAGLAP----A-----P-------GEVMVDGTFGAGGYSRALLAAG-AD--VYAFDRDPDAIAEGA----PLV-AANDG------R----LHLIAERFSRMEEAL-AE-----R----GVGP---VDGVTLDIGVSSMQLDRELEELEQGLAAAERVLAPGGRLAIVSFHSLEDRIVKRFLR-------------ERS----------------------------------------SFE------AV-AKPVRA---GEAELARN-PRARS----ATLRVA-- G3A1R5/14-114_222-268_289-318 ---VLRDEAVDALLW----R--D----------DGIYIDGTFGRGGHSRLILERLGPGGRLIAFDKDPAAITEAG----TV--EDA--------R----FAIEHDSFAHLDAAL-DA-----R----GIGR---VAGVLLDLGISSPQIDEELADLETGLKAAFERLEQGGRLVVISFHSLEDRIVKRFMQ-------------ALARPEQ-------------------------------------LR------LL-GR-VRP---SEAEVSAN-PRARS----AIMRVAER A0A127RY51/14-114_222-268_289-318 ---VLRDEAVDALLW----R--D----------DGIYIDGTFGRGGHSRLILERLGPGGRLIAFDKDPAAITEAG----TV--EDA--------R----FAIEHDSFAHLDAAL-DA-----R----GIGR---VAGVLLDLGISSPQIDEELADLETGLKAAFERLEQGGRLVVISFHSLEDRIVKRFMQ-------------ALARPEQ-------------------------------------LR------LL-GR-VRP---SEAEVSAN-PRARS----AIMRVAER A0A1F8IL43/6-109_213-255_276-305 HAPVLLAEVIEALKP----G-----P-------GDVVIDATFGAGGYTRAILATG-AE--VIGLDRDPTVQPHAD----AVA-ADFPG------R----FQLVRTPFSGLAQAF-AD-----S----GKAK---LDGAVFDIGVSSMQLDQELGELERGLEAAEATLAPGGRLAVVTFHSLEDRIVKAFLT-------------ERT-----------------------------------------FT------LQFKGAREA---GEAERSTN-PRARS----AKLRAA-- A0A022FS45/17-115_223-269_290-319 ---VLLDEAVDALVW----R-----P-------DGVYVDGTFGRGGHSRAVLARLGPDGALVAFDKDPAAIAEAG----TI--KDA--------R----FSIEHASFAAMAERL-SG-----R----G--H---VAGVLLDLGISSPQIDEELEDLERGLKAAYELLQVGGRLVVISFHSLEDRIVKRFMA-------------AHARPQQ-------------------------------------LR------LL-GR-YKP---GTEEVAAN-PRARS----AVMRVAEK A0A1G3KXG4/14-117_218-260_281-309 HDPVLREEVIAALAI----V-----P-------GECHVDATFGAGGYTRAMLAAG-AD--VVACDRDPDAIAEGQ----ALV-AEAGG------K----LTLIHGRFGEIDRLL-AE-----R----GIEA---VDGITFDIGVSSMQLDRELDELVAGLNAAERLLRPGGRLAVVSFHSTEDRIVKNFLR-------------ERS----------------------------------------TFE------TP-ARKVRP---GKAEEARN-PRARS----ATLRS--- A0A0B1XW18/14-114_222-268_289-318 ---VLLDEAVDALIW----R--D----------DGIYIDGTFGRGGHSRLILERLGPGGRLVAFDKDPAAITEAG----TV--EDA--------R----FAIEHDSFAQMAPCL-DA-----R----GVER---VAGVLLDLGISSPQIDEELADLETGLKAAFDRLEQGGRLVVISFHSLEDRIVKRFMQ-------------ALARPEQ-------------------------------------LR------LL-GR-VKP---SEAEVSAN-PRARS----AIMRVAER W0A4E5/12-115_216-258_279-308 HIPVLGPEAVAALAI----A-----P-------GETHVDGTFGAGGYTRLMLAAG-AR--VYAFDRDPDAIAEGA----GLV-AEAAG------A----LTLVPERFSQIATAL-GE-----R----GIAP---VDGIVLDIGVSSMQLDRELEELEGGLAAAERALKPGGRLAIVTFHSGEDRLVKNFLR-------------ARS----------------------------------------SFE------AV-AKPVRP---SAEETARN-PRARS----ATLRVA-- A0A142VVQ8/14-117_218-260_281-309 HDPVLREEVIAALAI----A-----P-------GERHVDATFGAGGYTRAMLAAG-AE--VIACDRDPDAIAEGQ----ALV-AEADG------K----LMLIHGRFGEIDRLL-AE-----R----GIGA---VDGITFDIGVSSMQLDRELDELMEGLAAAERVLRPGGRLAVVSFHSTEDRIVKNFLR-------------ERS----------------------------------------TFQ------PP-ARKVRP---GKAEEARN-PRARS----ATLRS--- E8RRY5/6-109_213-255_276-305 HISVLLNEVIAAVAP----E-----S-------GRLVVDGTFGAGGYTRAFLSRG-AE--VIAFDRDARVQPFVE----AVR-GDFGD------R----FRFVNRPFSEMAAGL-AE-----L----GVDR---VDAIVLDIGVSSMQLDEELGELESALEASERLLKPEGVLAVVTFHSLEDRMVKSFLA-------------ERA-----------------------------------------YR------LDSTRAIAP---SEAELSGN-PRARS----AKLRAA-- A0A168N462/10-113_217-259_280-309 HAPVLLAEVIEALAP----A-----P-------GDVVIDATFGAGGYTRAILKTG-TQ--VVALDRDPTVQPHAD----AVA-SDFPG------Q----FQLIRTPFSGLAQAF-AD-----S----GKAK---LDGAVFDIGVSSMQLDQELGELERGLEAAEATLAPGGRLAVVTFHSLEDRIVKAFLT-------------ERT-----------------------------------------FT------LQFKGAREA---GEEERSTN-PRARS----AKLRAA-- A0A0M5IJF4/10-113_214-256_277-305 HDPVLRDEVIAALAI----A-----P-------GERHVDATFGAGGYTRAMLAAG-AA--VVACDRDPDAIAEGQ----ALV-AEAGG------K----LTLVHGRFGEIDRLL-GE-----H----GIEA---VDGVVFDIGVSSMQLDRELDELKGGLEAAERLLRPGGRLAVVSFHSTEDRIVKSFLR-------------ERS----------------------------------------TFH------PP-ARKVRP---GKAEEARN-PRARS----ATLRS--- B3R6W7/17-115_223-269_290-319 ---VLLDEAVDALVW----R-----P-------DGVYVDGTFGRGGHSRAVLARLGPDGALVAFDKDPAAIAEAG----TI--KDA--------R----FSIEHASFAAMAERL-AG-----R----G--H---VAGVLLDLGISSPQIDEELEDLERGLKAAYDLLQVGGRLVVISFHSLEDRIVKRFMA-------------AHARPQQ-------------------------------------LR------LL-GR-YKP---GAEEVAAN-PRARS----AVMRVAEK A0A1F8I5T7/4-107_211-253_274-303 HAPVLLAEVLEALEP----G-----P-------GDVVIDATFGAGGYTRAILEAG-AT--VIALDRDPTVQPFAD----AVA-RDYPE------R----FRLVRTPFSGLAEAF-AE-----S----GEAR---LDGVVFDIGVSSMQLDQELGELRAGLEAAEATLSPGGRLAVVTFHSLEDRIVKGFLT-------------ERS-----------------------------------------FT------LKFKGAREA---GEAEREAN-PRARS----AKLRAA-- A0A0W1F3K5/14-117_218-260_281-309 HDPVLREEVLAALAI----A-----P-------GERHVDATFGAGGYTRAMLVAG-AD--VIACDRDPDAIADGQ----ALV-EEAGG------K----LTLIHGRFGEIDRLL-AE-----R----GIDA---VDGITFDIGVSSMQLDQELDELIAGLNAAERLLRPGGRLAVVSFHSTEDRIVKNFLR-------------ERS----------------------------------------TFE------TP-ARKVRP---GKAEEARN-PRARS----ATLRS--- A0A0N1BLM2/5-108_212-254_275-304 HAPVLLAEVIEALSP----G-----P-------GDVVIDATFGAGGYTRAILATG-AE--VIALDRDPTVQAHAD----AVA-NDFPG------Q----FQLVRTAFSGLSEAF-AD-----S----GKAR---LDGAVFDIGVSSMQLDQELGELTAGLEAAEATLSPGGRLAVVTFHSLEDRIVKAFLT-------------ERS-----------------------------------------FT------LQFKGAREA---GEAELAAN-PRARS----ARLRAA-- M2U2D3/11-112_213-255_276-305 HVPVLLDEVMDAIAP----V-----D-------GAVVVDGTYGAGGYARAALSAGAAR--LIAFDRDPDAAASAR--------QSADA------R----LQVEEDCFSRMDAVL-AA-----R----GVEA---VDVVMLDIGVSSMQLDRELGELDAGLRAAERVLRPGGRLAVVTFHSLEDRAVKRFLR-------------ERS----------------------------------------TFN------RP-AKAVTA---GEAELARN-PRARS----ATLRAA-- A0A1F8I6M1/6-109_213-255_276-305 HAPVLLAEVIEALKP----G-----P-------GDVVIDATFGAGGYTRAILSTG-AE--VIGLDRDPTVQPHAD----GVA-ADYPD------R----FQLVRTPFSGLAQAF-AD-----S----GKAK---LDGAVFDIGVSSMQLDQELGELERGLEAAEATLAPGGRLAVVTFHSLEDRIVKAFLT-------------ERT-----------------------------------------FT------LQFKGAREA---GEGERSTN-PRARS----AKLRAA-- A0A069IWN3/6-109_213-255_276-305 HAPVLLAEVIEALKP----G-----P-------GDVVIDATFGAGGYTRAILSTG-AE--VIGLDRDPTVQPHAD----GVA-ADYPD------R----FQLVRTPFSGLAQAF-AD-----S----GKAK---LDGAVFDIGVSSMQLDQELGELERGLEAAEATLAPGGRLAVVTFHSLEDRIVKAFLT-------------ERT-----------------------------------------FT------LQFKGAREA---GEGERSTN-PRARS----AKLRAA-- A0A1B6ZBU4/6-106_207-249_270-299 HIPVLLEEVVAALAI----T-----P-------GETHVDGTFGAGGYSAEMIEAG-AK--VHGFDQDPDAIAAGQ----TMV-AASDG------K----LELHHALYSDMAEVL-VG------------ID---IDGIALDIGVSSMQIDQELGELEDGLVAAEKLLRPGGRLAVVTFHSLEDRIVKNFLR-------------DRS----------------------------------------TFH------KP-AKAVRP---AGAEQALN-PRARS----ATLRTA-- D8NNL2/14-114_222-268_289-318 ---VLRDEAVDALLW----R--D----------DGIYIDGTFGRGGHSRLLLERLGPGGRLIAFDKDPAAITEAG----TV--EDA--------R----FAIEHDSFAHLDAAL-DA-----R----GIGR---VAGVLLDLGISSPQIDEELADLETGLKAAFERLEQGGRLVVISFHSLEDRIVKRFMQ-------------ALARPEQ-------------------------------------LR------LL-GR-VRP---SEAEVSAN-PRARS----AIMRVAER A0A177RT87/14-114_222-268_289-318 ---VLRDEAVDALLW----R--D----------DGIYIDGTFGRGGHSRLLLERLGPGGRLIAFDKDPAAITEAG----TV--EDA--------R----FAIEHDSFAHLDAAL-DA-----R----GIGR---VAGVLLDLGISSPQIDEELADLETGLKAAFERLEQGGRLVVISFHSLEDRIVKRFMQ-------------ALARPEQ-------------------------------------LR------LL-GR-VRP---SEAEVSAN-PRARS----AIMRVAER A0A0S4VUK5/14-114_222-268_289-318 ---VLRDEAIDALLW----R--D----------DGIYIDGTFGRGGHSRLILERLGPGGRLIAFDKDPAAITEAG----TV--EDA--------R----FAIEHDSFAHLDAAL-DA-----R----GIGR---VAGVLLDLGISSPQIDEELADLETGLKSAFERLEQGGRLVVISFHSLEDRIVKRFMQ-------------ALARPEQ-------------------------------------LR------LL-GR-VRP---SEAEVSAN-PRSRS----AIMRVAER A0A1L3DAR3/14-114_222-268_289-318 ---VLRDEAIDALLW----R--D----------DGIYIDGTFGRGGHSRLILERLGPGGRLIAFDKDPAAITEAG----TV--EDA--------R----FAIEHDSFAHLDAAL-DA-----R----GIGR---VAGVLLDLGISSPQIDEELADLETGLKSAFERLEQGGRLVVISFHSLEDRIVKRFMQ-------------ALARPEQ-------------------------------------LR------LL-GR-VRP---SEAEVSAN-PRSRS----AIMRVAER M4UI43/14-114_222-268_289-318 ---VLRDEAIDALLW----R--D----------DGIYIDGTFGRGGHSRLILERLGPGGRLIAFDKDPAAITEAG----TV--EDA--------R----FAIEHDSFAHLDAAL-DA-----R----GIGR---VAGVLLDLGISSPQIDEELADLETGLKSAFERLEQGGRLVVISFHSLEDRIVKRFMQ-------------ALARPEQ-------------------------------------LR------LL-GR-VRP---SEAEVSAN-PRSRS----AIMRVAER A0A1J0IK46/14-114_222-268_289-318 ---VLRDEAIDALLW----R--D----------DGIYIDGTFGRGGHSRLILERLGPGGRLIAFDKDPAAITEAG----TV--EDA--------R----FAIEHDSFAHLDAAL-DA-----R----GIGR---VAGVLLDLGISSPQIDEELADLETGLKSAFERLEQGGRLVVISFHSLEDRIVKRFMQ-------------ALARPEQ-------------------------------------LR------LL-GR-VRP---SEAEVSAN-PRSRS----AIMRVAER A0A161H750/14-114_222-268_289-318 ---VLLDEAVDALIW----R--D----------DGIYIDGTFGRGGHSRRILERLGPGGRLVAFDKDPAAITEAG----TV--EDA--------R----FAIEHDSFAQMAQCL-DA-----R----GIER---VAGVLLDLGISSPQIDEELADLETGLKAAFDRLEQGGRLVVISFHSLEDRIVKRFMQ-------------ALARPEQ-------------------------------------LR------LL-GR-VKP---SEAEVSAN-PRARS----AIMRVAER A0A1E4QTV8/17-115_223-269_290-318 ---VLLDEAVEALVW----R-----P-------DGAYVDGTFGRGGHSRAILARLGPDGALVAFDKDPAAIAEAG----TI--QDA--------R----FSIEHASFAAMGERL-AG-----R----G--H---VAGVLLDLGISSPQIDEELEDLERGLKAAYELLQVGGRLVVISFHSLEDRIVKRFMA-------------AHARPQQ-------------------------------------LR------LL-GR-VKP---GAQEIADNPPRARS----AVMRAA-- A0A0F0DNR5/14-114_222-268_289-318 ---VLLDEAVDALIW----R--D----------DGIYIDGTFGRGGHSRLILERLGPGGRLVAFDKDPAAITEAG----TV--EDA--------R----FAIEHDSFAQMASAL-DA-----R----GIER---VAGVLLDLGISSPQIDEELADLETGLKAAFERLEQGGRLVVISFHSLEDRIVKRFMQ-------------ALARPEQ-------------------------------------LR------LL-GR-VKP---SEAEVSAN-PRARS----AIMRVAER A0A0W1DWW0/10-113_214-256_277-305 HDPVLREEVIAALAI----A-----P-------GERHVDATFGAGGYTRAMLAAG-AD--VIACDRDPDAIAEGQ----ALV-AEADG------K----LTLIHGRFGEIDRLL-AE-----R----GIDA---VDGITFDIGVSSMQLDRELDELVAGLAAAERVLRPGGRLAVVSFHSTEDRIVKNFLR-------------ERS----------------------------------------TFQ------TP-ARKVRP---GKAEEARN-PRARS----ATLRS--- K6XL98/10-112_216-310 ---VLLQESIDGLAI----K-----P-------DGIYMDATFGRGGHSRQILKALSPKGQLIAFDRDLSAIEAAK----SL-ADDP--------R----FSIHHRPFSELQAVA-EE-----L----GLIGK--IDGILMDLGVSSPQLDDELDEIKTGLKAALNTLAPQGRLAVISFHSLEDRLVKRFVR-------------EQSRGLN----VPHG----M---PI----LQAE--ID---AAKAMK------PI-GKAIKP---SADELKRN-VRARS----SVLRVAEK A0A1G3IIF3/11-116_222-264_285-315 HVPVMLAEVLAALAP----K-----A-------GAIYVDATFGAGGYATALLEAAPRT-AVFGIDRDPEALVAAA----PLA-RRFAG------R----LTLVAGRFGDMVGLL-IG-----A----GVRG---VDGIAFDLGVSSMHLDDELGEIERGLAAAEILLKAGGRLAVVSFHSLEDRAVKTFLA-------------ERS----------------------------------------TFR------LI-AGIRRP---SEAEIATN-PRARS----GRLRAAE- A0A1B4WS34/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----TLAAEDG--------R----FVVVQRSFAELGSEV-AE-----R----GLQGK--VSGILLDLGVSSPQLDDELGDLETGLEAALECLEVGGRLVVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----RHVA-------FEPKIK------VH-GKAQTA---SDAELKAN-PRSRS----AVMRVAEK A0A1F4CE57/10-110_214-306 ---VLLEEAVDALAI----R-----P-------DGAYVDATFGRGGHSRLILGRLGRSGRLVALDRDAEAVAVAT----RI--SDA--------R----FSVVHASFAELAGVL-ER-----L----GLES---VDGVLLDLGVSSPQLDDELAHLSLALPQILELLKPGARLAVISFHSLEDRIVKRFMR-------------DAARAD-----VPIR----L---PL----RARE--L----PQPRLR------LI-GKPVRP---SAEEVAAN-PRARS----ATLRVAER F5S8L6/11-113_217-310 ---VLLHEAVAALNI----Q-----P-------NGVYVDGTFGRGGHSRLILSQLGEQGRLIVFDKDPQAIEVAQ----KLAQQDA--------R----VSVVHNGFATFEAAC-TN-----L----GLDK---IDGALFDLGISSPQVDDELDEVEQVLPQVVNRLNVGGRLAVIAFHSLEDRIVKQFMR-------------QHSSHAP----LPKW----A---AI----KEAD--L----PQPPLQ------LI-GKASKA---SVQEVQHN-PRARS----AVLRVAER F9SHI8/10-111_219-315 ---VLLNESIDGLAI----K-----P-------DGTYIDGTFGRGGHSRTILSKLGENGRLFSIDRDPQAIAEAQ----KI--DDP--------R----FTIIHGPFSGMAEYA-ER-----Y----DLVGK--VDGVLLDLGVSSPQLDDELEEIDTALKGAASILAPEGRLSVISFHSLEDRMVKRFIR-------------KESQGPQ----VPHG----L---PL----TEEQ--IKAL-GSAVLK------PV-GKAIKP---SKGEVDEN-TRSRS----SVLRIAEK A0A1L9ILY9/10-111_219-315 ---VLLHESIDGLAI----K-----P-------DGIYIDGTFGRGGHSRTILSKLGEHGRLYSIDRDPQAIAEAG----KI--DDP--------R----FTIIHGPFSGMAGYA-EQ-----Y----DLVGK--VDGVLLDLGVSSPQLDDELEEIDTALKGAASILAPEGRLSVISFHSLEDRMVKRFMR-------------KESKGPE----VPHG----I---PL----TEAQ--IKAL-GSANMK------TV-GKAIMP---TAQEIELN-PRSRS----SVLRIAEK A0A1C6PEM3/10-112_217-306 ---VMLKEAVDALFP----DGPH-AP---PP--AGTYVDATFGRGGHSRAILARLGPEGRLIAFDKDAEAVAEAA----RI--QDA--------R----FSIRHQGFKDLGELP-PG-----S-----------VSGLLLDLGISSPQIDNELEELQQALEASLVVLKPQGRLAVISFHSLEDRIVKQFIA-------------KHSR-EV----YDRR----A---P-----------FAAP-KAMKLR------SL-GR-VKP---SQAEVDGN-PRARS----AILRVAER A0A1G0K7F6/9-112_216-308 ---VLLNEVLRGLNL----R-----P-------NGFYIDCTFGRGGHSRAVLRSLDSQGRLLIFDKDMTAIDHAK----RLFANDE--------R----VIIIHASFTSLCAVV-KN-----I----HMLGK--VDGVLLDLGVSSPQLDNELDELRSVLSQIREVLRPGGRLVVISFHSLEDRIVKQFMR-------------DAAKGDD----FPPE----I---PV----TIQD-------LAPWFK------LI-NKAVKP---GKEEISRN-PRARS----AILRIGEK A0A1G0K646/9-112_216-308 ---VLLNEVLRGLNL----R-----P-------NGFYIDCTFGRGGHSRAVLRSLDSQGRLLIFDKDMTAIDHAK----RLFANDE--------R----VIIIHASFTSLCAVV-KN-----I----HMLGK--VDGVLLDLGVSSPQLDNELDELRSVLSQIREVLRPGGRLVVISFHSLEDRIVKQFMR-------------DAAKGDD----FPPE----I---PV----TIQD-------LAPWFK------LI-NKAVKP---GKEEISRN-PRARS----AILRIGEK A0A1G1AU21/10-110_215-308 ---VLLKETIAALNV----R-----P-------AGVYVDATFGRGGHSREILARLGRGGRLIALDRDKAAVAAAG----EI--SDP--------R----FTVAHSAFSDIGAVL-AG-----F----GVTH---VDGVLLDLGVSSPQIDEELEELSLTLPQCADLLVPGGRLVVISFHSLEDRLVKRFIR-------------SQQDRDN----LPAN----F---PV----RAVD--L----PPSRLV------AV-GRAIRA---SAQEISAN-PRARS----AVLRVAER A0A149VSQ0/16-116_220-313 ---VLLAEAIDALAI----V-----P-------DGVYVDGTFGRGGHARAILNQLGPHGKLIAFDRDPEAYLIGQ----QW--QDS--------R----LHFVHARFSEMQHKL-SE-----L----GISK---VNGILLDLGVSSPQLDEELEEIEEVLPQTLSLLKEEGRVVVISFHSLEDRLVKQFFK-------------RHSSPPE----IPRG----L---AI----PESQR------PQPLLR------LV-GKSIRA---SENEQQSN-PRSRS----AIMRIAER A0A1G0GTE3/5-109_213-309 ---VLLGEAIAALAI----K-----E-------SGIYVDATFGRGGHSRAILEKLGPQGRLLAIDLDPEAILVAKK---PPFFSDK--------R----FEIEQASFSSIEALI-SK-----R----GWLGK--VDGVLLDLGVSSPQLDDELSALTECLPQIVDVLSPGGRMCVISFHSLEDRIVKQFIQ-------------HEASNDS----YPSH----M---PM----TQAQ--IKEL-QKTRLK------KI-GKSIEA---SAEEIKLN-PRARS----ARLRIAEK B1J1Y2/12-115_219-313 ---VLLDEAVEALAL----R-----A-------DGCYLDGTFGRGGHSRLILSKLGPQGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGAEV-AE-----R----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLAVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----QHKV-------FEPKIR------LI-GKAQFA---SEAELKAN-PRSRS----AVMRVAEK A0A0K1XG94/12-115_219-313 ---VLLNEAVAALAI----K-----P-------EGIYIDGTFGRGGHSRLLLQQLGEAGRLIGFDKDPQAIQTGL----ALAQADP--------R----FTIVQRSFADLAQEI-ES-----Q----QLTAQ--VDGILLDLGVSSPQLDDELGDLEQGLEAAVKVLKPGGKLVVISFHSLEDRIVKQFIR-------------RMEKGEQD--NLPRD----L---PV----ITQR-------FEPILK------AC-GKPQYA---SAEEVLAN-PRSRS----AVMRVAEK A0A1H6N6S4/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSKLGPGGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELAAEV-AE-----R----QMAGK--VNGILLDLGVSSPQLDDELGDLEAGLDAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------RLVKGEAD--NLPRN----L---PV----RHQA-------FEPRIK------VH-GKARFA---SEAELKAN-PRARS----AVMRIAEK A0A1B9YG86/8-112_215-306 HISVLGREAVEMLDP----R-----D-------GGIYVDATFGAGGYSRAILDIPGTQ--VIGIDRDRSAIAGGF----DLV-EQSGG------R----LTLVEDRFSNLAEIC-AA-----Q----GAAA---VDGVVMDVGVSSMQLDQELDELYLALAAAERVLKPGGRLVVVSFHSLEDRIVKDFLN-------------ARGKAGG----GSRH----L---PE----VAQA--------APSFQ------ILTKRPVPP---GEAELAAN-PRARS----AKLRAAE- A0A059FQ49/15-118_222-314 HQPVLLEEVLTWLAP----K-----D-------GDLIVDGTFGGGGYTRAILLAAKCN--VLAIDRDLDAILRAE----KLA-AETP-------R----LTPLLGRFGEMDALV-IN-----A----GHKA---VDGVVLDIGVSSYQIDEELGELARALQAAERLLRPGGRLVVVAFHSLEDRMVKQWLR-------------GRSGKQG---GGSRH----M---PL---AAKGP--------DPTFE------LAVSKAIVP---SDKEVEGN-PRARS----AKLRAA-- Q31I68/15-117_221-313 ---VMLSESVAGLNI----D-----P-------NGIYIDCTFGRGGHSRAILNELGEQGRLLAIDQDPEAIRYADA---NF--DDP--------R----FEIQHGSFEALQQYC-EA-----R----DWVGK--IDGILIDLGVSSPQLDEELDVLKTVLEVSVAVLKTGGRLSVISFHSLEDRIVKQFIR-------------DQSRIKD----LFPD----S---PI----QLEV-------VEPVIK------KV-GKPVFP---SKEECQEN-PRSRS----AVLRIAER A0A1B4AYS0/10-110_218-310 ---VLLDEAVDALVT----R-----P-------DGVYVDGTFGRGGHSRAVLGRLGAAGRLIAFDKDPRAIETAK----GI--EDA--------R----FEIVHDSFAALKGAL-EA-----R----GVGR---VSGVLLDLGVSSPQVDDELADLQVVLEAALSSLEQGGRLVVISFHSLEDRIVKRFMQ-------------THASAPA----VDRR----L---PI----RAVD------LPSPPLK------LL-GR-KFP---SDAEVLAN-PRARS----AVMRIAER A0A1B4AFJ8/10-110_218-310 ---VLLDEAVDALVT----R-----P-------DGVYVDGTFGRGGHSRAVLGRLGAAGRLIAFDKDPRAIETAK----GI--EDA--------R----FEIVHDSFAALKGAL-EA-----R----GVGR---VSGVLLDLGVSSPQVDDELADLQVVLEAALSSLEQGGRLVVISFHSLEDRIVKRFMQ-------------THASAPA----VDRR----L---PI----RAVD------LPSPPLK------LL-GR-KFP---SDAEVLAN-PRARS----AVMRIAER A0A088WWB3/10-110_218-310 ---VLLDEAVDALVT----R-----P-------DGVYVDGTFGRGGHSRAVLGRLGAAGRLIAFDKDPRAIETAK----GI--EDA--------R----FEIVHDSFAALKGAL-EA-----R----GVGR---VSGVLLDLGVSSPQVDDELADLQVVLEAALSSLEQGGRLVVISFHSLEDRIVKRFMQ-------------THASAPA----VDRR----L---PI----RAVD------LPSPPLK------LL-GR-KFP---SDAEVLAN-PRARS----AVMRIAER H0BUG8/10-110_215-304 ---VLLNEAVDALLG----GAGP-EP-------AGTWVDATFGRGGHSRLILLRLGPQGRLVAFDKDPEAIAEAT----RI--TDA--------R----FSIRHEGFRHLADLP-PA-----S-----------AAGVLMDLGVSSPQIDSELEELQQALEASLSVLQPGGRLVVISFHSLEDRIVKQFIA-------------KHSK-EV----YDRR----A---P-----------FAAP-QAMKLV------AL-DR-IKP---SVAEIEAN-PRSRS----AIMRVAER A0A1E8F9P6/10-112_216-310 ---VLLQECLDGLAI----K-----P-------DGIYIDATFGRGGHSGEILKQLGDNGRLIAFDRDPQAIEAAA----RF-ADDA--------R----FQIVHSAFGDMAEVI-AG-----M----GLTGQ--IDGVLMDLGVSSPQLDDELDQLRVGLKAATGILKPGGRLAVISFHSLEDRLVKRFMK-------------EQSKGKA----LPPG----L---PV----TQAE--ID---ADKVLT------LI-GKAIKP---GDEELKHN-VRSRS----AVLRVAEK A0A1J8PMR3/10-113_217-310 ---VLLTEVIENLVL----D-----K-------DGIYVDATFGRGGHAGQILQRLSDKGRCIAIDKDPAAIAFGI----KQWGHDK--------R----FKIYQGSFNQLKTMA-ER-----E----GVINK--VSGILFDLGVSSPQLEKELEDLNVSLGQSIDVLKQGGRLLVISFHSLEDRIVKRFIR-------------QHAHEAV----ELKK----L---PF----MPAE--W----KRPRLK------KI-GRGVKP---DAYAIKTN-PRSRS----ALLRIAEK A0A0J5P8H2/11-112_218-312 ---VLLHEAVAGLAI----K-----P-------EGIYIDGTFGRGGHSRLILSQLSPQGRLIAIDRDPRAIAEAK----TI--QDP--------R----FRIIHSAFSALPDIC-QS-----L----DLVGK--IDGVLLDLGVSSPQLDEELDELEKALQSALSVLAPQGRLSIISFHSLEDRMVKQFMR-------------KHSKGEA----VPKG----L---PI----LESE--LT---KNIPLK------TI-GKAVMP---SEVEIAAN-PRSRS----AVLRIAEK A0A0F4QPR8/10-112_216-310 ---VLMAETLDALNI----Q-----P-------DGTYIDGTFGRGGHSGEILKRLNEQGRLQAIDQDPQAIAAAQ----KF-ADDP--------R----FSIAHNRFSHIESVA-RD-----A----GLLGK--VDGILLDIGVSSPQLDDELEEIQTALQAALAVLKPGGRLVVISFHSLEDRIVKQFIK-------------KQSKGEA----VPRG----L---PL----TDAQ--LK---QNLTLK------AV-GKAIKP---SQAEIDAN-PRARS----SVLRIAEK A0A0D0KNU7/10-113_217-311 ---VLLEEAVDGLSL----R-----A-------DGCYVDGTFGRGGHSRLILDRIGPGGRLLGFDKDPLAIATGN----TLAAEDG--------R----FVVVQRSFAELADEL-AV-----R----DLGGR--VSGVLLDLGVSSPQLDDELGDLERGLDAALESLEVGGRLVVISFHSLEDRIVKLFMR-------------KHAKGEMD--KLPRD----L---PI----IPKA-------FEPRLK------LI-GKPQFA---SEAELKAN-PRSRS----AVMRVAEK A0A0X3Y910/9-111_216-310 ---VLLQEALDGLAI----K-----P-------DGCYLDGTFGRGGHSRAILSLLGPQGRLFAIDRDPTAIAAAE----LL-KADP--------R----FHITHSPFAALATIA-EQ-----L----HITGA--LDGILLDLGVSSPQLDDELEQVNQALQAAMQVLKPGGRLVVISFHSLEDRLVKQFMR-------------RYAKGEP----VPRG----I---PL----TAAQ--MQ---QRTELT------LI-GKAIMP---SEQELEAN-PRARS----AVLRIAEK F1ZD60/10-115_216-307 HIPVLIDEVLVALGA----G-----P-------GMTMVDGTFGAGGYSRALVAAG-AR--VHAFDRDPDAIAAGR-----LL-AECAGED---PQ----LVLHHRRFSELAEGL-AE-----A----GVEQ---VDGVVFDIGVSSMQLDQELDELTAGLAAAERVLAPGGRLAVVTFHSLEDRIVKQFLR-------------EAAGLVP---AGSRH----L---PV---LASTA--------RPVFE------KP-SSPIRP---GEEELARN-PRARS----ATLRWA-- A0A0P9IRU2/10-113_217-311 ---VLLEEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSHLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSEA-LE-----R----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAAMEALEEGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QYKA-------FEPKIK------IH-GKAQFA---SDTETKAN-PRSRS----AVMRVAEK A4SI48/10-111_215-309 ---VLLHEAVEGLAI----K-----P-------DGIYVDGTFGRGGHSRLILQHLGPNGRLIAIDRDPQAIAEAA----KI--QDP--------R----FEIVHGPFSGIVSYL-DE-----R----GLLGK--VDGFLLDLGVSSPQLDDELDEIETALNGALQALAPEGRLSVISFHSLEDRLVKHFIR-------------KHEKGPE----VPRG----I---PL----TEAQ--LA---GGRKLK------SV-GKALKP---SEHEVTEN-SRSRS----SVLRVAQR A0A023E8I9/10-111_215-309 ---VLLHEAVEGLAI----K-----P-------DGIYVDGTFGRGGHSRLILQHLGPNGRLIAIDRDPQAIAEAA----KI--QDP--------R----FEIVHGPFSGIVSYL-DE-----R----GLLGK--VDGFLLDLGVSSPQLDDELDEIETALNGALQALAPEGRLSVISFHSLEDRLVKHFIR-------------KHEKGPE----VPRG----I---PL----TEAQ--LA---GGRKLK------SV-GKALKP---SEHEVTEN-SRSRS----SVLRVAQR A0A0Q6BMQ3/26-126_231-324 ---VLLHEAVDALNV----R-----A-------DGVYVDGTFGRGGHSRLILSRLGSQGRLIALDRDLAAIAHAK----SI--SDT--------R----FNIAHAHFSGMTEVL-AE-----L----GVEA---VDGILLDLGISSPQIDEELEELSLVLPDCLRLLRERGRLAVISFHSLEDRIVKRFIQ-------------SEMDRDN----LPAG----L---PV----RAKD--I----PQPRLI------SV-GKATKP---SQAEVSAN-VRSRS----AVLRVAER A0A0E3ZRA7/15-116_226-320 ---VLLHEAVEGLAL----K-----E-------KGIYIDGTFGRGGHSRLILSQLTDNGRLIAIDRDPRAIAEAN----KI--QDP--------R----FHIEHNSFSAIPEIC-EK-----L----GLTGK--IDGILLDLGVSSPQLDEELEELESVLQSALTVLAEKGRLSIISFHSLEDRMVKHFMR-------------KQSKGES----LPKG----L---PL----REDQ--IQ---KTQTLK------TI-GKAIMP---SEQEQALN-PRSRS----AVLRVAEK A0A172WLE2/12-115_219-313 ---VLLDEAVAALAV----R-----P-------DGRYLDGTFGRGGHSRLLLRQLGPDGCLLGFDKDPLAIATGQ----ALAAEDG--------R----FVVVQRSFAELGAEL-AQ-----R----GWTGT--LSGVLLDLGVSSPQLDDELGDLEAGLEASLEALDVGGRLVVISFHSLEDRIVKQFMR-------------RHAKGEAD--TLPRD----L---PI----IPEK-------FVPRLK------LL-GKPQYA---SAEEVKAN-PRSRS----AVMRVAEK A0A1G0CU16/10-110_214-307 ---VLLNEAVEALAI----K-----P-------DGIYVDGTFGRGGHSAEILKRLSGKGKLIALDKDPAAVAAGN----AW--RDA--------R----FRMVHRGFAHLAEVL-RE-----L----DVAR---VDGILLDLGVSSPQLDDELEELARVLPECVTHLKTGGRLVVISFHSLEDRIVKRFMR-------------DMAEGDK----LPRD----V---PI----RASE--V----PQGRMH------LA-GKAVRA---SEAEVRAN-PRARS----AVMRVAER V4YQ94/10-106_211-300 ---VLLEEAVEALHI----Q-----P-------SGRYIDATFGRGGHSALVLKHLGKQGSLLGVDRDPQAVTHAQ----TW--TDE--------R----FAIRHQAFHTIADLP-EA-----S-----------VDGLLMDLGVSSPQLDDELEELQQALDASLRLLKPNGRLVVISFHSLEDRIVKQFIV-------------KHSR-EV----VDRR----A---L-----------FATP-PPLRLV------AL-GR-VRA---SAAEVAGN-PRSRS----AVMRVAKR G3IUI4/6-110_214-307 ---VMFAEALQQLAI----K-----E-------DGVYLDCTFGRGGHSQGILNLLGPSGRLLAFDRDLDAINSDYA---QAMLEDK--------R----FKLKHTHFSALENIV-VS-----E----GLAGK--VDGILMDLGVSSPQLDNELDELKAVLQQSARILKPGGRLVVISFHSLEDRIVKRFIR-------------AESGAKY----NPGK----L---PI----KEID--I----AKGILK------IT-GKALKA---GAQEIAQN-PRARS----AVMRVAER A0A176IMR8/11-109_213-304 HTPVLLRPILNAVAP----V-----E-------G-VWLDGTFGAGGYTRGFLEAGAAR--VIAVDRDPLAFEMAA----EWA-GDYGD------R----ITMQQGVFSRMDEYA---------------QD---LDGVVLDLGVSSMQLDQEYGELFQGLMAAERALKPGGKLAVVTFHSVEDRMVKRFLT-------------ARAGAGG---NANRF----A---PA----LEQE--------APQFK------LKSRKAIGP---DAQELDEN-PRSRS----AKLRVA-- A0A0G3XJG3/6-111_212-303 HIPVLLDEVIAALNP----K-----P-------GSVIIDATFGAGGYSRALLDAG-AT--VHGFDRDPDAIAAAR-----QW-EETAGEN---PR----LVLHARRFSEMLDAM-QA-----S----GVAA---VDGVVMDIGVSSMQLDQELDELAAALSASEALLKEGGRLAVVSFHSLEDRIVKRFMR-------------DAANAGA---APSRH----M---PN---IAPTH--------AATFA------KP-MKAVRP---GKVELARN-PRSRS----AVLRAA-- A0A0A2Y944/14-115_225-319 ---VLLNEAVDGLAI----K-----P-------NGIYIDGTFGRGGHSRRILSLLGEQGRLIAIDRDPQAIAAAQ----SI--QDP--------R----FSIEHHNFSEINEIC-EK-----Y----QLIGK--IDGILLDLGVSSPQLDQELEELEKILTAAIDVLAPQGRLSIISFHSLEDRLVKRFMK-------------KQSKGDD----IPRG----L---PL----TEDQ--IE---RNQKLK------II-SKAIMP---SEQEIAVN-SRSRS----AVLRIAER A0A157L0S1/43-132_236-328 -------------------------Q-------RGIYVDGTFGRGGHSRELLSRLGPEARLVVFDKDPQAIAVAH----ELAAADS--------R----VTVVHNGFVTVAQEL-EA-----L----GIGR---IDGLMMDLGVSSPQIDDELEELAGALASALGLLAPGGRLAVISFHSLEDRMVKQCIA-------------AAARPAA----AYSR----L---PL----RESE--L----PQPILK------SL-GR-VLA---DDEEVAGN-PRARS----AVLRVAER A0A107A7X6/10-110_218-310 ---VLLDEAVDALVT----R-----P-------DGTYVDGTFGRGGHSRAVLGRLGAAGRLIAFDKDPRAIETAQ----GI--EDA--------R----FSIVHDSFASMQGAL-AA-----R----GVEK---VSGVLLDLGVSSPQVDDELADLQVVLDAALSLLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLK------VI-GR-KFP---SDAEVAAN-PRARS----AVMRIAER A0A1A9NKD1/19-119_224-317 ---VLLQEAVEALNV----R-----P-------DGIYVDGTFGRGGHSRAILAKLGEQGRLIALDRDLAAVEAAK----AV--DDK--------R----FTLVHSGFSRMQEVL-AD-----L----GIAK---VDGVLLDIGISSPQIDEELEELSLTLPQCADVLAPGGRLAVIAFHSLEDRIVKRFIR-------------AQQDRDN----LPSR----F---PV----RASE--L----PPSRMV------AV-GKAIRP---SEAEVKAN-PRSRS----AVLRVAER A0A0Q0V5F4/10-108_210-299 HIPVLIRPLIAAVSP----V-----S-------G-VWLDGTFGNGGYTRALLAAGADK--VIGVDRDPLAFEMAA----DWI-ADYGD------R----IETVAGVFSKLDEYG---------------AD---LDGVVLDLGVSSMQLDL-YGELAEGLMAAERALKPGGQLAVVTFHSVEDRMVKRFLQ-------------ARSGNTA---NANRY----A---PE----TAQV--------TPAWR------IEKRKAIGP---DEQELAEN-PRSRS----AKLRV--- D6CRA4/17-117_222-316 ---VLLHEAVDQLIT----N-----P-------DGVYLDATFGRGGHSREILRRLSPAGRLIAIDRDPQAIEAAA----QI--HDA--------R----FVIKHAPFSEFARVL-HE-----Q----GVAQ---ADGLLFDLGVSSPQLDQELAQIETALSQVLDCLRPGGRLAVISFHSLEDALIKRFIH-------------RHARAPA----VDRR-QPFV---PG----VSAE-------FQPQLK------EV-VR-MRP---SAAEISGN-ARSRS----AMLRVAQR A0A160SLH6/17-117_222-316 ---VLLHEAVDQLIT----N-----P-------DGVYLDATFGRGGHSREILRRLSPAGRLIAIDRDPQAIEAAA----QI--HDA--------R----FVIKHAPFSEFARVL-HE-----Q----GVAQ---ADGLLFDLGVSSPQLDQELAQIETALSQVLDCLRPGGRLAVISFHSLEDALIKRFIH-------------RHARAPA----VDRR-QPFV---PG----VSAE-------FQPQLK------EV-VR-MRP---SAAEISGN-ARSRS----AMLRVAQR A0A0D7PS01/68-172_275-366 HVPVLGREAVDFLAP----R-----T-------GGIYVDATFGAGGYSRAILDIAGTR--VIGIDRDRTAILDGF----DLV-DRAGG------R----LTLVEDRFSDLADVC-AA-----Q----GLEA---VDGVVMDVGVSSMQLDQELDELHLALSAAERVLKPGGRLVVVSFHSLEDRIVKNFFI-------------ARGKAST----GSRH----R---PE----VAQS--------APSFQ------ILTKRPVTA---DDAEVAAN-PRSRS----AKLRAAE- A0A0G3GKU1/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSQLGPGGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGAEV-AG-----R----GLAGK--VSGVLLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------KLTKGEAD--NLPRN----L---PV----RFEA-------FVPKIK------IH-GKAQFA---SEAELKAN-PRARS----AVMRVAEK X5ESX0/1-102_206-299 ----MLDEAVDALAV----R-----E-------DGVYVDGTFGRGGHSRLILSRLGDAGRLIVFDKDPQAIAVAE----ELARSDK--------R----VGVVHGGFASFQTAL-DG-----L----GIGK---VDGALFDLGISSPQIDDELEEVGAVLPQVMCRLKEGGRLAVIAFHSLEDRIVKQFVK-------------KYSQHAP----LPRW----A---AV----READ--L----PEPPLK------IV-GRALKP---GEAEIAAN-PRARS----AVLRVAER A0A178I2B8/15-116_219-308 HVPVLLDAVLAALSP----E-----P-------GRRIVDGTFGAGGYSRALLQAG-AH--VIGIDRDPSVAPHVA----ALE-AEFPD------T----FTFVPGTFSELDSLA--------A----GHGP---VDGVVLDIGVSSMQLDEEFEQLVEGLFAAERLLPEGGRLAVVSFHSLEDRIVKRYFD-------------PGKG-GP---AQSRH----L---PQ-----------A---ETEPLR-----WHEVAKAVKA---GAGELARN-PRARS----AVLRSA-- A0A1B4V1A1/9-112_216-307 ---VLLDEVLQALNV----G-----P-------ESVVVDATYGRGGHAEAIVNRLGESGRLLALDRDPEAVADAR----RRLGADP--------R----VAIEHGSFSQLQKRC-DR-----H----GITGR--VTGLLFDLGVSSPQLEAELEELDAALPQAVRVLAPGGRLAVISFHSLEDRRVKHFLR-------------GEARAPE----LPPG----I---PV----APAFH--------PRFR------LL-GRPLRP---SADEMRRN-PRSRS----ALLRVAER A0A1G0KXQ7/8-110_214-306 ---VLLDESLEALSI----R-----P-------EGRYLDATFGRGGHSGAILERLGPNGALLAIDKDPAALACGR----ELFGKDE--------R----FRIVQGSFARLAERV-AE-----A----GW-GK--LDGVLMDLGVSSPQLDDELDDLRKGLEQSLEVLGSGGRLVVISFHSLEDRIVKRFIR-------------DQARGDD----LPRG----V---PV----RADQ--LN-----CRLR------PA-GGAVTP---SAEEVAAN-PRARS----AVLRAAER A0A0N8QXD0/10-113_217-311 ---VLLEEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSHLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSEV-QE-----R----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALDTLEIGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRD----L---PI----QFKL-------FEPKIK------IH-GKAQFA---SDAETKAN-PRSRS----AVMRVAEK A0A0P9M7P4/10-113_217-311 ---VLLEEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSEA-QE-----R----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QFKP-------FEPKIK------IH-GKAQFA---SDVETKAN-PRSRS----AVMRVAEK A0A119DGS1/10-110_218-310 ---VLLDEAVDSLVT----R-----P-------DGIYVDGTFGRGGHSRAVLARLAPAGRLIAFDKDPRAIETAQ----RI--EDA--------R----FSIVHDSFASMRDAL-AA-----R----GVEK---VSGVLLDLGVSSPQVDDELADLQVVLDAALSLLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLK------II-SR-QFP---SDAEVAAN-PRARS----AVMRIAER V4JKA6/10-112_216-310 ---VLMDETLDALDI----K-----P-------SGTYIDGTFGRGGHSGQILKRLGESGRLQAIDQDPQAIQAAQ----KF-AQDT--------R----FSIAHNRFSNIAQVA-SE-----A----GLTGK--VDGILLDIGVSSPQLDDELEEIQTALSASLDVLKPGGRLVVISFHSLEDRIVKQFIK-------------KQSKGEA----IPRG----L---PL----TDDQ--IN---KNLTLK------AI-GKAIKP---SKTEINNN-PRARS----SVLRIAEK A0A176EEE0/6-111_212-301 HIPVLLDEVIAALDP----Q-----P-------GDVVIDATFGAGGYTRALLERG-AT--VHAFDRDPDAIAAGE-----AW-PETKVDP---PR----LVLHPHRFSEMAEVM-TA-----A----GVAR---VDGVVMDIGVSSMQLDQELDELSHGLSAAERLLCEGGRLAVVSFHSLEDRIVKRFLR-------------EASSTPS---A-SRH----V---PL----AAQD--------DPVFL------QV-SKAIKP---GEAEIERN-PRARS----SVLRHA-- A0A0N0JJV1/7-112_213-304 HIPVLLDEVIAALAP----R-----P-------GEVIVDGTFGAGGYTRAILAQG-AT--VHAFDRDPDAITAGR-----LW-PETQGAA---PT----LVLHPRRFSEMATAL-AE-----A----GVGQ---VQGVVLDIGVSSMQLDQELDELRAALDAAERLLAPGGRLAVVSFHSLEDRIVKQFLR-------------EAAGATP---AGSRH----L---PP---QAQAF--------AAVFE------KP-SAAIRP---GPEEEARN-PRARS----ATLRWA-- K5XHJ6/12-115_219-313 ---VLLDEAVAALAV----R-----P-------DGRYLDGTFGRGGHSRLLLEQLGPQGRLLGFDKDPLAIATGQ----ALAAEDG--------R----FVVVQRSFAELGDEV-VQ-----R----GWTGT--LSGILLDLGVSSPQLDDELGDLEAGLDAALEALEVGGRLVVISFHSLEDRIVKQFMR-------------RHAKGEAD--QLPRG----L---PV----MPKP-------FEPRLK------LI-GKAQFA---SEAEVRAN-PRSRS----AVMRVAEK A0A0K9L4W2/15-116_226-320 ---VLLHEAVNGLAL----K-----E-------NGIYIDGTFGRGGHSRLILSQLSSNGRLIAVDRDPRAIAEAH----KI--QDS--------R----FQIEHNSFSHIPEIC-DK-----L----NLVGK--IDGILLDLGVSSPQLDEELDELESLLNSALDMLAPEGRLSIISFHSLEDRMVKHFMK-------------KQSKGED----IPKG----L---PL----REDQ--IQ---RNQKLR------II-GKAIQP---SDAEIQAN-PRSRS----AVLRVAER A0A158KWR2/14-114_222-314 ---VLLQEAVDGLIT----R-----T-------DGIYIDGTFGRGGHSRAILQRIGEAGRLIAFDKDPLAIATAQ----QI--QDS--------R----FSIVHDSFAVLRDAT-SE-----R----GVER---VSGVLLDLGVSSPQVDDELAELQVVLESALALLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLR------VV-GR-VFP---SEAEVSAN-PRARS----AVMRIAER H3NY76/9-107_211-303 ---VLLAESVSALSV----R-----A-------DGSYLDGTFGRGGHSREILSLLSPSGQLMAVDKDPAAEASAK----AFA-DDS--------R----FKFVAGSFADISNFV-S-------------DGS--LDGILLDLGVSSPQLDDELEDLELALSSMVDKLVIGGRLVVISFHSLEDRIVKRFMR-------------DQARGVQ----LPRH----V---PV----VDSD-------AGKTLN------LI-GKAIKP---SDEEVARN-PRSRS----AVMRVAER Q3K736/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSKLGPDGRLIGFDKDPQAIATGQ----TLAAEDG--------R----FVVVQRSFAELGSVV-AE-----R----GLTGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALECLEVGGRLVVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----RHVA-------FEPKIK------VH-GKAQTA---SDAELKAN-PRSRS----AVMRVAEK A0A0P9UMR5/10-113_217-311 ---VLLEEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILNHLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSQA-QE-----L----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAAMESLEVGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QYKA-------FEPKIK------IH-GKAKFA---SDVETKAN-PRSRS----AVMRVAEK A0A1E7VLY2/14-117_221-313 ---VLLDEAVDALALDG-AR-----A-------DGVYVDGTFGRGGHSRLILSKLGAKARLIAFDKDLQAIATAE----QI--TDP--------R----FTIVHDSFATMHAAL-AE-----R----GVAQ---VDGILLDLGISSPQVDDELEDLEIGLTQAWNSLAPGGIIAIISFHSLEDRMVKRFFA-------------SKANVEQ----PDRR----L---PI----RAVD------LPQPELK------LL-AK-FKP---SDAEIDAN-PRARS----AVMRVARR A0A1G0I344/11-113_219-311 ---VLLQEAVDYLVG----S-----P-------DGVYVDATFGRGSHTREILQRLSSQGRLIAFDKDLDAVTYAR---NNI--QDA--------R----FSIFHCSFASMQLVL-TE-----L----HLAQK--IHGILFDLGVSSPQLSEELVELEEGLLTALLVLMRHGRLVAISFHSLEDRIVKQFIR-------------QHEKGVA----LPRG----L---PI----KGEP-------FQGRMK------TV-TGHIKP---SLDEMHAN-PRARS----AILRVSEK A0A1E3MUH6/10-111_218-314 ---VLLNESVDGLAI----K-----P-------DGIYVDGTFGRGGHSRHILSQLGENGRLYAIDRDPRAIEEAS----TI--KDP--------R----FQIIHGPFSGIETYL-TD-----L----ELAGK--VDGVLLDLGVSSPQLDDELDEIELALQGALAVLAPQGRLSVISFHSLEDRMVKRFIR-------------KQSKGPE----VPRG----V---PL----TEAQ--IAEL-GSAAMK------PI-GKAIKP---SSQEIEHN-ARARS----SVLRVAEK A0A1J4QG33/10-111_215-309 ---VLLHEAVDGLNI----K-----S-------DGIYVDGTFGRGGHSRHILSQLGPEGRLLAIDRDPQAIAEAA----KI--DDP--------R----FQILHGPFSRLAEMM-DE-----Q----GLTGR--IDGVLLDLGVSSPQLDQELEEIEQALNGAMQVLAPGGRLSVISFHSLEDRLVKHFIR-------------KQEKGPE----VPPG----L---PL----TEAQ--LA---GGRLLK------SI-GKARKP---SAAEVEAN-PRSRS----SVLRVAER G2KMC3/8-113_220-262_284-312 HIPVMLDEVLTALAP----V-----A-------GETYVDGTFGAGGYSRATLDRAPGC-RIVGIDRDQTAHDRAV----AWK-DTYGD------K----LILLHGTFGNVRDLL-DQ-----A----GIDR---VQGFMLDIGVSSMQID-NLGELERALAASEHILEEGGRLVVVTFHSLEDRIVKNFFK-------------TRSG----------------------------------------FR------LTQRKAIDP---TDAETRRN-PRSRS----AKLRS--- A0A1F4PGD3/33-116_221-310 -------------------------Q-------APVFVDATFGRGGHSRLILSRLPADARLIAFDKDLDALAEAA----TI--TDP--------R----FSIRHQGFSHLGELP-PA-----S-----------VAGVLLDLGISSPQVDNELEELQQALAATLRVLQPGGRLVVISFHSLEDRIVKQFLT-------------KHSR-EV----FDRR----A---P-----------FAAP-QVMQFK------VL-AR-VKP---GAAEVAAN-PRSRS----AIMRVAAR I8UAH5/9-111_216-310 ---VLLAETLAGLAI----K-----A-------DGIYLDGTFGRGGHSREILQQLGPNGRLYAIDRDPAAIAAAA----PL-QADA--------R----FHITHSPFAALAQIA-EQ-----Q----QIVGK--IDGILLDLGVSSPQLDEELEQVNQALQGALAVLKPGGRLCVISFHSLEDRLVKQFMR-------------RHSKPAA----LPRG----L---PL----TNAQ--LQ---QAVPLK------LI-GKAIMP---SDAELAEN-PRARS----AVLRIAER A0A097AVK8/10-111_219-315 ---VLLHESIDGLAI----K-----P-------DGTYIDGTFGRGGHSRQILSQLGEQGRLFSIDRDPQAIAEAQ----TI--DDP--------R----FTIIHGPFSGMAKYA-EE-----R----GLVGQ--VDGVLLDLGVSSPQLDDELEEIDTALKGAASILAPEGRLSVISFHSLEDRMVKRFIR-------------KESKGPE----VPHG----I---PM----TEAQ--IKAL-GSANLK------PI-GKAIKP---SKQEVDIN-TRSRS----SVLRIAEK U0EVM3/10-111_219-315 ---VLLHESIDGLAI----K-----P-------DGTYIDGTFGRGGHSRQILSQLGEQGRLFSIDRDPQAIAEAQ----TI--DDP--------R----FTIIHGPFSGMAKYA-EE-----R----GLVGQ--VDGVLLDLGVSSPQLDDELEEIDTALKGAASILAPEGRLSVISFHSLEDRMVKRFIR-------------KESKGPE----VPHG----I---PM----TEAQ--IKAL-GSANLK------PI-GKAIKP---SKQEVDIN-TRSRS----SVLRIAEK A0A0T6VAA6/12-115_219-313 ---VLLDEAVAALAV----R-----P-------DGRYLDGTFGRGGHSRLLLRQLGPEGCLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGEEV-AQ-----R----GWSGT--LSGILLDLGVSSPQLDDELGDLETGLEAALEALEVGGRLVVISFHSLEDRIVKQFMR-------------RHAKGEAD--TLPRD----L---PI----IPKA-------FVPRLK------LL-GKPQYA---SAEEIKAN-PRSRS----AVMRVAEK A0A193G1F2/42-131_235-327 -------------------------L-------EGVYVDGTFGRGGHSSALLQRLSPRARLVVFDKDPAAIAVAG----QLAASDA--------R----VTVVHDGFATMREAL-AD-----L----GVHK---VDGVMLDLGVSSPQLDDELEELSRALASALDLLAPMGRLAVISFHSLEDRMVKQFIA-------------AAARPGA----AHSR----L---PL----RESE--M----PQPLLR------SL-AR-VLA---DADEVALN-PRARS----AVLRAAER T0AXE8/10-110_214-307 ---VLLQEAVDALEI----K-----A-------DGIYVDGTFGRGGHSLAVLERLGPEGRLIAFDRDPAAIAAGQ----AL--GDA--------R----LTLVHSAFSALDEAL-DE-----L----GVAQ---VDGVLLDLGVSSPQLDDELEELTRVLPVCVRRLRTDGRLAVISFHSLEDRIVKRFMR-------------DESRPPV----LPAR----L---PI----RAAD--L----PQPRLR------LI-GKAMRP---GAAEVSVN-ARARS----AVLRVAER B3PCM8/9-112_216-308 ---VLLGEAVEALVS----N-----P-------EGTYIDGTFGRGGHSALILQHLASEGRLLAIDKDLAAIATAR----EKFATDA--------R----FAIAHDSFASLKNLA-AE-----R----GLVGR--VQGILLDLGVSSPQLDEELEDLEAVLAQAVDVLAPGGRLVVISFHSLEDRLVKRFIR-------------QQEQGDP----VPKG----L---PL----REAQ-------LNKTMR------SL-GKAMKA---SDQEVEAN-VRSRS----AVMRVAEK A0A0R2U648/8-111_215-307 ---VLLKEAVEALMV----D-----V-------DGFYIDGTFGRGGHTAELLSCLSERAVVWAIDKDPQAISEGQ----VRFQEDG--------R----LRFVHGSFADLTTIL-RA-----E----GRVGE--LSGVLLDLGVSSPQLDEELEDLESLLDQIIDALKVGGRLVVISFHSLEDRRVKRFIR-------------DQERGIK----LPKN----L---PV----RDVE-------RGVKLK------KV-GKAIKP---QRSEVDEN-VRSRS----AVMRIAER A0A154QH22/11-111_215-306 ---VMLGEAVEGLAV----Q-----A-------GGRYLDGTFGRGGHARAVLSRLGSSGRLLLMDRDPTAIAAAR----AEFAGDP--------R----VAIRHANFSSLAEWD-------------ETAAG--LDGVLLDLGVSSPQLDEELDALKQGLDAALERLKPGGRLAVISFHSLEDRAVKLFIR-------------DHSGRVQ---NSRRG----P---PV----QVAP---------ARLT------AV-GKAQFP---SAAEQAAN-PRARS----AVLRVAEK A0A0W1QGG0/6-109_210-301 HIPVLLEEVIDGLAI----V-----S-------GERHVDATFGAGGYTRSMLGKG-AA--VAAFDRDPTAIAGGA----ALV-TEAEG------R----LELIHAPFSRMEQEL-AA-----R----ELLP---VDGVTMDIGVSSMQIDQELDELAEALAAAERVLKPGGRLAVVTFHSLEDRLVKRFLR-------------ERSGSEP---AGSRH----R---PA---IGPRS--------QPTFE------PP-AKAVRP---SEQEVERN-PRARS----ATLRVA-- L0GYF2/9-112_216-308 ---VLLEESLHALAI----R-----S-------DGCYLDATFGRGGHSRAILARLGPRGRLLGMDRDPLAVAVGH----QLAAEDG--------R----FRIAHTAFSRLTEAA-AA-----A----GFRRG--VDGLLVDLGMSSPQLDDELEELAGLLDQVIDLLAAGGRLVVISFHSLEDRLVKRFIR-------------DQFRGEQ----FPRG----V---PV----TDRE-------RQPQLR------PI-GKVIRP---GEAEVVAN-PRARS----ALMRVAER A0A0Q4BRR7/6-115_221-310 HVPVLLTEVVAALNP----R-----G-------GDLIVDATFGAGGYTRRLLDEG-AT--VHAFDRDPDAIAAAQNN-PGKW-PELAGDP---PR----LVLHPRRFSEMVESL-GD-----A----GIDK---VDGVVMDIGVSSMQLDQELDELDAGLAAAETLLRDGGRLAVVTFHSLEDRKVKHFLR-------------DASSAGQ---STSRH----L---PV---TVSAP--------AP-FA------NV-AKAVRA---GEAELAAN-PRSRS----ATLRS--- A9H0G9/9-118_221-263_286-316 HIPVMLAEVLEMLCP----R-----D-------GATYLDGTFGGGGYARAILGAARCT--LWAIDRDPAAIRRGQ----ALQ-AELRDAE-GGMR----LHMLQGGFGDMQGLL-AE-----S----GVHS---LDGVVLDLGVSSFQLDEELGQIVTGLEQALALLAPGGRLVVVSFHSLEDRLVKQALN-------------RAA-----------------------------------------FR------LLTSRALRP---GETECRAN-PRARS----ARLRAAE- A0A0D1ETB8/10-111_219-315 ---VLLNESIDGLAI----K-----P-------DGIYIDGTFGRGGHSRTILSKLGPNGRLYSIDRDPQAIAEAG----KI--DDP--------R----FTIIHGPFSGMAQYA-EE-----Y----DLVGK--VDGVLLDLGVSSPQLDDELEEIDTALKGAARILAPEGRLSVISFHSLEDRMVKRFIR-------------KESKGPE----VPHG----I---PL----TEAQ--IKEL-GSANMK------TV-GKAIKP---SKHEIDMN-PRSRS----SVLRIAEK A0A0C2BL29/15-118_222-314 ---VLLEQAVDALAIEG-AR-----T-------DGVYVDGTFGRGGHSRLILQRLGEKGRLIAFDKDPYAIATAE----KI--SDR--------R----FEIVHDSFATMGEAL-EA-----R----GIAR---VDGILLDLGISSPQVDDELEELEIGLEAAFQKLGPQGRLAVISFHSLEDRIVKRFMA-------------SKANAPQ----PDRR----L---PI----RAVD------LPQPDLK------LL-SK-MKP---DEAEVAEN-PRARS----AIMRVAER A0A1F1SG21/11-113_217-310 ---VLLHEAVDGLNV----V-----S-------DGVYVDGTFGRGGHSRLILSRLGEKGRLVVFDKDPQAIAVAH----ELADRDG--------R----VSVVHDGFSSFQTAL-DG-----L----GIGQ---IDGALFDLGISSPQIDDELEEIAAVLPQAVGRLKSGGRLAVIAFHSLEDRIVKQFVK-------------RYSTHAP----LPKW----A---AV----READ--L----PQPPLK------SI-GKAIKA---SADEVAVN-PRARS----AVLRIAER A0A0C1GNA6/12-110_214-304 HIPVLLRPLLAAVAP----V-----S-------G-RWLDGTFGAGGYTRGLLEAGADE--VTGVDRDPLAFELAK----PWT-GDYGD------R----LILQPGVFSRMDEYA---------------QD---LDGVVLDLGVSSMQLDLEYDELFEGLLAAERALKPGGLLAVVTFHSVEDRMVKRFFQ-------------HRAGKTG---RANRY----A---PE----QAET--------PSQFE------LVTRKAVGP---DDQELAEN-PRARS----ARLRV--- A0A0L6FZ80/12-115_219-313 ---VLLDEAVEALAL----R-----A-------DGCYLDGTFGRGGHSRLILSKLGPQGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGAEV-AE-----R----GLAGK--VSGILLDLGVSSPQLDDELGDLETGLEAALDALEVGGRLAVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----QHKT-------FEPKIK------LI-GKAQFA---SEAELKAN-PRSRS----AVMRVAEK A0A1E2TSH5/12-115_219-313 ---VLLDEAVEALAL----R-----A-------DGCYLDGTFGRGGHSRLILSKLGPQGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGAEV-AE-----R----GLAGK--VSGILLDLGVSSPQLDDELGDLETGLEAALDALEVGGRLAVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----QHKT-------FEPKIK------LI-GKAQFA---SEAELKAN-PRSRS----AVMRVAEK D0J7D6/10-110_215-304 ---VLLDEAVDALLG----GAAK-PP-------AGQWVDATFGRGGHSRLILQRLGPDGRLIAFDKDPDAIAEAA----RI--TDA--------R----FSIRHEGFRHLGELP-EG-----S-----------VQGVLMDLGVSSPQIDNELQELEQALEASLRVLAPGGRLAVISFHSLEDRIVKQFIA-------------KHSK-EV----YDRR----A---P-----------FAPP-APMRLK------AL-ER-IKP---SAAEVDAN-PRSRS----AVMRVAER A0A0D2VYP6/14-118_221-263_285-315 HIPVLLAEVVAALAP----R-----D-------GGVYVDGTFGRGGYARAILSAADCT--VLGIDRDPSAIAAGA----EMA-REFDG------R----LTMIEGAFGSMDALL-GE-----A----GIGQ---VDGVTLDLGVSSPQIDDELGELDRGLAAAERLLRPEGRLAVVSFHSLEDRQVKEFLR-------------QRS-----------------------------------------FR------LISRKPVTP---GQAELTHN-PRARS----ARLRAAE- A0A103FMS5/10-110_218-310 ---VLLDEAVDALVT----R-----P-------DGVYVDGTFGRGGHSRAVLACLGAAGRLIAFDKDPRAIETAK----GI--EDA--------R----FEIVHDSFAALKGAL-EA-----R----GVGR---VSGVLLDLGVSSPQVDDELADLQVVLEAALSSLEQGGRLVVISFHSLEDRIVKRFMQ-------------THASAPA----VDRR----L---PI----RAVD------LPSPPLK------LL-GR-KFP---SDAEVLAN-PRARS----AVMRIAER K0G5D8/11-112_218-312 ---VLLHEAVDGLAI----K-----P-------NGIYIDGTFGRGGHSRLILSKLSEQGRLIATDRDPRAIAEAN----TI--TDA--------R----FQIVHTAFSAIPEVC-EQ-----L----GLTGK--IDGILLDLGVSSPQLDDELDELEKALQSALSVLAPEGRLSIISFHSLEDRMVKQFMK-------------KNSKGMD----VPKG----L---PI----LESE--LN---KNIPLK------TI-GKAIMP---SEAEIEAN-PRSRS----AVLRIAEK A0A0Y7LL20/15-116_226-320 ---VLLHEAVNGLAL----K-----E-------NGIYIDGTFGRGGHSRLILSQLSSNGRLIAVDRDPRAIAEAQ----KI--QDS--------R----FQIEHNSFSHIPEIC-DK-----L----NLVGK--IDGILLDLGVSSPQLDEELDELESLLNSALDMLAPEGRLSIISFHSLEDRMVKHFMK-------------KQSKGED----IPKG----L---PL----REDQ--IQ---RNQKLR------II-GKAIQP---SDAEIQAN-PRSRS----AVLRVAER A0A0F2KV60/7-116_220-262_284-314 HIPVMLAEVIAALAP----R-----D-------GGIYVDGTFGAGGYSRALLESASCR--VIGIDRDPAAIERGR----ALA-QAFPG------R----LEVIEGRFGDMDRLV-ADRLLAEH----GVAK---VDGVALDVGVSSPQIDEELGELRRGLSAAESLLAPGGRLAVVSFHSLEDREVKAFLR-------------DRS-----------------------------------------FR------LLSRKPVDP---SDAEARNN-PRARS----ARLRAAE- F9GZ21/15-116_226-320 ---VLLHEAVNGLAL----K-----E-------NGIYIDGTFGRGGHSRLILSKLSSNGRLIGIDRDPRAIAEAQ----KI--QDS--------R----FQIEHNSFSHIPEIC-EK-----L----NLVGK--IDGILLDLGVSSPQLDEELDELESVLNSALDMLAPEGRLSIISFHSLEDRMVKHFMK-------------KQSKGED----IPKG----L---PL----REDQ--IQ---RNQKLK------TI-GKAIQP---SDAEIQAN-PRSRS----AVLRVAER V9TTD8/6-114_218-260_285-314 HIPVLLSEVLNALAP----T-----S-------GKCYLDGTFGSGGYTRAILEKTDCT--VLAIDRDPDSIARAK----IMK-KEFDY------RKGKHLIPLQGRFSEMYMLA-KN-----A----GYST---VDGVTLDLGFSSIQMDEELEELEHGLDAAERLLAPGGKLAVVSFHSLEDRKVKLLLR-------------KRS-----------------------------------------FA------ITATQLILP---KKDEISHN-PRARS----ARLRIA-- A0A142G1G0/15-116_226-320 ---VLLHETVDGLAL----K-----E-------NGIYIDGTFGRGGHSRLILSQLSVNGKLIAIDRDPQAVAEAQ----KI--QDP--------R----FHIEHNTFSEILPIC-EK-----F----GLVGK--VDGILLDLGVSSPQLDDELDELENVLQSALSVLAPKGRLSVISFHSLEDRMVKQFMR-------------KQSQGEV----IPKG----L---PL----REDQ--IQ---RNRRLK------VI-GKAIMP---SEAEIVQN-PRARS----AVLRVAER A0A173JCS5/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSKLGPDGRLLGFDKDPQAIATGQ----TLAAEDG--------R----FVVVQRSFAELGSEV-AE-----R----GLAGK--VSGVLLDLGVSSPQLDDELGDLEAGLEAALECLEVGGRLVVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----RHVA-------FEPKIK------VH-GKAQSA---SEAELKAN-PRSRS----AIMRVAEK A0A0L0QXG3/42-132_236-328 -------------------A-----E-------RGVFVDGTFGRGGHSRELLGRLGKSARLVVFDKDPEAIAVAN----ALAAADP--------R----VTVVHGGFASMAEEL-QQ-----L----GIDK---VDGLMLDLGVSSPQIDDELEELARTLAAALDLLAPGGRLAVISFHSLEDRMVKQCIV-------------AAARPAA----AHAR----L---PL----RESE--M----PQPVLR------SL-GR-VLA---EDEEVSAN-ARARS----AVLRVAER A0A1G3ICD5/6-110_213-307 HTPVMLREVMEALMP----R-----D-------GGVYVDATFGAGGYSRAIVEAAECT--VWGIDRDPEAAARGA----DQA-KRYSG------R----LTVLCGRFGDMLLLL-AD-----R----GVDK---VDGVAFDLGVSSMQIDDELEELERGLCAAESLLAPGGRLAVVSFHSLEDRQVKNFLR-------------RRSGAAP---RGSRH----H---PS----REGTP------CGPGFR------LLRRGAVKP---STAETAAN-PRARS----ARLRTAE- A0A0A7PWY7/12-115_219-313 ---VLLDEAVEALAL----R-----A-------DGCYLDGTFGRGGHSRLILSKLGPQGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGAEV-AA-----R----GLHGK--VSGVLLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLAVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----QHKA-------FEPKIK------LI-GKAQFA---SEAELKAN-PRSRS----AVMRVAEK A0A1N6ZKZ6/12-115_219-313 ---VLLDEAVEALAL----R-----A-------DGCYLDGTFGRGGHSRLILSKLGPQGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGAEV-AA-----R----GLHGK--VSGVLLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLAVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----QHKA-------FEPKIK------LI-GKAQFA---SEAELKAN-PRSRS----AVMRVAEK A0A0D0QNA7/10-111_215-309 ---VLLHEAVEGLAI----K-----P-------DGVYVDGTFGRGGHSRLILQHLGPNGRLIAIDRDPQAIAEAA----KI--QDP--------R----FEIVHGPFSGITSYL-SE-----R----GLLGK--VDGFLLDLGVSSPQLDDELDEIETALNGALEVLAPHGRLSVISFHSLEDRLVKHFIR-------------KHEKGPE----VPYG----I---PL----TEAQ--LA---GGRKLK------SV-GKALKP---SDHEVSEN-TRSRS----SVLRVAER A0A126YIZ7/10-110_218-310 ---VLLDEAVNALIT----R-----S-------DGTYIDGTFGRGGHSRLALTKLSEAGRLIAFDKDPLAIATAG----QI--QDS--------R----FSIVHESFASLADAA-AE-----R----GVEK---VSGVLLDLGVSSPQVDDELAELQVVLDAALALLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASGPA----IDRR----L---PI----RAAD------IPTPPLK------LL-GR-VFA---SEAEVAAN-PRARS----AVMRIAER J8TBY7/12-114_218-311 ---VLLNEAVDALAV----R-----E-------DGVYVDGTFGRGGHSRLILSRLGDAGRLIVFDKDPQAIAVAE----ELARSDK--------R----VGVVHGGFASFQTAL-DG-----L----GIGK---VDGALFDLGISSPQIDDELEEVGAVLPQVMCRLKEGGRLAVIAFHSLEDRIVKQFVK-------------KYSQHAP----LPRW----A---AV----READ--L----PELPLK------IV-GRALKP---GEAEIAAN-PRARS----AVLRVAER A0A0D6EAJ9/18-119_223-316 ---VLLEGAVDTLVH----D-----A-------QGIYLDGTFGRGGHSRVILDRLDAQGQLLAMDRDPQAIAAAA----EI--ADP--------R----FLITQREFAQLAEFA-RE-----Q----GVFGK--LSGVLLDVGVSSPQLDDELEQLDSALDAALEALAPGGHLVVISFHSLEDRRVKRFIR-------------HHVRGDT---DLPRG----V---PI----RDDQ-------LNRRLE------AL-GKGVRP---SEEEVDAN-PRARS----AVMRAARK A0A058YE89/43-132_236-328 -------------------------Q-------RGVFVDGTFGRGGHSRALLARLGAQARLVVFDKDPQAIAAAR----ELAAGDR--------R----VEVVHGGFATMAEEL-TA-----R----GIGQ---VDGVMLDLGVSSPQIDDELEELARALASALDLLAPGGRLAVISFHSLEDRMVKQCIA-------------AAARPAA----AHAR----L---PL----RESE--L----PQPLVR------SL-GK-VVA---DDVEVAGN-ARARS----AILRVAER A9EL23/10-112_216-310 ---VLLSETVAGLNI----K-----Q-------DGIYIDGTFGRGGHSREVLKHLGGNGRLIAIDRDPQAIEAAK----QF-ADDS--------R----FSIVHGGFGQLATYV-ED-----L----GLKGK--IDGVLLDFGVSSPQLDDELEQIDQALEGALVVLAPQGRLSVISFHSLEDRMVKRFIR-------------RNCQGKS----VPHG----L---PI----TEDE--LD---KTRLLK------SI-GKATKP---SAEEVERN-KRARS----SILRVAER A0A0F4THI0/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----TLAAEDG--------R----FVVVQRSFAELGSEV-AE-----R----GLAGK--VSGVLLDLGVSSPQLDDELGDLETGLEAALECLEVGGRLVVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----RHVA-------FEPKIK------VH-GKAQTA---SDAELKAN-PRSRS----AVMRVAEK J2QRQ8/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----TLAAEDG--------R----FVVVQRSFAELGSEV-AE-----R----GLAGK--VSGVLLDLGVSSPQLDDELGDLETGLEAALECLEVGGRLVVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----RHVA-------FEPKIK------VH-GKAQTA---SDAELKAN-PRSRS----AVMRVAEK A0A163A124/6-109_210-300 HIPVLMTEAVAALAI----Q-----P-------GETHVDATFGAGGYTRAMLAAG-AR--VIAFDRDPTAHDAAA----PLL-AEAGD------R----LTLIRAPFSAMASEL-AA-----R----GIDA---VDGVVMDIGVSSMQLDQELGELTAGLDAAERVLRPGGRLSVVSFHSLEDRIVKRFLR-------------ERGGAMP---AGSRH----R---PV---VAQGP--------APSFT------DI-AKAVRP---SDEEVSVN-PRARS----ATLRV--- A0A166SLT9/10-108_212-303 HVPVLLEPILRYCAP----I-----E-------G-IWLDGTFGAGGYTRGLLEAGAAR--VIAVDRDPLAFEMAS----DWA-DAYGD------R----IDMRRGVFSRLDEQG---------------SD---LDGVVLDLGVSSMQLDREYEELFGGLMAAERALKPGGQLAVVTFHSVEDRMVKRFLT-------------ARSGGGG---NANRF----A---PE----REPE--------APRFR------LERRKAIAP---DAQEQERN-PRARS----AKLRIA-- A0A0J5QGX6/16-114_218-309 HTPVLLRPLLRAVAP----V-----G-------G-VWIDGTFGAGGYARGLLAAGADQ--VIGIDRDPLAHEMAA----PWV-AEYGD------R----LRLVVSNFAQMDEVA---------------EA---VDGVVLDLGVSSMQLDLEYGALYQGLMAAERVLRPGGLLAVVTFHSVEDRMVKRFLQ-------------NRGGQLG---RANRY----A---PE----VQEQ--------LSQFD------LVTRKAVGP---DPDELDEN-PRARS----AKLRVA-- A0A0W0UH30/6-109_213-305 ---VLLHEALEGLAI----R-----A-------EGTYIDGTFGRGGHSRAILQQLSESGRLLAIDKDPEAIAYAK----EHFAEDK--------R----FQIYQGSFAKLADFA-KK-----E----DVYGK--VDGVLLDLGVSSPQLDNELSDLTKCLETAIDVLAIGGRLVVISFHSLEDRIVKQFMR-------------DKAQGLR----LPAS----V---PV----RNED-------IKTNFK------KI-GKAIKA---SDDEIKAN-VRARS----AVLRIGEK Q47A96/10-110_214-307 ---VLLEEAVGALAI----K-----A-------DGVYVDATFGRGGHSRRILSELNQNGRLVAVDRDPQAIAAGA----EI--DDS--------R----FLLVHRAFGELAEAA-DE-----A----GIRD---VDGVLFDVGVSSPQIDDELRQLEVALPQALELLKPGGRLVVISFHSLEDRIVKNFMR-------------DQSIADA----MPKS----L---PL----RADQ--L----PKPKLR------LV-GRPIKP---SAAEIDAN-PRARS----AVMRIAEK A0A1K1R7S5/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGAEV-AE-----R----GLAGK--VSGVLLDLGVSSPQLDDELGDLEVGLEAALEALEIGGRLVVISFHSLEDRIVKLFMR-------------KLTKGEAD--NLPRN----L---PV----RFEA-------FVPKIK------IH-GKAQFA---SEAELKAN-PRARS----AVMRVAEK V9VUN5/12-110_214-304 HIPVLLRPLLQAVAP----V-----S-------G-RWLDGTFGAGGYTRGLLEAGADE--VTGVDRDPLAFEMAK----PWA-GAYGS------R----LILQQGVFSRMDEYA---------------QD---LDGVVLDLGVSSMQLDLEYDELFEGLLAAERALKPGGLLAVVTFHSVEDRMVKRFFQ-------------HRAGKTG---RANRY----A---PE----QAET--------PSQFE------LVTRKAVGP---DDQELAEN-PRSRS----ARLRV--- A0A1H0RPK6/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----TLAAEDG--------R----FVVVQRSFAELGSEV-AE-----R----GMTGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALECLEVGGRLVVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----RHVA-------FEPKIK------VH-GKAQTA---SDAELKAN-PRSRS----AVMRVAEK G2IM05/14-117_219-309 HRPVLLDEVLDALAI----A-----P-------GEWHVDGTFGAGGYSSAMAARG-AR--VFAIDQDPDAIAEGQ----PVI-AASEG------A----IRLVQGNFGEMDRLL-AH-----E----GVDA---VDGVTLDIGVSSMQLDRELDALERGLDAAEAVLKPGGRLAIVTFHSLEDRIVKNFLR-------------ARSGQEG---AGSRH----R---PE---TRAAQ--------APTFR------KP-ARAVRP---GEAEIAAN-PRARS----ATLRS--- I0HMQ0/11-111_216-305 ---VLLPEAVQALVT----Q-----E-------DGLYVDGTFGRGGHTRALLAALSPRARVVAFDRDPEAIAAAA----AI--DDG--------R----FSICHASFGAMREEL-AA-----R----GVER---VQGVLLDLGVSSPQIDTELEALEQGLSAALQLLAPGGRLVVISFHSLEDRIVKNFIT-------------RESR-EE----FDRR----A---P-----------MAPP-QALKLK------AI-AR-VKP---GDEELRAN-PRARS----AVMRVAER A0A061QJU5/18-128_235-277_298-326 HVPVMCDAVIDALVP----TDQPLPA-------NARFVDGTFGAGGYSRALLDRSPQI-RVYAIDRDPEAIARGA----EML-RAYEG------R----FRLLEGRFSEMEALL-RD-----L----DVHK---LAGITLDIGVSSYQLE-TLGELSRVLCAAERLLAPEGRLAIVAFHSLEDRIVKAFLA-------------ERAG----------------------------------------FY------LPKKGAIKP---TAQEISSN-PRARS----ARLRV--- W1RVJ7/11-113_217-309 ---VMLDESVDMLVT----N-----K-------DGLYVDGTFGRGGHTRLVLNRLE-NGRLLGFDKDPVAIRHGE----LLQKEDT--------R----FSIVQDSFANMAEHI-LD-----VF---GVGK---VDGVMMDLGVSSPQIDDELGDLEVGLDAAADALKVGGRLAVISFHSLEDRIVKRFMK-------------LKAKGPE----LPRH----L---PI----RNAH-------LDIKFK------TI-GKAIKP---SQLEVSEN-VRSRS----AVLRVLER A0A0D1LUZ8/12-115_219-313 ---VLLDEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILQHLGPQGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGAEV-AE-----R----GLSGK--VNGILLDLGVSSPQLDDELGDLEAGLEAALDTLEIGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NLPRN----L---PV----QHKP-------FEPKIK------VH-GKAQFA---SEAELKAN-PRSRS----AVMRVAEK V9HLL4/12-115_219-312 ---VLLHEAVDALNI----R-----A-------DGVYVDGTFGRGGHSRLILSRLGESGRLIVFDKDPQAIEVAQ----ELAKQDK--------R----VKVIHNGFSHFQVALKND-----L----GLNH---IDGALFDLGISSPQIDDELDEIQAVLPQVVAHLNIGGRLAVIAFHSLEDRLVKQFIR-------------THSTHAP----LPKW----A---AI----RETD--L----PQPPLL------AV-GKAIKP---SDDEIAHN-PRARS----AVLRIAER E0N6Q2/12-114_218-311 ---VLLNEAVDALAV----R-----E-------DGVYVDGTFGRGGHSRLILSRLGDAGRLIVFDKDPQAIAVAE----ELARSDK--------R----VGVVHGGFASFQTAL-DG-----L----GIGK---VDGALFDLGISSPQIDDELEEVGAVLPQVMCRLKEGGRLAVIAFHSLEDRIVKQFVK-------------KYSQHAP----LPRW----A---AV----READ--L----PEPPLK------IV-GRALKP---GEAEIAAN-PRARS----AVLRVAER A0A136HPK0/10-113_217-310 ---VLLQEAVDALVQ----D-----A-------SGFYVDGTFGRGGHSALVLEQLAETGELLGIDKDPQAIAHAK----ERFADEP--------R----FSIAHGSFAQLEQFV-TD-----R----GMAGK--VDGVLLDLGVSSPQLDDELDDLESCLDQALDMLKIGGRLVVISFHSLEDRIVKRFIR-------------KHVKGDE---HLPRG----I---PF----TNDM-------LEIRLR------SV-SKAVKA---SDNETQDN-VRARS----AVMRIAEK A0A191UCT3/23-114_219-310 ---IQNQNAAQNILV----------------------IDGTFGRGGHTQALLKQLPASARMISFDKDLDAIAVAK----QI--NDP--------R----LTIVHDSFAQMDQYM-AA-----E----S------VDGILLDLGISSPQVDEELEDLELGLKAALKLLKPGARLAVISFHSLEDRIVKQFLQ-------------AHAK-----VEVPRG----L---PV----REKD--L----PQSALE------II-GR-IKP---SDLEISEN-PRARS----AIMRVAEK A0A147JAK1/6-104_205-296 HIPVLLDEVLDALAI----A-----P-------GETHVDGTFGAGGYTRAMLGRG-AK--VIAFDRDPDAIANGQ----ALV-AAEPG-----------LTLIHREFSGLDQAL-DA-----R-----------VDGVVLDIGVSSMQLDQELDELADGLAAAERALKPGGRLAIVTFHSLEDRMVKRFFR-------------ERAGQMP---GGSRH----L---PE---QAAAR--------APSFA------HV-GKAVKA---GEVELARN-PRARS----ATLRFA-- C5T631/10-110_215-304 ---VLLDEAVDALLG----GAGA-AP-------AGTWVDATFGRGGHSRRILLRLGPQGHLVAFDKDPEAIHEAT----RI--TDA--------R----FSIRHEGFRHLAELP-AG-----S-----------VAGVLMDLGVSSPQIDSELEELQQALEASLSVLQPGGRLVVISFHSLEDRIVKQFIA-------------QHSK-EV----YDRR----A---P-----------FAPP-KVMKLV------AL-DR-IKP---SAAEVAAN-PRARS----AIMRVAER A0A084XYV7/10-113_217-310 ---VLLREAVEALEI----K-----P-------AGTYVDGTFGGGGHTRAILEQLGPHGRLLALDRDPQAVALAH----AI--QDR--------R----LRVMHHCFADLVNAI-RQ-----A----GVAAEEGVDGVLLDIGVSSPQLDEELQQLALVLPEAMTVLKQGGRLVVISFHSLEDRIVKRFMR-------------DQAAPDR----LPRR----L---PL----RAAE--L----PKPELR------LV-GKPRRA---SAAEVAAN-PRARS----AVMRVAEK K2B2F0/8-111_215-308 ---VLLNEVLKNLLT----Q-----A-------EGIYLDLTFGRGGHSKAILEKLNKSGKLFAFDKDHEAVEMAV----KELGYDK--------R----FQIFHNTFSDLEKII-SS-----L----DLKGK--ITGILLDLGVSSPQLDNELDELNTCLGQASNVLAPGGRLVVISFHSLEDRIVKRFIS-------------KNSVGEV----LPKE----I---PL----SHAP--G----FTPTLK------KV-GKLIRP---NHMEVKMN-PRSRS----AVMRVAEK A0A1G0FEP7/8-111_215-308 ---VLLNEVLKNLLT----Q-----A-------EGIYLDLTFGRGGHSKAILEKLNKSGKLFAFDKDHEAVEMAV----KELGYDK--------R----FQIFHNTFSDLEKII-SS-----L----DLKGK--ITGILLDLGVSSPQLDNELDELNTCLGQASNVLAPGGRLVVISFHSLEDRIVKRFIS-------------KNSVGEV----LPKE----I---PL----SHAP--G----FTPTLK------KV-GKLIRP---NHMEVKMN-PRSRS----AVMRVAEK A0A1G0J427/8-111_215-308 ---VLLNEVLKNLLT----Q-----A-------EGIYLDLTFGRGGHSKAILEKLNKSGKLFAFDKDHEAVEMAV----KELGYDK--------R----FQIFHNTFSDLEKII-SS-----L----DLKGK--ITGILLDLGVSSPQLDNELDELNTCLGQASNVLAPGGRLVVISFHSLEDRIVKRFIS-------------KNSVGEV----LPKE----I---PL----SHAP--G----FTPTLK------KV-GKLIRP---NHMEVKMN-PRSRS----AVMRVAEK A0A0S2KF73/19-118_222-314 ---VLLHPAVDALVT----D-----C-------AGFYVDGTFGRGGHSRLILEQLDENGRLLAIDKDPGAIKIGQ----ELSASDA--------R----FCIRHGAFSDADQWV-A-------------PGQ--AAGILLDLGVSSPQLDEELLSLQELLSKSLQLLKPGGRLVVISFHSLEDRMVKQFIQ-------------KQSRGDE----FPRD----L---PV----PESA-------LNPRLK------KI-GKAVKP---DAQEIARN-PRARS----AVMRVAER A0A0S8F764/13-116_220-312 ---VLLDEVIAALRI----K-----Q-------AGRYVDGTFGRGGHAAAILDKLGPDGRLLAFDKDPGAIEAAR----RGFGTDE--------R----FRICHGSFAALADEV-EQ-----E----DWVGK--VDGILLDLGVSSPQLDEELDELKTCLESVVDVLAPAGRLVVISFHSLEDRIVKRFIR-------------NASRGDV----YPAG----L---PV----TTKQ-------MNVRLR------VV-GKAVHP---SEQEMASN-PRARS----AVMRVAEK F9ZZQ7/7-111_215-308 ---VLYEEALDSLRI----K-----A-------DGVYIDCTFGRGGHSFGILEKLGKNGKLLAFDRDIDAINSPEA---GQLLSDQ--------R----FHLHHGCFADLAAVS-EQ-----L----GYTGR--VDGILMDLGVSSPQLDNELEQVKTALQQAIQILAPGGRLVVIAFHSLEDRIVKRFIR-------------GESGLKH----NPGK----L---PI----KEQD--I----AKGQLK------KV-GKSIRA---QAAELQFN-PRARS----AIMRVAEK A0A1A7QKE7/6-109_210-298 HIPVLLDEVIAALNP----G-----E-------GDVIVDATFGAGGYSRAILDRG-AQ--VHAFDRDPDAIAAGA----AME-AEFAG------R----LTLHPRRFSEMVDTL-AA-----A----GVAR---VDGVVMDIGVSSMQLDQELDELAEGLVAAEQLLSEGGRLAMVCFHSLEDRIVKRFLR-------------DASQA-E---AGSRH----L---PQ----LDAP--------EPVFT------RV-SKAIRA---SEAEIARN-PRSRS----SVLRS--- A0A066ZZW1/12-115_219-313 ---VLLDEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSKLGPQGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGAEV-AE-----R----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----QHKH-------FEPKIK------VH-GKAQFA---SEAELKAN-PRSRS----AVMRVAEK A0A192D4T2/8-111_212-302 HIPVLLDEVVAAIGP----R-----E-------GMAIVDATFGAGGYSAALLDAG-AN--VHAFDRDPDAIAAGA----AMV-ARYDG------R----LALYPHRFSAMRSEL-AA-----A----GIAK---VDAVVMDIGVSSMQLDQELGELEAGLAAAEALLGEGGVLAVVTFHSLEDRIVKQFFK-------------TASGAGR---AVSRH----L---PG---EIPGP--------APTFA------QV-SKAIRP---SEAEIARN-PRARS----STLRH--- A0A1D8S8S5/10-111_219-315 ---VLLNESIEGLAI----K-----P-------DGIYIDGTFGRGGHSRTILAQLGPQGRLYSIDRDPQAIAEAH----KI--DDP--------R----FTIVHGPFSGIAEYA-QR-----Y----DLVGK--VDGVLFDLGVSSPQLDDELEEIDTALRGASDILAPQGRLSVISFHSLEDRMVKRFMR-------------KESQGPE----VPHG----I---PL----TQDQ--IRAL-GSAKMK------TV-GKALKP---SDQEVELN-PRSRS----SVLRVAEK B6BB01/12-110_214-304 HIPVLLRPLLKAVAP----V-----S-------G-RWLDGTFGAGGYTRGLLDAGADQ--VIAVDRDPLAFELAK----PWA-GQYGD------R----LILQQGVFSRMDEYA---------------QD---LDGVVLDLGVSSMQLDLEYEELFEGLLAAERALKPGGLLAVVTFHSVEDRMVKRFFQ-------------HRAGKTG---RANRY----A---PE----QEET--------PAQFE------LVTRKAVGP---DEQELAEN-PRARS----ARLRV--- A0A139BP90/10-110_214-307 ---VLLHEAVEALAI----R-----Q-------DGIYVDGTFGRGGHSAEILKRLGAGGRLIAMDMDLSAVAVGR----QW--SDG--------R----FQIVHSSFAQLAEVL-RE-----R----DVRK---VDGILFDLGVSSPQLDEELEELARVLPECVTHLKTGGRLVVISFHSLEDRIVKQYMR-------------EMAEGDK----LPRK----V---PI----RASE--V----PQGKLK------LI-GRALRA---GEAEVRTN-LRARS----AVMRVAER E0E5G3/11-112_218-312 ---VLLHEAVDGLAI----K-----P-------NGIYIDGTFGRGGHSRLILSKLSEQGRLIATDRDPRAIAEAN----TI--DDT--------R----FQIEHTAFSAIPDVC-EQ-----L----GLTGK--IDGILLDLGVSSPQLDDELDELEKALQSALSVLAPEGRLSIISFHSLEDRMVKQFMK-------------KNSKGMD----VPKG----L---PI----LESE--LN---KNIPLK------II-GKAIMP---SEAEIEAN-PRSRS----AVLRIAEK E0EVC2/11-112_218-312 ---VLLHEAVDGLAI----K-----P-------NGIYIDGTFGRGGHSRLILSKLSEQGRLIATDRDPRAIAEAN----TI--DDT--------R----FQIEHTAFSAIPDVC-EQ-----L----GLTGK--IDGILLDLGVSSPQLDDELDELEKALQSALSVLAPEGRLSIISFHSLEDRMVKQFMK-------------KNSKGMD----VPKG----L---PI----LESE--LN---KNIPLK------II-GKAIMP---SEAEIEAN-PRSRS----AVLRIAEK E0F7R8/11-112_218-312 ---VLLHEAVDGLAI----K-----P-------NGIYIDGTFGRGGHSRLILSKLSEQGRLIATDRDPRAIAEAN----TI--DDT--------R----FQIEHTAFSAIPDVC-EQ-----L----GLTGK--IDGILLDLGVSSPQLDDELDELEKALQSALSVLAPEGRLSIISFHSLEDRMVKQFMK-------------KNSKGMD----VPKG----L---PI----LESE--LN---KNIPLK------II-GKAIMP---SEAEIEAN-PRSRS----AVLRIAEK A0A0P7WD38/10-106_210-301 HIPVLIGPLIEACAP----I-----A-------G-TWADGTFGAGGYTRALLEAGASH--VIAIDRDPTAFQNAT-----WA-AENPQ-----------ITLVEGTFSDLDAYG---------------RD---LDGVVLDLGVSSMQLDQEYGQLADGLMAAERGLKPGGWLAVVTFHSVEDRMVKRFLQ-------------ARSGGLA---TTNRY----A---PD----IERE--------KPAFE------VPTRKATAP---SETEVAAN-PRARS----AKLRVA-- A0A1G0AQN7/6-106_210-303 ---VLLSEAVEALAI----K-----P-------DGIYLDCTFGRGGHSALILQQLGTNGRLIALDKDMTAVSHGL----AW--KDA--------R----FKMVHSGFTHLAEVL-RE-----L----GVEY---VDGILLDLGVSSPQLDEELEELEQVLPQCVAHLKPGGRLAVISFHSLEDRMVKHYLR-------------DLNDADK----LPRN----V---PI----RASE--V----PKGKLN------LI-GRAIKA---GKDELNSN-PRARS----AVMRVAER A0A1K1MAL1/5-105_212-307 ---VLLQEAVDALVV----R-----A-------DGVYVDGTFGRGGHSRAILERLGPHGRLLAFDRDPAALAEGE----RI--PDP--------R----LHLIHASFSQLGEAL-RQ-----Q----GVAR---VDGILLDLGVSSPQLEEELDALSRALPQCVDSLNPGGRLVVISFHSLEDRMVKRFMR-------------ASAEADA----LPRG----V---PL----RERE--LHAL-SRRTLR------LM-GK-VRP---GMAELAAN-PRARS----ATMRVAER E1X6V1/15-116_226-320 ---VLLHEAVNGLAL----K-----E-------NGIYIDGTFGRGGHSRFILSQLSSNGRLIAVDRDPRAIAEAH----KI--QDS--------R----FQIEHNSFSHIPEIC-DK-----L----NLVGK--IDGILLDLGVSSPQLDEELDELESLLNSALDMLAPEGRLSIISFHSLEDRMVKHFMK-------------KQSKGED----IPKG----L---PL----REDQ--IQ---RNQKLR------II-GKAIQP---SDAEIQAN-PRSRS----AILRVAER A0A110K7I7/15-116_226-320 ---VLLHEAVNGLAL----K-----E-------NGIYIDGTFGRGGHSRFILSQLSSNGRLIAVDRDPRAIAEAH----KI--QDS--------R----FQIEHNSFSHIPEIC-DK-----L----NLVGK--IDGILLDLGVSSPQLDEELDELESLLNSALDMLAPEGRLSIISFHSLEDRMVKHFMK-------------KQSKGED----IPKG----L---PL----REDQ--IQ---RNQKLR------II-GKAIQP---SDAEIQAN-PRSRS----AILRVAER A0A0D6FZF7/42-132_236-328 -------------------A-----E-------RGVFVDGTFGRGGHSRELLGRLGPTARLVVFDKDPEAIAVAN----ALAAADS--------R----VTVVHGGFATMAEEL-RQ-----L----GIDK---VDGVMLDLGVSSPQIDDELEELARTLASALDLLAPGGRLAVISFHSLEDRMVKQCIA-------------AAARPAA----AHAR----L---PL----RESE--M----PQPVLR------SL-GR-VLA---EDEEVAAN-ARARS----AVLRVAER F0EVW9/11-113_217-310 ---VLLNEAVDALNV----R-----P-------SGIYVDGTFGRGGHSRLILSRLNEQGRLIVFDKDPAAIAVAQ----ELARQDQ--------R----VSVFHQGFSHFDAAC-TE-----L----GISQ---IDGALFDLGISSPQIDDELDEVAQVLPQVTTRLNTHGRLAVIAFHSLEDRIVKQFMR-------------EYSTHAP----LPKW----A---AV----READ--L----PKPPLR------IV-GKPIKA---GAEELNYN-PRARS----AILRVAER A0A1F6U652/9-112_216-308 ---VLLEEVLQALNV----R-----G-------DGVYVDATYGRGGHAAEILRRLGPDGRLLALDRDPEACAAAR----ARFSGDG--------R----FQITRGPFSMLETVI-EG-----Q----GLSGR--VDGVLFDLGVSSPQFDDELEELEAALPRAVSVLAPGGRLAVISFHSLEDRLVKRFLR-------------TEARGAE----LPPD----L---PV----RQTH-------FRVRLK------II-GKPVRP---GARELGLN-PRARS----AVLRVAER A0A117USV9/11-116_217-308 HIPVLLDEVVAALHP----E-----P-------GMLIVDATFGAGGYTRRLLGAG-AT--VHAFDRDPDAILAGR-----AW-GEVSASP---PR----LVLHPRRFSELAEGL-AE-----A----GIAS---VQGIVFDIGVSSMQLDQELDELRAGLAAAERVLAPGGRLAVVSFHSLEDRIVKQFLR-------------EGAGALP---AGSRH----L---PL---RDPVG--------HPVFE------KP-SAAIRP---GAEEQARN-PRARS----ATLRWA-- A0A1E4B3E4/7-110_211-302 HIPVLLNEVVEALAP----R-----P-------GMTIIDATFGAGGYTRALLEAG-AS--VHAFDRDPDAIVAGE----AMA-SGFPG------R----LTLHPARFSAMREAM-TR-----I----GVPQ---VDAVVMDIGVSSMQLDQELGELRAGLAAAEALLREGGVLAVVSFHSLEDRIVKHFLR-------------EASGAGR---AVSRH----L---PG---EVAGP--------PPTFA------KV-SKGIRP---SEAEIARN-PRSRS----STLRHA-- A0A109LMG6/12-115_219-313 ---VLLDEAVEALAV----R-----A-------DGCYVDGTFGRGGHSRLILSQLGSDGKLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGAEV-GE-----R----GMAGK--VAGVLLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------RLVKGESD--NLPRN----L---PV----RFEA-------FVPKIK------IH-GKAQFA---SEAELKAN-PRSRS----AVMRVAEK A0A1K1Z9X5/12-115_219-313 ---VLLDEAVEALAV----R-----A-------DGCYVDGTFGRGGHSRLILSQLGSDGKLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGAEV-GE-----R----GMAGK--VAGVLLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------RLVKGESD--NLPRN----L---PV----RFEA-------FVPKIK------IH-GKAQFA---SEAELKAN-PRSRS----AVMRVAEK A0A016XE69/32-118_223-311 ------TE-------------------------DGHYVDATFGRGGHARLLLSRLSPQARLTAFDKDPQAVAEAR----GIAESDS--------R----FSIRHQGFAHLNELP-AQ-----S-----------CQGILMDLGISSPQIDDELEELQAALEASLDVLQTGGRLVVISFHSLEDRIVKQFIA-------------RHAR-EV----YDRR----A---P-----------FAAP-IPTRLR------AV-ER-VRP---SEAEVAAN-PRARS----AIMRVAV- A0A1G0KD43/8-111_215-307 ---VLPDEVLQALNV----Q-----P-------DGIYLDCTAGRGGHSGIILDRLGPQGRLHIFDLDPESIAFLR----QRFSTDA--------R----VLVRHASYADLGAHC-RE-----H----GCHGQ--VAGVLFDLGAASPQFDQELENLAAALPQALAALRPGGRLAVISFHSLEDRIVKRYLR-------------AQARGDH----HPSD----M---PV----LAVE-------LKPELR------LI-GPAQHP---TAAEIARN-PRARS----AVLRVAEK M4NHG3/11-111_215-306 ---VMLGEAVEGLAV----H-----A-------GGRYLDGTFGRGGHARAVLSRLGPDGRLLLMDRDPAAIAAAQ----AEFAGDP--------R----VAIRHANFSSLAEWD-------------ETAAG--LDGVLLDLGVSSPQLDEELDALQQGLNAALERLKPGGRLAVISFHSLEDRAVKLFIR-------------DHAGRVQ---NSRRG----P---PV----QAAP---------AQLA------AV-GKAQFP---SDAEQAAN-PRSRS----AVLRVAEK A0A0S8BP21/9-112_216-308 ---VLLEPAVDALNV----S-----P-------DGIYVDATFGRGGHAGEILKRLGDGGRLLAMDRDPAAVAEAT----RKFANDK--------R----IEIRRGPFSMLGHYV-EE-----K----GLTGK--IHGVLLDLGVSSPQLDDELDEVVAVLPQTVSVLKTGGRLAVISFHSLEDRLVKRFIQ-------------KEARGDD----FPLD----L---PV----PTSA-------LKPRLR------QV-GKPVRA---DADEVEHN-PRARS----AVLRVAER I4N995/12-115_219-313 ---VLLDEAVEALAI----Q-----G-------DGCYLDGTFGRGGHSRLILKHLGPQGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAEMGSEI-AS-----Q----GLSGK--VNGVLLDLGVSSPQLDDELADLEAGLEAALESLEIGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NLPRN----L---PV----RFQA-------FEPKIK------VH-GKAQFA---SEAELKAN-PRSRS----AVMRVAEK F7QR60/71-175_278-368 HVPVLGVEAVEALAP----R-----D-------GGVYVDATFGAGGYSRMILKTPGTR--VIGIDRDRTAIAGGF----DLV-ESSGG------R----LTLVEDRFSNLADAC-AG-----Q----GLSA---VDGIVMDVGVSSMQLDQELDELHAALVASEQMLKPGGRLAVVSFHSLEDRIVKNFLN-------------ERGKRGG----GSRH----L---PE----VDQA--------QPSFE------ILTKRPVVA---GDEEVDAN-PRARS----AKLRAA-- T1X706/10-109_214-303 ---VLLNEAVEALLS----GST--AA-------TGTYVDATFGRGGHARAILARLAPEGRLIAFDKDAEAVAEAA----RI--SDA--------R----FSIRHQGFRSLGELP-DA-----S-----------VAGVLMDLGVSSPQIDNELEELQQALEASLSVLQPRGRLAVISFHSLEDRIVKQFIA-------------RHSK-EV----YDRR----A---P-----------FAAP-KAMKLR------AL-ER-IKP---SAAEVHGN-PRSRS----AILRVAER K2JLP8/7-108_212-306 ---VLLNESIEALAI----K-----P-------DGLYVDGTFGRGGHSRAILAKLGANGRLVSIDRDPAAIAEAK----TI--SDP--------R----FTIVQGPFSGLAGYL-DE-----L----GLSGK--VDGLLLDLGVSSPQLDDELDEVKTALDGALKVLATGGRLAVISFHSLEDRLVKQFIR-------------AQEKGPE----LPPG----L---PV----TQDQ--LK---HHKKLK------AV-GKAIFP---GEEETQVN-PRARS----SVLRVAER A0A1F4HDZ9/10-106_211-300 ---VLLNEAITALRI----N-----P-------DGHYIDATFGRGGHSRLLLSQLSALGRLTAFDKDLEAIAEAQ----TI--VDP--------R----FSIRHEGFMQLGQMP-AA-----S-----------AAGVLLDLGVSSPQIDNELEELQQALQASLKVLQPGGRLVVISFHSLEDRIVKQFIA-------------GHSR-EV----FDRR----A---P-----------FAAP-KAMKLK------SL-GR-IKP---SADEVAGN-PRSRS----AVMRVAER A0A0V0PYF9/6-105_207-296 HIPVLLGPLLRAVAP----V-----Q-------G-IWVDGTFGAGGYARGLLAQGADR--VIGIDRDPAVFRMAR----SWA-GEYGD------R----LHLVEGTFSDLDKLA-G-------------GP---VDGVVLDLGVSSMQLD-QFGQLVAGLAAAERALRPGGKLAVVSFHSLEDRIVKRFMQ-------------ARSNSAG---GGSRY----A---PE----AARG--------EPAFT------LPFRRAIGP---DEAELAVN-PRARS----ALLRV--- A0A0K1QYR9/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSKLGPDGRVLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGSEV-VE-----R----GLAGK--VSGVLLDLGVSSPQLDDELGDLEAGLEAALECLEIGGRLVVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----RHVA-------FEPKIK------VH-GKAQSA---SEAELKAN-PRSRS----AVMRVAEK A0A081V0C1/10-110_218-310 ---VLLDEAVESLVT----R-----P-------DGIYVDGTFGRGGHSRAVLARLAAAGRLIAFDKDPRAIETAQ----GI--EDA--------R----FSIVHDSFASMRDAL-AA-----R----GVEK---VSGVLLDLGVSSPQVDDELADLQVVLDAALSLLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLK------II-SR-QFP---SEAEVAAN-PRARS----AVMRIAER W6VM88/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSQLGPDGRVLGFDKDPQAIATGQ----TLAAEDG--------R----FVVVQRSFAELGSEV-AE-----R----GLAGK--VSGVLLDLGVSSPQLDDELGDLEAGLEAALECLEVGGRLVVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----RHVA-------FEPIIK------IH-GKAQSA---SEAELKAN-PRSRS----AVMRVAEK A0A1B5F2P6/12-115_219-313 ---VLLDEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGSDGKLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGAEV-AE-----R----GMAGK--VAGVLLDLGVSSPQLDDELGDLEAGLEAALEALEVGGRLVVISFHSLEDRIVKLFMR-------------RLVKGESD--NLPRN----L---PV----RFEA-------FVPKIK------IH-GKAQFA---SEAELKAN-PRSRS----AVMRVAEK A0A165KNP9/11-111_216-305 ---VLLEEAVDALLG----GAGP-EP-------AGTWVDGTFGRGGHSRRILLRLGPQGRLVAFDKDPEAIAEAT----RI--TDA--------R----FSIRHEGFRHLADLP-PA-----S-----------AAGVLMDLGVSSPQIDSELEELQQALEASLSVLQPGGRLVVISFHSLEDRIVKQFIA-------------KHSK-EV----YDRR----A---P-----------FALP-QAMKLV------AL-DR-IKP---SAAEVEAN-PRARS----AIMRVAER A0A1G0HHN4/6-109_213-305 ---VLLKEAIEALNI----D-----P-------QGFYIDGTFGRGGHARAILSLLSPNGRLLVFDKDPQAILEAK----KLMVEDS--------R----LIVRHGSFIEMAKTV-ID-----L----DWQGK--VAGIFLDLGVSSPQLDEELEELNLFLPQSLSILKEKGRLVVISFHSLEDRLVKQFVQ-------------TLQYDPR----YPKD----L---II----KTSE-------YHVPMK------AI-GKMIKA---NHREIAVN-PRARS----ACLRILEK A1VSU4/11-107_212-301 ---VLLNEAITALQV----N-----P-------DGHYIDATFGRGGHSRLLLSQLSALGRVTAFDKDLDAIAEAQ----SI--DDP--------R----FSIRHQGFMHLDQMP-QA-----S-----------VAGVLMDLGVSSPQIDNELEELQQALQASLKVLQPGGRLVVISFHSLEDRIVKQFIA-------------AHSR-EV----YDRR----A---P-----------FAAP-KVMQLK------AL-GR-TKA---SEEEVAGN-PRSRS----AVMRVAER A0A1J5C2B9/28-112_217-306 ------------------------SA-------EPVFVDATFGRGGHSRLILSRLAADARLIAFDKDLDALAEAA----RI--TDP--------R----FSIRHEGFSHLSELP-PA-----S-----------VAGVLLDLGISSPQVDNELEELQQALEASLHVLQPGGRLVVISFHSLEDRIVKQFIA-------------KHAK-EV----FDRR----A---P-----------FAAP-HVMQFK------AL-GR-VKP---SDAEIAAN-PRARS----AIMRVAER A1K3T8/10-110_214-307 ---VLLTEAVDALAI----K-----P-------EGIYVDGTFGRGGHSRAVLARLGAGGRLIAFDRDPAAIAAGQ----AI--ADP--------R----LELVHAPFSEFAVVL-DR-----L----GVSA---VDGVLLDLGVSSPQLDDELEELTTVLPDCVARLSEGGRLVVISFHSLEDRIVKRFLR-------------DEARPPQ----LPSR----L---PV----RAAD--L----PPPRLQ------LV-GKAQRP---GEAEVAAN-PRARS----AVMRVAER W7QB77/18-119_223-316 ---VLLDGAVEALVH----D-----P-------RGAYLDGTFGRGGHSRAILARLAPEGRLLAIDRDPQAIAEAA----SI--DDP--------R----FTIEQGEFARLGELS-ER-----H----GLHGK--LDGVLLDVGVSSPQLDDELEQLDAALAAALEALAPGGHLVVISFHSLEDRRVKRFIR-------------EHVRGDT---DLPRG----V---PV----RDDQ-------LARRLA------PL-GKAQRP---TPEEVDAN-PRARS----AVMRAARK Q1QNV1/8-112_215-306 HVPVLGREAVAMLAP----R-----A-------GGVYVDATFGAGGYSRAILAVADTR--VIGIDRDRSAIAGGF----ALV-EESGG------R----LTLVEDRFSNLAAVC-AA-----E----GADV---VDGIVMDVGVSSMQLDEELDELIAALAAAERVLRPGGRLAVVSFHSLEDRIVKNFFA-------------LRGKTGG----GSRH----R---PE----IERA--------APSFA------ILTRRPVTA---GQEEVSAN-PRARS----AKLRAAE- A0A0R2UYG0/12-114_216-305 HYPVLLSELISIITP----QY------------GGTFIDCTFGQGGYTNKILSFAETK--VIALDRDLESLKKAE----KVQ------NY-FKDR----FLFKNIKFSQLNNLKLKN-----EN----------IKGVIFDLGYSLNQIKDEISELIYGLINAAKVVKKDGVIAVVTFHSLEDRIVKYFFK-------------SLSENKS----VSRY----M---PK----GDDK--------INLFK------SISKKPITP---SAKEIQEN-PPSRS----AKLRY--- A0A0P1DFP6/10-113_217-311 ---VLLEEAVSALAP----R-----E-------DGCYLDGTFGRGGHSRALLEKLGAGGRLLGFDKDPQAIQTGK----ALAAEDG--------R----FVIVQRSFAELGDEV-RA-----R----GLEGR--VDGVLLDLGVSSPQLDDELGDLERGLDAALESLAVGGRLVVISFHSLEDRIVKLFMR-------------KHAKGEAD--NLPRD----L---PI----RSKV-------FEPRLK------LL-GKPQYA---SEEELKAN-PRSRS----AVMRVAEK A0A080VHR8/10-113_217-311 ---VLLEEAVSALAP----R-----E-------DGCYLDGTFGRGGHSRALLEKLGAGGRLLGFDKDPQAIQTGK----ALAAEDG--------R----FVIVQRSFAELGDEV-RA-----R----GLEGR--VDGVLLDLGVSSPQLDDELGDLERGLDAALESLAVGGRLVVISFHSLEDRIVKLFMR-------------KHAKGEAD--NLPRD----L---PI----RSKV-------FEPRLK------LL-GKPQYA---SEEELKAN-PRSRS----AVMRVAEK A0A0K8P4K5/7-117_222-311 ---VLLHEAVEALVA----R-----DDAP-PRVDGTYVDGTFGRGGHSRALLQRLGQKGRVIALDRDPEAVAAAASGATRV--DDP--------R----FCIRHTRFGDLAAVL-AA-----E----GVHQ---VDGVLLDLGVSSPQIDDELEELQQALSAALALLVPGGRLAVISFHSLEDRIVKTFIA-------------RESR-PE----VDRR----A---P-----------FAPV-PPTRLR------AL-GR-IRP---GAAEVQAN-PRARS----AILRVAER A0A1L5PVI9/12-115_219-313 ---VLLDEAVEALAL----R-----A-------DGCYLDGTFGRGGHSRLILSKLGPQGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGAEV-AE-----R----GLDGK--VSGVLLDLGVSSPQLDDELGDLETGLEAALEALEVGGRLAVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----QHKA-------FEPKIK------LI-GKAQFA---SEAELKAN-PRARS----AVMRVAEK V9WYU1/12-115_219-313 ---VLLDEAVEALAL----R-----A-------DGCYLDGTFGRGGHSRLILSKLGPQGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGAEV-AE-----R----GLDGK--VSGVLLDLGVSSPQLDDELGDLETGLEAALEALEVGGRLAVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----QHKA-------FEPKIK------LI-GKAQFA---SEAELKAN-PRARS----AVMRVAEK A0A143DEZ0/8-113_216-305 HIPVMLTEVLDGLQV----Q-----R-------GGTYVDGTFGAGGYSQAILDASSDT-CVVAIDRDPEAAPRAE----VLA-SRYPG------R----FLFLPGRFGDMASLL-QQ-----A----GVGL---VDGVTLDVGVSSMQIDTEIGELRRGLEGAQSILAPGGRLAIVSFHSLEDREVKAFLS-------------ERSAK-----SVSRL----L---PG---EIPPP--------PATFV------GSGRKAVQC---SAAEAQRN-PRARS----AKLRV--- A0A1A6LCP5/10-111_219-315 ---VLLNESIDGLAI----K-----P-------DGTYIDGTFGRGGHSRTILSKLGENGRLFSIDRDPQAIAEAQ----KI--DDP--------R----FTIIHGPFSGMAEYA-ER-----Y----DLVGQ--VDGVLLDLGVSSPQLDDELEEIDTALKGAASILAPQGRISVISFHSLEDRMVKRFIR-------------KESQGPQ----VPHG----L---PL----TEDQ--IKAL-GSADLK------PV-GKAIKP---SKDEVDEN-TRSRS----SVLRIAEK A0A158IIT8/14-114_222-314 ---VLLKEAVDGLIT----R-----T-------DGIYIDGTFGRGGHSRAILQRLGEAGQLIAFDKDPLAIATAQ----QI--HDS--------R----FSIVHDSFAALRDAA-NE-----R----GVGR---VSGVLLDLGVSSPQVDDELAELQVVLESALALLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLR------VV-GR-VFP---SDAEVADN-PRARS----AVMRIAER A0A1B8TLV4/12-115_219-313 ---VLLEEAVEALAP----L-----E-------DGRYVDGTFGRGGHSRALLGKLGPGGQLLGFDKDPQAIATGK----TLAAEDG--------R----FVIVQRSFAEMGEEF-SA-----R----GLQGS--VNGVLLDLGVSSPQLDDELGDLERGLEAALEGLAVGGRLVVISFHSLEDRIVKQFMR-------------KQVKGEAD--NLPRN----L---PI----QVKP-------FDPRLK------LI-GKPVYA---SEAELKAN-PRSRS----AVMRIAEK A0A0S9LUB3/10-113_218-310 ---VLLNEAVEALFN----K-----QAQPAPGAARTFVDATFGRGGHSRLLLSRLGPDDRLVAFDRDPQAVAAAA----QI--ADP--------R----FSIRHQAFHALGELP-EA-----S-----------VAGVLMDLGVSSPQIDDELEELQQALNAALRVLAPGGRLAVISFHSLEDRIVKQFVA-------------RHAK-ET----VDRR----S---PD--------WMLGKS-AAMPLK------SL-GR-VMP---SAAEVAAN-PRARS----AVMRVAER A0A1C6LWR9/11-113_217-310 ---VLLDEAVAALAI----R-----P-------DGVYVDCTFGRGGHSRLILSQLGPQGRLIAFDKDPEAIAVAT----ALAAQDA--------R----FTIVHNGFETFTAEL-TA-----L----GVAE---VDGVLMDLGISSPQIDDELDELKAVLPQVVGRLKLGGRLAVISFHSLEDRIVKNFIR-------------EASTTDR----LPSW----V---PV----RAAD--I----AEAPIR------AV-GKALRP---GDEEVAAN-PRARS----AIMRTAER A0A0N0M1W0/10-112_216-310 ---VLMDETIEGLAI----K-----P-------DGIYMDGTFGRGGHSGQILARLGETGRLQAIDQDPQAIKSAE----KF-ADDK--------R----FAIAHTRFSKLYEVA-EQ-----N----DLIGK--VDGILLDIGVSSPQLDDELEEIQTALQSAVKVLKPGGRLVVISFHSLEDRIVKQFIR-------------KQSKGEA----LPRG----L---PL----TDAQ--IN---KNLTLK------AV-GKAIKP---SAAEVERN-TRSRS----SVLRVAQR A0A1F4N8Q6/13-122_227-316 ---VLLHEAVEALWD----A-----AEGPHP--QGVYVDATFGRGGHSRLILSRLGPEARLIALDRDPDAIAHATQGPDAI--TDP--------R----FQIVHAPFSSWAEVI-AD-----L----GLGP---VQGLLMDIGVSSPQIDNELGELEDALASALTMLAPGGRLAVISFHSLEDRIVKTFIA-------------KHSK-DE----VDRR----V---P-----------FAAP-KPLMLH------AI-GR-LKP---SESEVSGN-PRSRS----AVLRVAER B2JHG8/14-114_222-314 ---VLLEEAVNALVT----R-----V-------DGIYIDGTFGRGGHSRAVLAKLGEAGRLIAFDKDPLAIATAQ----QV--ADP--------R----FEIVHESFASLRDAM-SE-----R----AVGR---VSGVLLDLGVSSPQFDDELAELQVVLEAALSLLEQGGRLVVISFHSLEDRIVKRFMQ-------------THSSAPA----VDRR----L---PI----RAVD------LPSPPLK------LL-GR-VFA---SDEEVAAN-PRARS----AVMRVAER A0A084ES22/6-107_208-298 HIPVLLTEVLDALAI----T-----P-------GERHVDGTFGAGGYSSAMAAAG-AQ--VFAFDRDPDAIREGQ----AL--ADEKG-----------ITLIPGEFSRMEELL-AE-----R----GVSS---VSGITLDIGVSSMQLDRELEELERALEAAEALLEPGGRLAIVTFHSLEDRIVKQFLR-------------KRSGSEA---GGSRH----L---PE---KKAEA--------APAFE------KP-AKAVKP---GETELARN-PRARS----ATLRS--- I1DUI1/9-111_216-310 ---VLLQEALDGLAI----K-----A-------DGCYLDGTFGRGGHSRAILAELGPQGRLFAIDRDPAAIAAAA----PL-AGDP--------R----FHITHSPFAALATIA-EQ-----Q----QIIGK--IDGILLDLGVSSPQLDDELEQVNQALHAAMQVLKPGGRLVVISFHSLEDRLVKQFMR-------------RYSKGEP----LPRG----I---PL----TAAQ--MQ---QRTELE------LV-GKAIMP---SEQELELN-PRARS----AVLRIAQK A0A177SQX6/12-115_219-313 ---VLLDEAVEALSV----R-----A-------DGCYLDGTFGRGGHSRLILQKLGPNGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSEV-AE-----R----GLAGK--VSGVLLDLGVSSPQLDDELGDLEAGLDAALDALEVGGRLAVISFHSLEDRIVKLFMR-------------KLAKGEQD--NLPRN----L---PV----QHKP-------FEPKIK------LI-GKAQFA---SDAELKAN-PRSRS----AVMRVAEK A0A0J5XML3/10-111_215-311 ---VLLDEAVNGLNI----R-----S-------GGIYIDGTFGRGGHSRLILSQLGPEGRLLAIDRDPQAIEAAK----AI--DDS--------R----FSIIHGPFSAMADYV-AE-----L----GLTGQ--IDGVLLDLGVSSPQLDDELEEIERALEGALSVLAPQGRLSVISFHSLEDRIVKRFIR-------------HQSRGPQ----VPAG----L---PL----TEEQ--LRSQ-GGQTLK------PV-GKKLMP---SEEEVAEN-PRARS----SVLRFAER A9NA25/7-110_214-305 ---VLFDEVMEGLAI----R-----P-------DGIYVDGTFGRGGHSFGILQRLGPNGRLMAMDKDPDAVAVAN----KALFEDA--------R----FSIVHETFANLQKAV-RD-----R----GWEGK--VNGILLDIGVSSPQLEDELDELRECLPQCLETLAVGGRLCVISFHSLEDRLVKRFIQ-------------KESRDH-----LPRE----I---PI----LAKD-------IKHRLK------PL-GSLIRP---TEAEIKKN-PRARS----ARLRIVEK A0A1L8A846/7-110_214-305 ---VLFDEVMEGLAI----R-----P-------DGIYVDGTFGRGGHSFGILQRLGPNGRLMAMDKDPDAVAVAN----KALFEDA--------R----FSIVHETFANLQKAV-RD-----R----GWEGK--VNGILLDIGVSSPQLEDELDELRECLPQCLETLAVGGRLCVISFHSLEDRLVKRFIQ-------------KESRDH-----LPRE----I---PI----LAKD-------IKHRLK------PL-GSLIRP---TEAEIKKN-PRARS----ARLRIVEK B6J5L7/7-110_214-305 ---VLFDEVMEGLAI----R-----P-------DGIYVDGTFGRGGHSFGILQRLGPNGRLMAMDKDPDAVAVAN----KALFEDA--------R----FSIVHETFANLQKAV-RD-----R----GWEGK--VNGILLDIGVSSPQLEDELDELRECLPQCLETLAVGGRLCVISFHSLEDRLVKRFIQ-------------KESRDH-----LPRE----I---PI----LAKD-------IKHRLK------PL-GSLIRP---TEAEIKKN-PRARS----ARLRIVEK A0A0Q0FDB8/10-112_216-310 ---VLMDETIDALAI----K-----P-------DGIYMDGTFGRGGHSGQILARLGEQGRLQAIDQDPQAIKSAE----KF-ADDS--------R----FAIAHTRFSNLYDVA-EQ-----N----DLLGK--VDGILLDIGVSSPQLDDELEEIQTALQAAVKVLKPGGRLVVISFHSLEDRIVKQFIR-------------KQSKGEA----IPRG----L---PL----TDAQ--IN---KNLTLK------AV-GKAIKP---SAEEIERN-PRSRS----SVLRIAQR Q0F4W6/13-116_220-311 HIPVLLTPILDSVKP----I-----S-------G-IWVDGTFGAGGYSRAILDAGADT--LYAIDRDPEVFARAK----KWA-KDYDG------R----LKLIHGTFSDLDTHV-KN-----A----GTDL---IDGVVLDIGVSSMQLDQELGQLVSGLRAAENILREGGLLAVVTFHSLEDRIVKRFIQ-------------ARSGNNP---RGNRY----Q---PE----KTND--------IATFE------KIGRKAIAA---NKDEINSN-PRARS----AKLRLA-- Y0KK09/28-128_233-326 ---VLLQEAVDALAL----K-----S-------DGVYVDGTFGRGGHSRLILSKLGPAGRLIGMDRDMAAYRSAQ----SI--DDP--------R----FQIAHRHFSEIEEVL-GQ-----F----GVDK---VDGILLDLGISSPQIDEELEELSLILPKCLAALRTGGRLVVISFHSLEDRMVKRFIQ-------------NEVLRDD----LPSR----F---PI----KAKD--L----PQPRML------AI-GRAIKP---SDAEVKRN-PRSRS----AVMRVAER Q0BIK9/10-110_218-310 ---VLLDEAVESLVT----R-----P-------DGIYVDGTFGRGGHSRAVLARLAEGGRLIAFDKDPRAIETAQ----RI--EDA--------R----FSIVHDSFASMRDAL-AA-----R----GIEK---VSGVLLDLGVSSPQVDDELADLQVVLDAALSLLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLK------II-SR-QFP---SEAEVVAN-PRARS----AVMRIAER A0A0N7M2L6/12-110_214-304 HVPVLLRPLLKAVAP----V-----S-------G-RWLDGTFGAGGYTRGLLEAGADQ--VIGVDRDPLAFELAR----PWA-AEYGD------R----LVLQEGVFSRMDEYA---------------QD---LDGVVLDLGVSSMQLDIEYEELFNGLLAAERALKPGGLLAVVTFHSVEDRMVKRFFQ-------------HRAGKTG---RANRY----A---PE----MEES--------PAQFE------LVTRKAVGP---DDDELAEN-PRSRS----ARLRV--- A0A1D8IRL0/11-114_218-311 ---VLLEEAVAGLAI----K-----A-------EGGYVDATFGRGGHSRAMLARLGPEGHLLGLDRDPSAVEAAR----ELAAVDR--------R----FSIEHAPFSHLESCW-RA-----H----AGNAQ--AQGVLMDLGVSSPQLDQELDELSEALTQAVSILSPGGRLAVISFHSLEDRIVKRFMR-------------EQARGEQ----APRN----L---PV----RDLP--T----PGRTLS------LV-GKAIHA---SVAEVAHN-PRARS----AVLRVAER A0A085VFU8/10-113_217-311 ---VLLEEAVEALAV----R-----A-------DGCYMDGTFGRGGHSRLILQKLGPDGRLLGFDKDPQAIATGQ----TLAAEDG--------R----FVIVQRSFAELGSEA-QT-----R----GIAGK--VNGILLDLGVSSPQLDDELGDLEAGLEAALEALEIGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QYKA-------FDPKIR------IH-GKAQFA---SDVETKAN-PRSRS----AVMRVAEK A0A176Z2R9/6-110_213-304 HIPVLGREAVDYLAP----R-----A-------GGIYVDATFGGGGYSRAILDVQGTR--LIAIDRDRTAIAGGF----ELV-DRSAG------R----LTLVEDRFSNLAEVC-AA-----Q----GVDA---VDGVVMDVGVSSMQLDQELDELKTALAAAERVLRPGGRLVVVSFHSLEDRIVKTFLS-------------ERAKTGG----GSRH----L---PE----VAQA--------APSFQ------LLTRRPVVA---GDDEVAHN-PRARS----AKLRAAE- A0A061JMS9/12-115_219-313 ---VLLDEAVAALTV----R-----P-------DGRYLDGTFGRGGHSRLLLQQLGPDGLLLGFDKDPLAIATGQ----ALAAEDG--------R----FVVVQRSFAELGEEV-AQ-----R----GWVGS--VSGVLLDLGVSSPQLDDELGDLERGLDAALDALEVGGRLVVISFHSLEDRIVKQFMR-------------RHAKGEAD--KLPRD----L---PI----IPKA-------FEPRLK------LL-GKPQYA---SEAEVKAN-PRSRS----AVMRVAEK A0A0P7Z2L8/71-172_276-369 ---VLLDGAVDALVH----Q-----P-------DGVYLDGTFGRGGHSRVILSRLNDTGRLIALDRDPQAVAAAA----AI--TDA--------R----FTMVQRDFARLAEVA-KE-----Q----GVHGK--LAGILLDVGVSSPQLDDELEQLDAALEAALDALAPGGHLVVISFHSLEDRRVKRFIR-------------HHVRGDT---HLPRG----V---PI----RDDQ-------LNRRLE------AL-GKGRRP---SDDEVTDN-PRARS----AVMRAARK A0A0R2W925/12-111_215-307 ---VLLHEAIDALVT----D-----P-------DGFYVDGTFGRGGHTAELLSRLSSKGRVLAIDKDPQAIEAGR----QRFADDS--------R----LTIVHGSFADMGEWV-EG-----RA----------ITGVLVDLGVSSPQLDQELDDLNALLKQVIDLLQVGGRLVVISFHSLEDRQVKRFIR-------------DQERGIQ----LPRN----L---PV----RDVE-------RGVRLK------KI-GKAVMP---NDSEVDDN-VRSRS----AVMRISER Q12EM3/10-106_211-300 ---VLLNEAIAALHI----N-----P-------DGHYIDATFGRGGHSRLLLSQLSPQGRLTAFDKDLDAIAEAQ----TI--TDP--------R----FSIRHEGFMHLGQLP-AA-----S-----------AAGVLMDLGVSSPQIDNELEELQQALEASLKVLQPGGRLVVISFHSLEDRIVKQFIA-------------GQSR-EV----FDRR----A---P-----------FAAP-KAMRLK------AL-GR-IKP---SEEEIAAN-PRSRS----AVMRVAER A0A1J5SUZ8/6-106_210-303 ---VLLNEAVEALQV----K-----A-------DGIYVDGTFGRGGHSRLILEKLGARGRLIALDKDPAAVAAGR----AI--SDE--------R----FRLEHSGFEHMGAAL-GR-----L----GIDR---VDGVLLDLGVSSPQLDDELEELESVLPQCVDHLKAGGRMAVISFHSLEDRMVKRFMR-------------EMAEGDK----LPKG----V---PI----RAAE--V----PQGKVR------VV-GKPIRA---SEAEVAAN-PRARS----AVLRIAER A0A0J6ILR9/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILQKLGPQGQLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAEMGSEV-AA-----R----GLAGK--VSGVLLDLGVSSPQLDDELGDLEAGLEAALESLEIGGRLVVISFHSLEDRIVKLFMR-------------KLVKGEPD--NLPRG----L---PV----QHVA-------FVPKIK------IH-GKAQTA---CEAEIKAN-PRSRS----AVMRVAEK A0A105T4G0/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILQKLGPQGQLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAEMGSEV-AA-----R----GLAGK--VSGVLLDLGVSSPQLDDELGDLEAGLEAALESLEIGGRLVVISFHSLEDRIVKLFMR-------------KLVKGEPD--NLPRG----L---PV----QHVA-------FVPKIK------IH-GKAQTA---CEAEIKAN-PRSRS----AVMRVAEK A0A0J6LU55/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILQKLGPQGQLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAEMGSEV-AA-----R----GLAGK--VSGVLLDLGVSSPQLDDELGDLEAGLEAALESLEIGGRLVVISFHSLEDRIVKLFMR-------------KLVKGEPD--NLPRG----L---PV----QHVA-------FVPKIK------IH-GKAQTA---CEAEIKAN-PRSRS----AVMRVAEK I7EKB0/12-110_214-304 HVPVLLRPLLKAVAP----V-----S-------G-RWLDGTFGAGGYSRGLLEAGADH--VIGVDRDPLAFEMAE----SWI-GDYAG------R----LTLQQGVFSRMDEYA---------------QD---LDGVVLDLGVSSMQLDLEYEELFEGLLAAERALKPGGLLAVVTFHSIEDRMVKRFFQ-------------HRAGKTG---RANRY----A---PE----VEET--------PSQFA------LVTRKAVGP---DDEELAEN-PRSRS----ARLRV--- I7EKD5/12-110_214-304 HVPVLLRPLLKAVAP----V-----S-------G-RWLDGTFGAGGYSRGLLEAGADH--VIGVDRDPLAFEMAE----SWI-GDYAG------R----LTLQQGVFSRMDEYA---------------QD---LDGVVLDLGVSSMQLDLEYEELFEGLLAAERALKPGGLLAVVTFHSIEDRMVKRFFQ-------------HRAGKTG---RANRY----A---PE----VEET--------PSQFA------LVTRKAVGP---DDEELAEN-PRSRS----ARLRV--- A0A135IJS4/12-110_214-304 HVPVLLRPLLKAVAP----V-----S-------G-RWLDGTFGAGGYSRGLLEAGADH--VIGVDRDPLAFEMAE----SWI-GDYAG------R----LTLQQGVFSRMDEYA---------------QD---LDGVVLDLGVSSMQLDLEYEELFEGLLAAERALKPGGLLAVVTFHSIEDRMVKRFFQ-------------HRAGKTG---RANRY----A---PE----VEET--------PSQFA------LVTRKAVGP---DDEELAEN-PRSRS----ARLRV--- U2FM17/10-110_218-310 ---VLLDEAVESLVT----R-----P-------DGVYVDGTFGRGGHSRAVLARLATAGRLIAFDKDPRAIETAQ----GI--EDA--------R----FSIVHDSFASMRDAL-AA-----R----GIEK---VSGVLLDLGVSSPQVDDELADLQVVLDAALSLLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLK------II-SR-QFP---SEAEVAAN-PRARS----AVMRIAER A0A0J5VJR3/10-110_218-310 ---VLLDEAVESLVT----R-----P-------DGVYVDGTFGRGGHSRAVLARLATAGRLIAFDKDPRAIETAQ----GI--EDA--------R----FSIVHDSFASMRDAL-AA-----R----GIEK---VSGVLLDLGVSSPQVDDELADLQVVLDAALSLLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLK------II-SR-QFP---SEAEVAAN-PRARS----AVMRIAER A0A0J6LKJ9/10-110_218-310 ---VLLDEAVESLVT----R-----P-------DGVYVDGTFGRGGHSRAVLARLATAGRLIAFDKDPRAIETAQ----GI--EDA--------R----FSIVHDSFASMRDAL-AA-----R----GIEK---VSGVLLDLGVSSPQVDDELADLQVVLDAALSLLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLK------II-SR-QFP---SEAEVAAN-PRARS----AVMRIAER A0A119AW20/10-110_218-310 ---VLLDEAVESLVT----R-----P-------DGVYVDGTFGRGGHSRAVLARLATAGRLIAFDKDPRAIETAQ----GI--EDA--------R----FSIVHDSFASMRDAL-AA-----R----GIEK---VSGVLLDLGVSSPQVDDELADLQVVLDAALSLLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLK------II-SR-QFP---SEAEVAAN-PRARS----AVMRIAER H1LPT9/15-116_226-320 ---VLLHEAVNGLAL----K-----E-------NGIYIDGTFGRGGHSRLILSKLSSNGRLIGIDRDPRAIAEAQ----KI--QDS--------R----FQIEHNSFSHIPEIC-EK-----L----NLVGK--IDGILLDLGVSSPQLDEELDELESVLNSALDMLAPEGRLSIISFHSLEDRMVKHFMK-------------KQSKGED----IPKG----L---PL----REDQ--IQ---RNQKLK------II-GKAIQP---SDAEIQAN-PRSRS----AVLRVAER A0A149PZQ2/14-114_222-314 ---VLLNEAVDALVT----R-----A-------DGTYVDGTFGRGGHSRLVLERLGEAGRLIAFDKDPLAIATAQ----KI--ADP--------R----FAIVHESFASLRAAM-AE-----R----GVGR---VSGVLLDLGVSSPQVDDELAELQVVLEAALSLLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASTPA----VDRR----L---PI----RAVD------LPSPPLK------II-GR-VFA---SDAEVADN-PRARS----AVMRVAER A0A1F3B7V6/10-114_217-259_280-309 HVPVLLAEVVEALAP----V-----D-------GGVYVDGTFGAGGYTRAILSAANCQ--VFAVDRDPLAQARGR----QMA-GEFSG------R----LTMVAGRFGEMDGLL-EA-----L----GVSK---VNGVALDIGVSSMQIDAELGELERGLEGAERLLVPGGRLAVVTFHSLEDRIVKNFLR-------------QRS-----------------------------------------FQ------MPQRRGVRP---GEVECRAN-SRARS----AKLRWA-- A0A120DHC1/10-111_219-315 ---VLLNESIDGLAI----K-----P-------DGTYIDGTFGRGGHSRTILSKLGENGRLFSIDRDPQAIAEAQ----KI--DDP--------R----FTIIHGPFSGIAEYA-ER-----Y----DLVGQ--VDGVLLDLGVSSPQLDDELEEIDTALKGAASILAPEGRLSVISFHSLEDRMVKRFIR-------------KESQGPQ----VPHG----L---PL----TEDQ--IKAL-GSADLK------PV-GKAIKP---SKDEVDEN-TRSRS----SVLRIAEK J4QMZ4/42-132_236-328 -------------------A-----E-------RGVFVDGTFGRGGHSRELLGRLGKDARLVVFDKDPEAIAVAN----ALAAADP--------R----VTVIHGGFATMAEEL-EQ-----R----GIGK---VDGVMLDLGVSSPQIDDELEELARTLAAALDLLAPGGRLAVISFHSLEDRMVKQCIA-------------AAARPAA----AHAR----L---PL----RESE--M----PQPILR------SL-GR-VLA---EDDEVSAN-ARARS----AVLRVAER D5W4W7/10-110_218-310 ---VLLNEAVDALVT----R-----A-------DGTYVDGTFGRGGHSRLVLERLGEAGRLIAFDKDPLAIATAQ----KI--ADP--------R----FAIVHESFASLRAAM-AE-----R----GVGR---VSGVLLDLGVSSPQVDDELAELQVVLEAALSLLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLK------II-GR-VFA---SDAEVADN-PRARS----AVMRVAER J3HDN7/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSQLGPEGRLLGFDKDPQAIATGQ----TLAAEDG--------R----FVVVQRSFAELGSEV-AE-----R----GLAGK--VSGVLLDLGVSSPQLDDELGDLEAGLEAALESLEIGGRLVVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----RHVA-------FEPKIK------IH-GKAQSA---SEAELKAN-PRSRS----AVMRVAEK A0A0C2A3X1/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSQLGSDGRLIGFDKDPQAIATGQ----TLAAEDG--------R----FVVVQRSFAELGSVV-AE-----Q----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLDAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----RHVA-------FEPKIK------IH-GKAQTA---SDAELKAN-PRSRS----AVMRVAEK A0A081RJ15/14-115_216-306 HIPVLIEEVLDALAI----N-----P-------GEAHVDGTFGAGGYSSAMAAKG-AK--VFAFDRDPDAIREGQ----AL--ADAQG-----------ITLIAGEFSRMEALL-AE-----R----GVTS---VAGVTLDIGVSSMQLDRELEELERGLEAAEAILEEGGRLAVVTFHSLEDRIVKQFLR-------------NRSGGDA---GGSRH----L---PQ---KHSGP--------APTFA------KP-AKAVRP---GEAELARN-LRARS----ATLRS--- A0A0P9JUD6/10-113_217-311 ---VLLEEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILNHLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSQA-QE-----L----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAAMESLEVGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QYKA-------FEPKIK------IH-GKAQFA---SDVETKAN-PRSRS----AVMRVAEK A0A0P9JET3/10-113_217-311 ---VLLEEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILNHLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSQA-QE-----L----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAAMESLEVGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QYKA-------FEPKIK------IH-GKAQFA---SDVETKAN-PRSRS----AVMRVAEK Q87WX7/10-113_217-311 ---VLLEEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILNHLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSQA-QE-----L----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAAMESLEVGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QYKA-------FEPKIK------IH-GKAQFA---SDVETKAN-PRSRS----AVMRVAEK A0A0N8T4U5/10-113_217-311 ---VLLEEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILNHLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSQA-QE-----L----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAAMESLEVGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QYKA-------FEPKIK------IH-GKAQFA---SDVETKAN-PRSRS----AVMRVAEK A0A0N0FQ43/10-113_217-311 ---VLLEEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILNHLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSQA-QE-----L----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAAMESLEVGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QYKA-------FEPKIK------IH-GKAQFA---SDVETKAN-PRSRS----AVMRVAEK A0A0P9KFC4/10-113_217-311 ---VLLEEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILNHLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSQA-QE-----L----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAAMESLEVGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QYKA-------FEPKIK------IH-GKAQFA---SDVETKAN-PRSRS----AVMRVAEK G4QC63/37-128_232-324 ------------------FK-----T-------SGVFVDGTFGRGGHSRYLLSLLGRDSKLFVFDRDPQAIEAAK----QLKEEDE--------R----VEVVHGAFSSMQKSL-SD-----F----GIQK---VDGITMDLGISSPQIDDELEELSRSLATAIDLLKVGGRLSVISFHSLEDRIVKQFIA-------------KESNPAS----EFAR----L---PI----REID--M----PKGSLK------SL-GK-LTA---TEAEIASN-PRSRS----AILRVAER A0A1D7NKB3/5-108_209-299 HIPVLLDEVIAAIKP----A-----P-------GMTIVDATFGAGGYTAALLDAG-AS--VHAFDRDPDAIAAGQ----VML-ARYEG------R----LALHPARFSQMQAEL-AA-----I----GVTQ---VDAVVMDIGVSSMQLDQELGELEAGLAAAEALLAPGGVLAVVSFHSLEDRIVKHFLR-------------AASGAGR---AVSRH----L---PG---EVAGP--------PPVFA------HV-SKGIRP---SEAEIDRN-PRARS----STLRH--- Q2NCZ8/7-112_213-303 HVPVLLDEVVAALDP----Q-----P-------GDVLVDATFGAGGYTRALLDSG-AT--VHAFDRDPDAIAAGS-----QW-PETKEEP---PR----LVLHPRRFSEMVHAL-AE-----A----GVAQ---VDGVAMDIGVSSMQLDQELDELREGLHAAEHLLRSGGRLAVVSFHSLEDRIVKRFLQ-------------SASGKAG---GTSRY----L---PQ----TDVS--------PAIFS------DI-SKAIRP---SEAEIARN-PRARS----STLRHA-- A0A074MEV9/7-110_211-301 HIPVLLDEVVAAIAP----T-----N-------GMSIIDATFGAGGYSRALLASG-AR--VYAFDRDPNAIRDGQ----AMV-AEFDG------R----LSLHPERFAQMREEM-ER-----I----GVPQ---VDAVVMDIGVSSMQLDQELGELRAGLAAAELLLKEGGKLAVVSFHSLEDRLVKRFFK-------------EASGAGR---AVSRH----L---PG---EMPGP--------APTFT------KV-SKAIRP---SEAEIARN-PRSRS----SILRH--- A0A0U4WSU4/10-113_217-311 ---VLLDEAVQALAI----Q-----P-------AGRYLDGTFGRGGHSRAVLRLLGEEGRLLGFDKDPQAIAAGQ----ALAVEDS--------R----FEIVQRSFAELGDEL-VS-----R----GWSGQ--VDGVLLDLGVSSPQLDDELSDLEQGLQAAYEQLAVGGRLVVISFHSLEDRIVKQFMR-------------RLAKGEAD--QLPRD----L---PI----RATV-------FEPSLR------LL-GKPVYA---GEGELAAN-PRARS----AVMRVAEK A0A118G3Z0/10-110_218-310 ---VLLDEAVDSLVT----R-----P-------DGIYVDGTFGRGGHSRAVLARLAPTGRLIAFDKDPRAIETAQ----RI--EDA--------R----FSIVHDSFASMRDAL-AA-----R----GVEK---VSGVLLDLGVSSPQVDDELADLQVVLDAALSLLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLK------II-SR-QFP---SEAEVAAN-PRARS----AVMRIAER A0A0Q0LN16/10-111_219-315 ---VLLNESIEGLAI----K-----P-------DGIYIDGTFGRGGHSRTILAQLGPQGRLYSIDRDPQAIAEAQ----KI--DDP--------R----FTIVHGPFSGIAEYA-QR-----Y----DLVGK--VDGVLFDLGVSSPQLDDELEEIDTALRGASDILAPQGRLSVISFHSLEDRMVKRFMR-------------KESQGPQ----VPHG----I---PL----TQDQ--IRAL-GSAKMK------TV-GKALKP---SDQEVELN-PRSRS----SVLRVAEK A0A0B1YVQ7/10-110_218-310 ---VLLDEAVESLVT----R-----P-------DGIYVDGTFGRGGHSRAVLARLAPAGRLIAFDKDPRAIETAQ----RI--EDA--------R----FSIVHDSFASMRDAL-AA-----R----GIEK---VSGVLLDLGVSSPQVDDELADLQVVLDAALSLLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLK------II-SR-QFP---SEAEVVAN-PRARS----AVMRIAER A0A1E3ZJR8/10-116_220-312 ---VLLEPTIDALAVPADGV-----G-------AGVWVDATFGRGGHTRELLARLGPEARLVVFDKDPQAISVAR----ALAEQDR--------R----VTVVHEGFGGLAEEM-SR-----L----GIAR---ISGLMMDLGISSPQIDDELEELPRALAAALDLLAPGGRLAVISFHSLEDRIVKQFIA-------------AAARPGA----ETAR----L---PL----RESE--R----PQPVLA------SI-GR-ILP---TEAEVAAN-PRARS----AVLRVAER A0A017HM57/1-84_186-275 -------------------------------------MDGTFGAGGYARGLVEAGAAK--VIGIDRDPAVHGMAR----DWL-PGFHG----------TIVLREGTFSELDHIA-EE-----E----GAER---VDGVVLDLGVSSMQID-TYGELARGLEAAERALAPGGLLAVVSFHSVEDRMVKRFLQ-------------IRSGRMG---QGSRH----A---PE----AEAE--------APAFE------MVTRRSVEP---DEAELALN-PRARS----ARLRV--- A0A1E9C2N0/12-115_219-313 ---VLLEEAVSALAP----R-----E-------DGCYLDGTFGRGGHSRALLEKLGAGGRLLGFDKDPQAIQTGK----ALAAEDG--------R----FVIVQRSFAELGDEV-RA-----R----GLEGR--VDGVLLDLGVSSPQLDDELGDLERGLDAALESLAVGGRLVVISFHSLEDRIVKLFMR-------------KHAKGEAD--NLPRD----L---PI----RSKV-------FEPRLK------LL-GKPQYA---SEEELKAN-PRSRS----AVMRVAEK A0A087F8Y1/10-113_217-311 ---VLLDEAVEGLAV----R-----A-------DGCYMDGTFGRGGHSRLILQKLGPGGRLLGFDKDPLAIATGE----ALAAEDG--------R----FVVVQRSFAELGDEA-VV-----R----GISGR--VSGILLDLGVSSPQLDDELGDLERGLEAALETLEVGGRLVVISFHSLEDRIVKQFMK-------------RQAKGEAD--KLPRD----L---PI----IPKA-------FEPRLK------LI-GKPVYA---GDAELKAN-PRSRS----AVMRIAEK B1SZ10/10-110_218-310 ---VLLDEAVESLVT----R-----P-------DGIYVDGTFGRGGHSRAVLARLAEAGRLIAFDKDPRAIETAQ----RI--EDA--------R----FSIVHDSFASMRDAL-AA-----R----GIEK---VSGVLLDLGVSSPQVDDELADLQVVLDAALSLLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPSLK------II-SR-QFP---SEAEVVAN-PRARS----AVMRIAER A0A0Q7X0B3/14-117_221-313 ---VLLDEAVDALDLAG-AR-----A-------NGIYIDGTFGRGGHSRLILSRLGPEARLIAFDKDLQAIANAE----TI--DDA--------R----FTIVHDSFATMADAL-AE-----R----GIPA---VDGILLDLGISSPQVDDELEDLESALSQAFDALKPGGILAIISFHSLEDRMVKQFLA-------------SKAKVEQ----PDRR----L---PI----KAAD------LPQPELK------LL-AR-IKP---SDKEVDEN-PRARS----AVMRVAMR C0EQE1/12-114_218-311 ---VLLHEAVDALAI----R-----E-------DGIYVDGTFGRGGHSRLILSRLGEQGRLVVFDKDPEAIAVAN----ELAAQDK--------R----VSVVHNGFETFQTAL-DE-----L----GIDK---IDGALFDLGISSPQIDDELEEVEAVLPQVAGRLKEGGRLAVIAFHSLEDRIVKQFIK-------------KYSQHAP----LPRW----A---VV----KEAD--L----PQPPLK------AV-GKAIKP---GSTETEAN-PRARS----AVLRVAER A0A1E4MDS5/15-120_221-312 HVPVLLDEVVEALAP----S-----P-------GDVIVDATFGAGGYTRRLLAAG-AT--VHAFDRDPDAIAAGR-----RW-PEAQGDA---PR----LVLHPRRFSELAEGL-AE-----A----GVAS---VQGVVFDIGVSSMQLDQELDELVAGLAGAERMLVPGGRLAVVSFHSLEDRIVKQFLR-------------EAAGAMP---AGSRH----L---PQ---LASTV--------KPVFE------KP-SSAIRP---TSAEEARN-PRARS----ATLRWA-- A0A147H9Y5/10-113_217-311 ---VLLDEAVQALEI----Q-----P-------AGRYLDGTFGRGGHSRAVLRLLGGEGRLLGFDKDPQAIAAGQ----ALAAEDA--------R----FEIVQRSFAELGDEL-VS-----R----GWSGQ--VDGVLLDLGVSSPQLDDELSDLEQGLQAAYEQLAVGGRLVVISFHSLEDRIVKQFMR-------------RLAKGEAD--QLPRD----L---PI----RATV-------FEPSLR------LL-GKPIYA---SEGELAAN-PRARS----AVMRVAEK A0A0W1ACK9/7-110_214-306 ---VLLHESIDGLAI----K-----S-------GGTYFDGTFGRGGHSREILSHLNDQGRLYAIDKDLDAIVYAT----EHFSQDK--------R----FHIFQGSFARIQEFA-TE-----A----GVLGK--VDGILLDLGVSSPQLDNELNDLKSCLEQCIKVLAPKGRLVVISFHSLEDRIVKQFMR-------------DKEQGAK----PPPE----V---PI----RHEE-------LTTNFK------RI-GKAIMP---KDSEVKEN-VRARS----AVLRIGEK S5U010/10-114_218-310 ---VLLDEAIEGLIR----Q-----T-------DGVYIDGTFGRGGHSGSILQVLSPQGRLLAIDKDMDAVNSPQA---QALLKDE--------R----FELAHSSFAQMEQLA-QE-----R----HWDGA--VDGILLDLGVSSPQLDVELDDLEQALASSLSMLKQGGRLAVISFHSLEDRIVKRFIR-------------EQSRGEI----VPRH----L---PM----PLDA-------KKPVLK------VV-GKAIKA---SANEVAGN-VRSRS----AVLRIAEK K0C3Z1/10-114_218-310 ---VLLDEAIEGLIR----Q-----T-------DGVYIDGTFGRGGHSGSILQVLSPQGRLLAIDKDMDAVNSPQA---QALLKDE--------R----FELAHSSFAQMEQLA-QE-----R----HWDGA--VDGILLDLGVSSPQLDVELDDLEQALASSLSMLKQGGRLAVISFHSLEDRIVKRFIR-------------EQSRGEI----VPRH----L---PM----PLDA-------KKPVLK------VV-GKAIKA---SANEVAGN-VRSRS----AVLRIAEK C6X980/19-119_224-317 ---VLLEEAVAALAI----K-----P-------NGIYVDGTFGRGGHSRKILEQLGADGRLLGLDRDLAAVSAAR----SI--QDP--------R----FSIHHHHFSELGEVL-RA-----Q----DIQQ---VDGVLLDLGISSPQIDEELEELSLVLPQCLDALAPGGRLAVISFHSLEDRIVKRFVR-------------SEQDRDD----LPAN----F---PV----LAKD--L----PQPRMM------AV-GKPIKP---SAAEIKRN-PRSRS----AVLRVAER A0A1E8SCA7/11-113_217-310 ---VLLNEAVDALAV----R-----E-------DGIYVDGTFGRGGHSRLILSRLGSQGRLIVFDKDPQAIEAAQ----KLAEQDG--------R----VTVVHDGFLSFQTTL-DK-----L----GIEE---IDGALFDLGISSPQIDDELEEVEAVLPQVMGRLKQGGRLAVIAFHSLEDRIVKQFVK-------------KYSQHPP----LPRW----A---AV----KEAD--L----PLPPLK------SV-GKAIKP---GVEETAFN-PRARS----AVLRVAER Q6D0H5/10-111_215-311 ---VLLDEAVNGLNI----R-----S-------GGIYIDGTFGRGGHSRLILSQLGPEGRLLAIDRDPQAIEAAK----AI--DDS--------R----FSIIHGPFSAMADYV-AE-----L----GLTGQ--IDGVLLDLGVSSPQLDDELEEIERALEGALSVLAPQGRLSVISFHSLEDRIVKRFIR-------------HQSRGPQ----VPAG----L---PL----TEEQ--LRSQ-GGQTLK------PV-GKKLMP---SEAEVAEN-PRARS----SVLRFAER A1U3G6/18-120_224-316 ---VLLDAAVDYLVT----D-----E-------NGRYVDATFGRGGHSRLILGKLGQGGQLLGIDKDPEAIAVAR----ELASGDS--------R----FQWYHGSFAELDLAL-ER-----Q----GWSQ---VDGVLMDLGVSSPQLDDELEDLEAGLAAAVDRLAPGGRLVVISFHSLEDRLVKRFMR-------------DLARGPK----LPKG----I---PV----TAEQ-------EESGFQ------LI-GKASKA---NEQEITEN-VRARS----AVMRVLER U7NZI3/18-120_224-316 ---VLLDAAVDYLVT----D-----E-------NGRYVDATFGRGGHSRLILGKLGQGGQLLGIDKDPEAIAVAR----ELASGDS--------R----FQWYHGSFAELDLAL-ER-----Q----GWSQ---VDGVLMDLGVSSPQLDDELEDLEAGLAAAVDRLAPGGRLVVISFHSLEDRLVKRFMR-------------DLARGPK----LPKG----I---PV----TAEQ-------EESGFQ------LI-GKASKA---NEQEITEN-VRARS----AVMRVLER A0A063Y880/10-113_217-310 ---VMLQEAVAALVT----D-----P-------HGFYIDGTFGRGGHSALILSQLSEQGRLLAIDKDPVAVAEAQ----RRFGNDP--------R----FMIEHGAFSEMQSFV-EK-----C----GMAGQ--VTGILLDLGVSSPQLDDELEEIESCLDQALEILALSGRLVVISFHSLEDRIVKRFIR-------------RHVKGDE---HLPSG----V---PF----TQAM-------LNQRLK------NI-GKAVKA---SAAEVDVN-PRSRS----AVMRVAEK A0A150ZJQ1/6-110_213-304 HIPVLGREAVDHLAP----R-----A-------GGIYVDATFGAGGYSRAILEVPGTR--IIAIDRDRTAITGGA----ELV-ERSAG------R----LTLVEDRFSNLAEIC-AA-----Q----GLDG---VDGVVMDVGVSSMQLDQELEELQTALAAAERVLRPGGRLVVVSFHSLEDRIVKNFLG-------------ARSRTGG----GSRH----L---PE----VAQI--------APSFQ------LLTRRPVVA---GEDEVAHN-PRARS----AKLRAAE- A0A0P9B0I8/10-109_214-303 ---VLLDEAVEALLA----GRT--AA-------PGTFVDATFGRGGHSRAILARLAPEGRLIAFDKDAEAVTEAA----RI--SDA--------R----FSIRHQGFRSLGELP-GA-----S-----------VAGVLLDLGVSSPQIDNELEELQQALEASLSVLQPGGRLAVISFHSLEDRIVKQFIA-------------KHSK-EV----YDRR----A---P-----------FAAP-KAMRLR------AL-ER-IKP---SEAEVDGN-PRSRS----AILRVAER F9GM58/15-116_226-320 ---VLLHEAVNGLAL----K-----E-------NGIYIDGTFGRGGHSRLILSKLSPNGRLIGVDRDPRAIAESQ----KI--QDS--------R----FQIEHNSFSHIPEIC-EK-----L----NLVGK--IDGILLDLGVSSPQLDEELDELESVLNSALDMLAPEGRLSIISFHSLEDRMVKHFMK-------------KQSKGED----IPKG----L---PL----REDQ--IQ---RNQKLK------TI-GKAIQP---SDAEIQAN-PRSRS----AVLRVAER A0A076K2R1/11-109_213-302 HIPVLILPLIDAAAP----I-----A-------G-TWIDGTFGAGGYSKYLLDAGADQ--VIGIDRDPSVFAMAA----DWA-PQFGD------R----LQLVQDTFSNLDQTA---------------DA---VDGVVLDIGVSSMQIDQEYDQLVQGLAAAERVLRPGGILAVVTFHSVEDRIVKRFFQ-------------ARTGTQA----GSRY----A---PL----VEEV--------PAQFT------MQSRKAIKA---SKEELGAN-PRARS----AKLRI--- Q0BXT4/15-118_222-264_285-314 HLPVMLAEVLTALAP----A-----D-------GEVIVDGTFGGGGYTTAILKAANCT--VLGIDRDLDAIVRAE----KMA-QANP-------R----LVPLLGCFGDLDTLA-EQ-----A----GHAS---VDGVVLDIGVSSFQIDQELGELARGLRAAERILKPGGRLVVVTFHSLEDRLVKQWLR-------------ERA-----------------------------------------FE------LQENKAVQP---SEKEVETN-PRARS----AKLRAA-- A0A059FSE7/15-118_222-264_285-314 HLPVMLAEVLTALAP----A-----D-------GEVIVDGTFGGGGYTTAILKAANCT--VLGIDRDLDAIVRAE----KMA-QANP-------R----LVPLLGCFGDLDTLA-EQ-----A----GHAS---VDGVVLDIGVSSFQIDQELGELARGLRAAERILKPGGRLVVVTFHSLEDRLVKQWLR-------------ERA-----------------------------------------FE------LQENKAVQP---SEKEVETN-PRARS----AKLRAA-- A0A0Q0T132/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILQNLGPEGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAEMGSEV-TE-----R----DLAGK--VSGVLLDLGVSSPQLDDELGDLRAGLEAALESLEVGGRLVVISFHSLEDRIVKLFMR-------------DLVKGEPD--NLPRG----L---PV----QHKA-------FEPKIK------IH-GKAQFA---SDAELKAN-PRSRS----AVMRVAEK Q9REQ9/10-114_216-305 HIPVLLDEVIEALSP----V-----E-------GGIYIDGTFGAGGYSRAILEKADTQ--VIAFDRDPDAIREGA----SLV-EKYKG------R----LRLVNDCFSNIGHHL-DA-----L----DIKT---VDGMVFDIGVSSMQID-RLDELKDGLQTAERFLKTKGCLAVVTFHSLEDRIVKHFMR-------------EHAGQTG---QVSRH----Q---PV----IPQQ--------NPVFF------SKPARPVRA---GETELARN-PRARS----ATLRA--- A0A0Q8G835/10-109_213-305 HVSVLLDEVVDALSV----G-----P-------GDRVVDGTFGAGGYTRAILETG-AS--VIAFDRDPSVARFAT----EFA-AT-DG------R----FRLIQDRFSQITAYL-------------EDAS---VDGVTLDLGVSSMQLDEELEELEAGLVAAERVLKPGGRLAVVTFHSLEDRIVKNFLA-------------ERAGRTP---GGSRH----A---PP---VAQGA--------PASFQ------LISSKAIAP---GDAELAVN-PRARS----SKLRAA-- A0A0H5Q8S4/1-102_206-299 ----MLNEAVDALAV----R-----E-------DGVYVDGTFGRGGHSRLILSRLGDAGRLIVFDKDPQAIAVAE----ELARSDK--------R----VGVVHGGFASFQTAL-DG-----L----GIGK---VDGALFDLGISSPQIDDELEEVGAVLPQVMCRLKEGGRLAVIAFHSLEDRIVKQFVK-------------KYSQHAP----LPRW----A---AV----READ--L----PEPPLK------IV-GRALKP---GEAEIAAN-PRARS----AVLRVAER A0A1J9ACS1/10-110_218-310 ---VLLDEAVDALVT----R-----P-------DGIYVDGTFGRGGHSRAVLARLGAAGRLIAFDKDPRAIETAQ----GI--EDA--------R----FSIVHDSFASMQGAL-AA-----R----GIGK---VSGVLLDLGVSSPQVDDELADLQVVLDAALSLLEQGGRLVIISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLK------II-GR-KFP---SDAEVAAN-PRARS----AVMRIAER H8Z3J1/23-126_230-322 ---VLVEETMHALAI----N-----P-------AATYVDATFGRGGHARALLERLGPDGRLLAFDRDPEAIGAGE----ALQQRDC--------R----LQISHCRLSETPARL-KE-----M----GLQGR--IAGFLLDLGVSSPQLDTELDELRACLAGVTELLAAGGRLVVISFHSLEDRIVKRFIR-------------DQARGPV----LPKS----V---PV----RAAA-------SSGLLR------SL-GGALRP---GESEIATN-PRARS----AILRVAER A0A1A7Q2D2/14-115_225-319 ---VLLNEAVEGLSL----K-----P-------NGIYIDGTFGRGGHSRKILSELGENGRLLAIDRDPEAILAAQ----AI--QDS--------R----FSIEHSTFSEIKAIC-EK-----Y----ALVGK--VDGILLDLGVSSPQLDNELEELEKILNSALEVLVPEGRLAIISFHSLEDRLVKRFMK-------------KQSKGEE----IPKG----L---PL----TEDQ--IE---RNQKLK------II-GKAIMA---SDEELAVN-VRSRS----AVLRVAER A0A1F1Q0V1/12-115_219-313 ---VLLDEAVEALAL----R-----A-------DGCYLDGTFGRGGHSRLILSKLGPQGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAEMGDEV-AQ-----R----GLDGK--VSGILLDLGVSSPQLDDELGDLETGLEAAIEALEVGGRLAVISFHSLEDRIVKLFMR-------------KLAKGEAD--NLPRN----L---PV----QHKV-------FEPRIR------LI-GKAQFA---SDAELQAN-PRARS----AVMRVAEK A0A081BA17/2-97_201-243_264-292 ---------LDCLAP----K-----D-------GGIYVDGTFGAGGYTRAILQEADCK--VYAIDRDPEALARGR----VIE-KEFGG------R----LTLVEGCFGDMEALL-HE-----R----GVAA---VDGVALDVGVSSMQLDQELRELARGLSGAEHLLREGGRLAVVAFHSLEDRIVKKFLA-------------ERS-----------------------------------------FS------LLFRGARAA---SEAEARDN-PRARS----AKLRA--- A0A1M4N2E4/11-109_213-304 HIPVLIRPLIAAVAP----V-----T-------G-VWLDGTFGAGGYTRELLAAGADK--VYGVDRDPLAHEMAQ----KWV-GEYDG------R----IELVRGTFSRLDEYA---------------QD---LDGVVLDLGVSSMQLDLEYEELLGGLMAAERALKPGGKLAVVTFHSIEDRIVKRFLT-------------QASGGGG---RANRY----A---PE----TEQP--------KERFK------LTPRKAIAP---DSEELKIN-PRARS----AKLRVA-- A0A0P1I4R0/13-111_215-306 HIPVLLGPILKTCGP----I-----A-------G-TWLDGTFGAGGYTRGLLDAGADQ--VIGVDRDPLAFKMAE----SWL-GDYGN------R----IRMVQGVFSRMDEFA---------------QD---LDGVVLDLGVSSMQLDLEYGELFRGLQAAERALKPGGLLAVVTFHSIEDRMVKRFMQ-------------TRAGKTG---SVNRY----A---PE----IEQE--------KPAFE------LVTRKAVGP---DDDELAVN-PRSRS----AKLRVA-- A0A0P9GTW3/10-113_217-311 ---VLLEEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSET-QE-----R----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QYKP-------FEPKIK------IH-GKAQFA---SDVETKAN-PRSRS----AVMRVAEK A0A0P9TYS5/10-113_217-311 ---VLLEEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSET-QE-----R----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QYKP-------FEPKIK------IH-GKAQFA---SDVETKAN-PRSRS----AVMRVAEK H5TDK6/20-122_226-319 ---VLLQESIAALDI----K-----A-------NGIYIDATFGRGGHSRAILSQLGDSGRLIALDRDPQAIEAGA----SL-ASDQ--------R----FSIHHCAFANIKTVV-ND-----L----GLYGK--IDGVLMDIGVSSPQLDDELKQLELGLAESVDVLCTGGRLVVISFHSLEDRMVKRFIK-------------SQSQGPK----YPSK----L---PL----TQAV--LD---LGKILK------PI-GKAIKP---SDEEVQRN-SRSRS----SVLRAA-M A6T2G6/14-117_221-313 ---VLLDEAVDALALGG-ER-----A-------NGVYVDGTFGRGGHSRKILQQLGSGARLLAFDKDTQAIANAA----TI--DDQ--------R----FEIAHDSFATLSEAL-AV-----R----GIKQ---VDGVLLDLGISSPQVDDELEELEVVLNEAYRYLAPHGRLVVISFHSLEDRIVKQFMA-------------GKANVPQ----PDRR----L---PI----RAID------LPQPEMK------LL-SR-VKP---SAAEISEN-PRARS----AVMRVAER A0A0D5M500/34-135_239-332 ---VLLEGAIDALVH----D-----D-------QGVYLDGTFGRGGHSRVILDRLSEQGQLLAMDRDPQAIAAAA----DI--DDA--------R----FQITQREFAQLAEFA-RE-----Q----GVFGK--LSGVLLDVGVSSPQLDDELEQLDSALDAALEALAPGGHLVVISFHSLEDRRVKRFIR-------------HHVRGDT---DLPRG----V---PI----RDDQ-------MNRRLE------AL-GKGVRP---SEEEVDAN-PRARS----AVMRAARK A0A0P0MAK5/11-110_215-304 ---VLLNEAVDELLQ----A-----SA-GA---DGAYVDATFGRGGHSRLILSRLSAQGRLLAFDKDLEAIAEAG----RI--ADT--------R----FAIRHEGFSHLGELP-AG-----S-----------VDGVLMDLGISSPQIDSELEELEQALEGCLRVLAPGGRLVVISFHSLEDRIVKQFIA-------------KHSK-EV----VDRR----V---P-----------FAEP-MKMRLK------AI-GR-VRP---SESEVRGN-PRSRS----AIMRMAER A0A0F2QG69/6-109_213-307 ---VLLDEAVAALNV----R-----P-------DGRYLDGTFGRGGHSRLLLQQLGPDGLLLGFDKDPLAIATGQ----ALAAEDG--------R----FVVVQRSFAELGEEV-AQ-----R----GWSGT--VSGVLLDLGVSSPQLDDELGDLEHGLDAALEALEVGGRLVVISFHSLEDRIVKQFMR-------------RHAKGEAD--KLPRD----L---PI----IPKA-------FEPRLK------LL-GKPQYA---SDAEVKGN-PRSRS----AVMRVAEK L9PPE6/14-117_221-313 ---VLLDEAVDALALDG-AR-----A-------DGVYVDGTFGRGGHSRLILSKLGAKARLIAFDKDLQAIATAE----QI--TDP--------R----FTIVHDSFATMHAAL-AE-----R----GVAQ---ADGILLDLGISSPQVDDELEDLEIGLTQAWNSLAPGGIIAIISFHSLEDRMVKRFFA-------------SKANVEQ----PDRR----L---PI----RAVD------LPQPELK------LL-AK-FKP---SDAEVDAN-PRARS----AVMRVARR R5ZX75/11-111_217-309 ---VLAEESPRLLVT----D-----P-------NGVYVDGTFGRGGHSRLILEKLSPQGRLIAFDRDEEAVKAAA----QI--KDP--------R----FQIIHAPFASMKEEL-AK-----V----GIDR---VSGIFLDIGVSSPQIDDELEQLKRALESAGSLLLPDGVLAVISFHSLEDRIVKKFFE-------------AAANPASG---INPR----L---PL----LPSQ--L----PQPLFN------RA-VRIL-P---SEKECEEN-PRARS----SVLRGAS- U5N9T1/11-110_215-305 ----MLAESVDAWLG----E-----AG-QKV--GALFVDGTFGCGGHTRELLRRVGPDARVLAFDKDPHAVAQAM----QI--GDS--------R----FSISHGSFCQIEGLP-AS-----S-----------VDGVLLDLGMSSAQVDDELEDLRNALDATLRVLRPGGRLAVLSFHSLEDRIVKRFIA-------------RHSREEV----DPRL----P---PV----LARV--V------LPLR------QL-GR-MRP---SPQEVAGN-PRARS----AMLRVAQR A0A0D1MBK8/6-102_203-294 HIPVLLDEVVAALAP----A-----P-------GEVMVDATFGAGGYTRAILKTG-AT--VIAFDRDPDAIREGR--------AAGIE------G----LTLVHSDFSAMEAAI-D-------------AP---VDGLTMDIGVSSMQLDQELGELADGLAAAERLLKPGGRLAVVTFHSLEDRMVKRFLR-------------ERSGNTP---GGSRH----L---PQ---AGATR--------APSFA------TV-GRGIRA---GEAELARN-PRARS----ATLRTA-- S5C1H1/12-114_218-312 ---VLLDECIEALAI----K-----P-------SGIYIDATFGRGGHSAHILKALGENGRLIAFDRDPQAIKAAE----RF-ADDK--------R----FSIIHSPFGDMAEEI-EA-----L----GLTGK--IDGVLMDLGVSSPQLDDELEQLRVGLKAATQVLAKEGRLAVISFHSLEDRLVKRFIK-------------DQSKGKV----VPHN----L---PI----TQAE--ID---ADRVLK------AL-GKAIKP---SEQEIANN-VRSRS----SVLRVAEK A0A0I9SFN9/6-109_213-307 ---VLLDEAVAALNV----R-----P-------DGRYLDGTFGRGGHSRLLLQQLGPDGLLLGFDKDPLAIATGQ----ALAAEDG--------R----FVVVQRSFAELGEEV-AQ-----R----GWSGT--VSGVLLDLGVSSPQLDDELGDLEHGLDAALEALEVGGRLVVISFHSLEDRIVKQFMR-------------RHAKGEAD--KLPRD----L---PI----IPKA-------FEPRLK------LL-GKPQYA---SDAEVKGN-PRSRS----AVMRVAEK A0A0M3AMR6/10-111_212-302 HIPVLIDEVLDALAI----N-----P-------GEVHVDGTFGAGGYSSAMAAKG-AK--VFAFDRDPDAIREGQ----AL--ADANG-----------IILIAGEFSRMEALL-AE-----R----GVTS---VAGVTLDIGVSSMQLDRELEELERGLEAAEAILEEGGRLAVVTFHSLEDRIVKQFLR-------------KRSGGEG---GGSRH----L---PE---KKAGD--------APTFE------KP-AKAVRP---GEAELSRN-PRARS----ATLRS--- A1SU11/7-110_214-308 ---VLLDEAVNGLGL----K-----T-------DGIYVDGTFGRGGHSRHILGQLGAQGRLIAIDRDPRAIETGE----ALMKEDP--------R----FTIIHGPFSGLAEYI-KE-----L----GLAGQ--IDGVLLDLGVSSPQIDDELEEIHKVLDGALEILAIGGQLSVISFHSLEDRIVKRFIR-------------KQEKGRE----YPPG----L---PL----TEAQ--MQ---HGKTLK------SL-AKALKP---SAEEINEN-TRARS----SVLRVAQK A0A165XQ48/10-111_219-315 ---VLLNESIDGLAI----K-----P-------DGTYIDGTFGRGGHSRTILSKLGENGRLFSIDRDPQAIAEAQ----KI--DDP--------R----FTIIHGPFSGMAEYA-ER-----Y----DLVGK--VDGVLLDLGVSSPQLDDELEEIDTALKGAASILAPEGRLSVISFHSLEDRMVKRFIR-------------KESQGPQ----VPHG----L---PL----TEEQ--IKAL-GSADLK------SV-GKAIKP---SKGEVDEN-TRSRS----SVLRIAEK A0A0C9N860/10-108_209-300 HIPVLLDEVLDALAI----L-----P-------GETHVDGTFGAGGYTRAMLGRG-AK--VIAFDRDPDAIANGQ----ALI-QAEPG-----------LALVHREFSGLDQAL-EA-----Q-----------VDGVVLDIGVSSMQLDQELEELAEGLAAAERALKPGGRLAIVTFHSLEDRMVKRFFR-------------ERAGQLP---GGSRH----L---PQ---QVAAQ--------APSFT------AV-GKAVRA---GAAELARN-PRARS----ATLRFA-- A0A0Q6YZ92/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSKLGPGGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELASEV-AE-----R----GLAGK--VSGVLLDLGVSSPQLDDELGDLEVGLEAALEALEVGGRLVVISFHSLEDRIVKLFMR-------------KLTKGEAD--NLPRN----L---PV----RFEA-------FVPKIK------IH-GKAQFA---SEAELKAN-PRARS----AVMRVAEK W6M6L1/12-115_219-311 ---VLLAEALAGLAI----R-----P-------DGHYIDATFGRGGHAAAILALLGPTGSLLALDRDPSAGEWAK----EKFTGDN--------R----FQFIQACFSRLAEVV-TK-----R----DLLGR--IDGVLLDLGVSSPQLDDELDELSEALPQVVRVLGSRGRLVAISFHSLEDRMVKRFMR-------------EQARGRE----LPLD----L---PV----RGVP-------EGISLR------VI-GRAVRP---HEAEIATN-PRARS----AVLRVAEK A0A0E1EAJ1/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSKLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGSEV-AE-----R----GLDGK--VSGVLLDLGVSSPQLDDELGDLETGLEAALESLEVGGRLVVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----RHVA-------FEPKIK------IH-GKAQTA---SDAELKAN-PRARS----AVMRVAEK A0A0F4VBU1/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSQLGPDGRVLGFDKDPQAIATGQ----TLAAEDG--------R----FVVVQRSFAELGSEV-AE-----R----GLDGK--VSGVLLDLGVSSPQLDDELGDLEAGLEAALECLEVGGRLVVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----RHVA-------FEPIIK------IH-GKAQSA---SEAELKAN-PRSRS----AVMRVAEK A0A0Q6QU79/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSQLGPDGRVLGFDKDPQAIATGQ----TLAAEDG--------R----FVVVQRSFAELGSEV-AE-----R----GLDGK--VSGVLLDLGVSSPQLDDELGDLEAGLEAALECLEVGGRLVVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----RHVA-------FEPIIK------IH-GKAQSA---SEAELKAN-PRSRS----AVMRVAEK A0A1G0DUU2/10-110_214-307 ---VLLNEAVEALAI----K-----P-------DGIYVDGTFGRGGHSARILEQLGGNGRLIALDKDPAAVAAGR----EW--RDA--------R----FRIVHRGFAQLAEVL-RE-----Q----DVAS---VDGILLDLGVSSPQLDDELEELARVLPECVTLLRTGGRLVVISFHSLEDRMVKHFMR-------------DMAEGDK----LPRN----V---PI----RASE--V----PRGRLR------LI-GKAMRA---TEAEVQTN-PRARS----AVMRVAER U4S1C6/10-111_217-311 ---VLLHEAVDGLAI----K-----P-------NGIYIDGTFGRGGHSRLILSKLGEQGRLIAIDRDPRAIAEAN----TI--TDP--------R----FQIVHSAFSSIPDIC-DE-----L----NLVGK--IDGILLDLGVSSPQLDEELDELEKALNSALTVLAPEGRLSIISFHSLEDRMVKQFMR-------------KQSKGET----VPKG----L---PI----LESE--LN---KNIPLK------TV-GKAIMP---SEAEIEAN-PRSRS----AVLRVAEK F3BEL7/1-85_189-283 -------------------------------------MDGTFGRGGHSGQILARLGDEGRLQAIDQDPQAIQSAE----KF-ADDP--------R----FAIAHTRFSNLYEVA-QQ-----N----DLIGK--VDGILLDIGVSSPQLDDELEEIQTALQSAVKVLKPGGRLVVISFHSLEDRIVKQFIR-------------KQSKGEA----LPRG----L---PL----TDAQ--IN---KNLTLK------AV-GKAIKP---SAAEVERN-PRSRS----SVLRIAQR V8R0T4/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSQLGPDGRLIGFDKDPQAIATGQ----TLAAEDG--------R----FVVVQRSFAELGSVV-AE-----Q----GLTGK--VSGILLDLGVSSPQLDDELGDLEAGLDAALEALEVGGRLVVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----RHVA-------FEPKIK------IH-GKAQTA---SDAELKAN-PRSRS----AVMRVAEK A0A142NIR4/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSQLGPDGRLIGFDKDPQAIATGQ----TLAAEDG--------R----FVVVQRSFAELGSVV-AE-----Q----GLTGK--VSGILLDLGVSSPQLDDELGDLEAGLDAALEALEVGGRLVVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----RHVA-------FEPKIK------IH-GKAQTA---SDAELKAN-PRSRS----AVMRVAEK A0A1N7AV88/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSQLGPDGRLIGFDKDPQAIATGQ----TLAAEDG--------R----FVVVQRSFAELGSVV-AE-----Q----GLTGK--VSGILLDLGVSSPQLDDELGDLEAGLDAALEALEVGGRLVVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----RHVA-------FEPKIK------IH-GKAQTA---SDAELKAN-PRSRS----AVMRVAEK A0A1E7Q438/9-111_216-310 ---VLLEEALQGLAI----K-----P-------DGCYLDGTFGRGGHSRAILAQLGPQGRLFAIDRDPAAIATAA----AF-SADT--------R----FHITHSAFSALAEIA-EK-----Q----NIVGQ--VDGILLDLGVSSPQLDDELDQINQALLAALKVLKPGGRLVVISFHSLEDRLVKQFMR-------------RYAKGEP----IPRG----I---PL----TEAQ--MQ---KRTELS------LV-GKAIKA---SDTELSVN-PRARS----AVLRIAQR A0A0Q6AK62/6-109_210-301 HIPVLLAEAVAALAI----Q-----P-------GEVHVDATFGAGGYTRTMLAAG-AN--VIAFDRDPTAHAAAA----PLL-AEAGD------R----LTLIEAPFSAMAGEL-AA-----R----GIDQ---VDGVVMDIGVSSMQLDQELGELTAGLGAAERVLRTGGRLSVVSFHSLEDRIVKRFLR-------------ERGGAMP---AGSRH----R---PL---VVQGP--------DATFG------HI-AKAVRP---SDEETSIN-PRARS----ATLRAA-- A0A0Q4LPD6/6-109_210-301 HIPVLLAEAVAALAI----Q-----P-------GEVHVDATFGAGGYTRTMLAAG-AN--VIAFDRDPTAHAAAA----PLL-AEAGD------R----LTLIEAPFSAMAGEL-AA-----R----GIDQ---VDGVVMDIGVSSMQLDQELGELTAGLGAAERVLRTGGRLSVVSFHSLEDRIVKRFLR-------------ERGGAMP---AGSRH----R---PL---VVQGP--------DATFG------HI-AKAVRP---SDEETSIN-PRARS----ATLRAA-- A0A1L8YR44/13-114_218-310 ---VMLEEVLDMWFS----Q-----S-------EGFYVDGTFGRGGHSRALLSRLGENGRLIGIDRDPQAIAAGQ----QLAASDS--------R----FHMMAGRFDCLPQAV-EQ-----A----G---R-PIDGLLLDLGVSSPQLDDELDALDQVLEQSLETLAIGGRLAIISFHSLEDRIVKLFIR-------------DHSGRAP---KGRGG----L---PL----GDE--------LPQRLE------PV-GKVMRA---SKAELKVN-VRSRS----AVLRIAEK Q0VS10/13-114_218-310 ---VMLEEVLDMWFS----Q-----S-------EGFYVDGTFGRGGHSRALLSRLGENGRLIGIDRDPQAIAAGQ----QLAASDS--------R----FHMMAGRFDCLPQAV-EQ-----A----G---R-PIDGLLLDLGVSSPQLDDELDALDQVLEQSLETLAIGGRLAIISFHSLEDRIVKLFIR-------------DHSGRAP---KGRGG----L---PL----GDE--------LPQRLE------PV-GKVMRA---SKAELKVN-VRSRS----AVLRIAEK A0A090BUQ1/15-118_222-314 ---VLLLEVLEALTI----H-----S-------NGIYVDCTFGRGGHSQAILNRLGNQGQVLAFDQDPEAMLAAQ----TLSKVDN--------R----FTGIHTSFTQLKQPI-VA-----R----NWLGQ--VNGILLDLGVSSPQLDNELEELQQILPQTLEVLAPQGRLVVISFHSLEDRIVKRFIR-------------NQAKGDT----FPIN----I---PL----TVTA-------LRPQLR------MI-GKPIFP---STEEIMAN-PRARS----AVLRVAEK A0A1F7L046/2-104_207-261 HHPVLLNEVLNLLDI----K-----T-------GCRYIDATVGEGGHTKAILSMDA---KVLGLDRDSSQIERLAK---HLHDDDN-------------LTLTVANFSEIAKVA-KK-----N----GFVE---VDGILFDLGLSWDQLGAEFENLKKGLSGAMELISKTGRIAVISFHSLEDRIVKQFIK------------------------------------------------------EHGMK------QINKKVVQG----------N------------------ A0A0W1CHB6/7-110_211-302 HDPVLREEVIAALAI----A-----P-------GERHVDATFGAGGYTRAMLAAG-AE--VVACDRDPDAIAEGQ----ALV-EQAGG------R----LTLIHGRFGEIDRLL-AE-----R----GIDA---VDGITFDIGVSSMQLDRELDELVAGLNAAERVLRPGGRLAVVSFHSTEDRIVKNFLR-------------ERSGGDA---AGSRH----R---PAP--TSQAR--------AATFE------TP-ARKVRP---GKEEEARN-PRARS----ATLRS--- A0A1B9PNQ2/10-111_219-315 ---VLLHESIDGLAI----K-----P-------DGIYIDGTFGRGGHSRQILSRLGENGRLYSIDRDPQAIAEAK----TI--TDP--------R----FNIIHGPFSGLKGYV-EE-----L----GLVGQ--IDGVLLDLGVSSPQLDDELDEIDTALNGALDVFAEGGRLSVISFHSLEDRMVKHFIR-------------KESRGPQ----VPHG----I---PL----TENQ--IKAL-GSAKMK------PI-GKAIKP---TVNEVDVN-VRSRS----SVLRIAER A0A1B9P2K3/10-111_219-315 ---VLLHESIDGLAI----K-----P-------DGIYIDGTFGRGGHSRQILSRLGENGRLYSIDRDPQAIAEAK----TI--TDP--------R----FNIIHGPFSGLKGYV-EE-----L----GLVGQ--IDGVLLDLGVSSPQLDDELDEIDTALNGALDVFAEGGRLSVISFHSLEDRMVKHFIR-------------KESRGPQ----VPHG----I---PL----TENQ--IKAL-GSAKMK------PI-GKAIKP---TVNEVDVN-VRSRS----SVLRIAER B6ELI3/10-111_219-315 ---VLLHESIDGLAI----K-----P-------DGIYIDGTFGRGGHSRQILSRLGENGRLYSIDRDPQAIAEAK----TI--TDP--------R----FNIIHGPFSGLKGYV-EE-----L----GLVGQ--IDGVLLDLGVSSPQLDDELDEIDTALNGALDVFAEGGRLSVISFHSLEDRMVKHFIR-------------KESRGPQ----VPHG----I---PL----TENQ--IKAL-GSAKMK------PI-GKAIKP---TVNEVDVN-VRSRS----SVLRIAER A0A0P1FS70/13-111_215-305 HIPVLIRPLIAAVSP----V-----S-------G-LWLDGTFGAGGYTRELLKAGADK--VYGVDRDPLAFELAA----PWV-GDYGD------R----IELVQGVFSRLDDYA---------------SD---LDGVVLDLGVSSMQLDLEYGELIKGLEAAERALKPGGQLAVVTFHSVEDRMVKRFFQ-------------QRSGGAK---TTNRY----A---PM----QEAD--------PAQFT------LKSKKAIGP---DDQELAEN-PRSRS----AKLRV--- Q07PU1/9-113_216-305 HISVLGREAVDWLAP----R-----D-------GGVYVDATFGAGGYSRAILTIDGTR--VIGIDRDRTAIAGGF----DLV-EQSDG------R----LTLVESRFSQLAEVC-AS-----Q----GVGQ---VDGVVMDVGVSSMQLDQELDELHLALTAAERVLKPGGRLVVVSFHSLEDRIVKNFFA-------------ERGKASS----GSRH----R---PE----MAQQ--------QPSFA------ILTKRPVTP---SDEETAAN-PRARS----AKLRA--- D5ALQ1/8-111_215-305 HIPVLLRPLLQAVAP----V-----L-------G-TWLDGTFGAGGYARGLLAAGAGR--VIGIDRDPLAFEMAA----PWR-GEFGE------R----LVLVENTFSNLDAVA-AE-----I----APEG---LNGVVLDLGVSSMQLDQEFGQLIAGLEAAERALKPGGKLAVVTFHSLEDRVVKRFFQ-------------ARAGRAP---GGSRY----A---PE----AAPE--------AAAFD------LVTRKGVGP---DEIELAQN-PRARS----AILRI--- A0A0F4P7Z2/10-111_215-309 ---VLMAETLDALAI----N-----P-------EGIYIDGTFGRGGHSGEILKRLS-TGRLQAIDQDPQAIKAAE----KF-ADDA--------R----FSIARSRFSQIKSVA-EQ-----A----GILGQ--VDGILLDIGVSSPQLDDELEEIQTALQASLEVLKPGGRLVVISFHSLEDRIVKQFIK-------------KQSKGEA----IPRG----L---PL----TDEQ--LK---QNLTLK------AV-GKAIKP---SDAEIAQN-PRSRS----SVLRVAEK A0A1G0J2S3/9-114_218-308 ---VLLQEAVAALNV----Q-----E-------EGVYVDGTFGRGGHSRAILEALGEKGHLLVIDKDPEAIRIARDT--LPFRGDH--------R----VSVFHGSFTQIPSAI-VA-----A----NIAAP--VRGILLDLGVSSPQLEDELEDLIDGLYAAESVLAPGGRLAIISFHSLEDRLVKRFFRGDA-----------------------------L--HPVQ-HGGETE-------RHTTLKG-LKGA---AGVVVP---SEEEIRKN-PRARS----ARLRIAE- N6X8D4/10-110_214-307 ---VLLNEAVDALAI----R-----A-------DGVYVDGTFGRGGHSRAVLERLGPQGRLIAFDRDPVAIAAGQ----AL--GDA--------R----LTLVHSAFGDLDAQL-DA-----L----GVAR---VDGVLLDLGVSSPQLDDELEELTRVLPACVARLVPGGRLAVISFHSLEDRIVKRFMR-------------DESRPPV----LPAR----L---PI----RAAD--L----PPPRLR------LV-GKAVRP---SGAEVAAN-PRSRS----AVMRVAER A0A0A3B8M6/15-116_226-320 ---VLLNEAVAGLAI----K-----E-------DGTYIDGTFGRGGHSRLILSRLGEGGRLLAIDRDPRAIAEAE----TI--TDP--------R----FEIVHSAFSEIEAIC-RQ-----H----RLAGK--VDGILLDLGVSSPQLDEELDELERALASSLKVLAPHGRLSIISFHSLEDRMVKRFMR-------------KQSKGEE----IPKG----I---PL----REDQ--ID---RKQTLK------TI-GKAIMP---SEQEQQQN-PRSRS----AVLRIAER A0A0B4XLZ4/1-101_205-295 ----MLEEVLELLPT----R-----T-------DGFYVDGTFGRGGHSRALLARLDAQGRLVGIDRDPLAIAAGH----DLAQADS--------R----FRIHAGRFDCLEQVV-AE-----A----G---R-PLDGVLLDLGVSSPQLDDELAALEAVLDQALQCLAPGGRLVVISFHSLEDRLVKLFMR-------------DASGRRP----QPRG----L---PL----PPQP--V-------LMK------PL-GKARQA---GDAEVAAN-ARARS----AVLRAAEK W1S8K7/9-110_211-301 HIPVLINEVLDALAI----A-----P-------GEIHVDGTFGAGGYSSAMARVG-AR--VFAFDRDPDAIGEGQ----AV--ADAHG-----------ITLISGEFSRMAELL-AE-----R----GIDK---VAGVTLDIGVSSMQLDRELEELERGLEAAEALLEEGGRLAIVTFHSLEDRIVKQFLR-------------SRSGSEG---AGSRH----L---PQ---RAAGP--------APTFA------KP-AKAVRP---GAEELARN-PRARS----ATLRS--- A0A1A9EVL6/10-113_217-309 ---VLLHEAVEALVQ----D-----P-------DAFYIDGTFGRGGHSGLILEQLQSNGRVLAIDKDPEAITYAA----ERFGEEP--------R----FEIERGSFADMDQYV-RA-----R----QLAGK--VGGILLDLGVSSPQLDDELEDLERCLDQALDLLSIGGRLVVISFHSLEDRIVKRFIR-------------KHVKGDE---HLPRG----I---PV----TQDM-------LQQRLK------SA-GKAIKA---SPGEVQQN-PRARS----AVMRVA-V A0A1B4U175/10-110_218-310 ---VLLDEAVESLVT----R-----P-------DGIYVDGTFGRGGHSRAVLARLGPAGRLIAFDKDPRAIETAQ----GI--GDA--------R----FSIVHDSFASMRDAL-AA-----R----GIEK---VSGVLLDLGVSSPQVDDELADLQVVLDAALSLLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLK------II-GR-QFP---SEAEVAAN-PRARS----AVMRIAER J4S469/10-110_218-310 ---VLLDEAVESLVT----R-----P-------DGIYVDGTFGRGGHSRAVLARLGPAGRLIAFDKDPRAIETAQ----GI--GDA--------R----FSIVHDSFASMRDAL-AA-----R----GIEK---VSGVLLDLGVSSPQVDDELADLQVVLDAALSLLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLK------II-GR-QFP---SEAEVAAN-PRARS----AVMRIAER A0A1C3BMA6/42-132_236-328 -------------------A-----E-------RGVFVDGTFGRGGHSRELLGRLGPAARLVVFDKDPEAIEVAN----ALAAADS--------R----VTVVHGGFATMAEEL-RQ-----L----GIDK---VDGVMLDLGVSSPQIDDELEELARTLASALDLLAPGGRLAVISFHSLEDRMVKQCIA-------------AAARPAA----AHAR----L---PL----RESE--M----PQPVLR------SL-GR-VLA---EDDEVSAN-ARARS----AVLRVAER W0Q0T3/10-111_217-311 ---VLLHEAVDGLAI----K-----P-------NGIYIDGTFGRGGHSRLILSKLGENGRLIATDRDPRAIAEAQ----TI--NDP--------R----FQIEHTAFSAIPEIC-ER-----M----GLVGK--IDGILLDLGVSSPQLDEELDELEKALNSALTVLAPEGRLSIISFHSLEDRMVKQFMR-------------KHSKGMD----VPRG----L---PI----LEAE--LN---KNIPLK------TI-GKAIMP---SEAEIEAN-ARSRS----AVLRIAEK A0A0R3D3C0/6-110_213-304 HIPVLGVEAVAHLAL----R-----E-------GGIYVDATFGAGGYSRAILDVPGTQ--VIAIDRDRTAIAGGA----ELV-ASASG------R----LALVEDRFSNLAEVC-AA-----Q----GVKA---VDGVVMDVGVSSMQLDQELEELRTALAAAERVLKPGGRLVVVSFHSLEDRIVKNFLA-------------ERSKTGG----GSRH----L---PE----VAQT--------APSFQ------LLTRRPVIA---GEAEVAHN-PRARS----AKLRAAE- K5YZC8/6-110_213-307 HISVLRDEAIEALQP----R-----E-------NGVYLDGTFGGGGYSRMILERAKCR--LFGVDRDPDALPRGA----ELT-AAHAG------R----FELIPGRISEISEMM-TA-----R----GVAR---LDGAVFDLGLSSFQIDDELSDIEAALAQSAALLAPGGRLVVVSFHSLEDRIVKHFFA-------------QSAGRTP---GASRH----D---PAG--LAQVS--------APEFR------LVTKSPILP---GEAEIRAN-PRARS----AKLRVME- E6W949/10-111_215-310 ---VLLDEAVNALNI----R-----E-------DGIYIDGTFGRGGHSRLILAQLGANGQLLAIDRDPQAIAAAA----EI--KDS--------R----FSIVHGPFSALAEYV-SE-----R----GLNGK--IDGVLLDLGVSSPQLDDELEEIDIALKGALSVLAPGGRLSVISFHSLEDRLVKRFMR-------------DQSRGPQ----VPAG----I---PM----TETQ--LKAL-GGRELK------TL-GK-MVP---GDAEVADN-PRARS----SVLRIAER L0DYX6/9-112_216-307 ---VLLAPAVRGLAI----R-----P-------AGRYVDGTFGRGGHSRAILDALDPQGRLLAMDRDPAAAQAAA----ALE-QDP--------R----FAFRQGCFSSMADRV-RQ----------HWPGDGRVDGVLLDLGVSSPQLGAELAELRTWLETVPGILRASARLVVISFHSLEDRLVKRAFQ-------------GRSDRPR----LPRG----L---PV----AAEP-------RPAPFR------II-GKALRA---DADECRRN-PRARS----AVLRIAE- A0A0F0EI98/12-115_219-313 ---VLLDEAVEALAV----R-----D-------DGCYLDGTFGRGGHSRLILSKLGPQGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGDEV-AQ-----R----GLAGK--VSGILMDLGVSSPQLDDELGDLEAGLEAALEALEVGGRLVVISFHSLEDRIVKLFMR-------------KLVKGESD--NLPRN----L---PV----QHKH-------FEPKIK------VH-GKAQFA---SEAELKAN-PRSRS----AVMRVAEK A0A0A4GMG7/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSEV-AE-----R----GLAGK--VGGILLDLGVSSPQLDDELGDLEAGLDAALEALEIGGRLVVISFHSLEDRIVKLFMR-------------KLTKGEAD--NLPRN----L---PV----RFEA-------FVPKIK------IH-GKAQFA---SEAELKAN-PRARS----AVMRVAEK A0A1H2HW10/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSEV-AE-----R----GLAGK--VGGILLDLGVSSPQLDDELGDLEAGLDAALEALEIGGRLVVISFHSLEDRIVKLFMR-------------KLTKGEAD--NLPRN----L---PV----RFEA-------FVPKIK------IH-GKAQFA---SEAELKAN-PRARS----AVMRVAEK C7RLN4/10-113_217-310 ---VLLQEAVEALAI----K-----P-------AGTYVDGTFGRGGHSRAILQRLGTGGRLLAFDRDPQAVAMAS----GE--TDA--------R----LLVMHERFGDLADAL-RR-----A----GCAVEQGIDGVLLDIGVSSPQLDEELEQLALVLPQAMTVLKAGGRLVVISFHSLEDRIVKRFLR-------------DEAAPDR----LPRK----L---PL----RAAD--L----PPPRLR------LI-GKPVRA---SAAEIAAN-PRARS----AIMRVAEK B2IGF2/19-123_226-268_289-317 HVPVLREEVVAALDC----K-----K-------GGFYLDATFGAGGYTRALLAEPETH--VLAIDRDPEAIAAGR----ALE-AESAG------R----LILAHGRFSTLADIA-AA-----E----GIPA---FDGIVFDIGVSSMQLDQELLELVRALAAAEALLREGGRLVVVTFHSLEDRIVKQFLA-------------ARS-----------------------------------------FI------LPGKQPVLP---SPEEIAVN-PRARS----AKLRF--- A0A0F6LB56/10-110_218-310 ---VLLDEAVDALVT----R-----L-------DGVYVDGTFGRGGHSRAVLARLGDAGRLIAFDKDPRAIETAE----SI--EDA--------R----FEIVHDSFAAMKGAL-DA-----R----GVGR---VSGVLLDLGVSSPQVDDELADLQVVLEAALSLLEQGGRLVVISFHSLEDRIVKRFLQ-------------AHASAPA----VDRR----L---PI----RAAD------LPRPPLK------LL-GR-MFP---NDAEVAAN-PRARS----AVMRIAER B3QFN9/8-112_215-305 HIPVLGPEAVGLLAP----R-----A-------GGIYVDGTFGAGGYTRLILETAGSR--VIAIDRDPTAIAGGA----DLV-ADAGH------R----LTLVQDRFSNLADVC-AA-----Q----GAAT---VDGVVMDIGVSSMQLDQELDELHQALDAAERVLKPGGRLAVVSFHSLEDRIVKTFLT-------------ERSKTGG----GSRH----L---PE----VAQA--------APSFT------LLSKRPIVA---GDAEVAAN-PRARS----AKLRGA-- A0A1D3RNB5/5-109_213-306 ---VLYSETLRELTI----K-----P-------SGIYIDCTFGRGGHSKGLLQQLGPEGKLLALDRDLDAINSDTA---QELFKDP--------R----FELEHCCFSRLQNVV-EK-----R----GWMGK--VDGILMDFGVSSPQLDNELDEISAVLGQAVNVLASGGRLVVISFHSLEDRIVKRFIR-------------DESRGKY----NPVK----L---PM----QADE--L----AAIRLI------KC-GKAIKA---EAEELARN-TRARS----AIMRVAER M9YIV0/10-113_217-311 ---VLLEEAVDALSI----R-----E-------GGCYLDGTFGRGGHSRLILGRLGAGGILLGFDKDPQAVAAGL----ALATEDA--------R----FVIVQRSFAELADEM-KM-----R----GLVGK--VSGVLLDLGVSSPQLDDELGDLEQGLDAALEVLEVGGRLAVISFHSLEDRIVKRFMR-------------RQVKGEAD--KLPRD----L---PI----RPAA-------FEPRLK------LI-GKPRYA---SESELKTN-PRARS----AIMRVAEK A0A1K1XDZ1/10-113_217-311 ---VLLEEAVDALSI----R-----E-------GGCYLDGTFGRGGHSRLILGRLGAGGILLGFDKDPQAVAAGL----ALATEDA--------R----FVIVQRSFAELADEM-KM-----R----GLVGK--VSGVLLDLGVSSPQLDDELGDLEQGLDAALEVLEVGGRLAVISFHSLEDRIVKRFMR-------------RQVKGEAD--KLPRD----L---PI----RPAA-------FEPRLK------LI-GKPRYA---SESELKTN-PRARS----AIMRVAEK A0A0A0BHS8/11-114_218-310 ---VLLNETIAALSV----K-----A-------DGKYLDATFGRGGHSRAILALLSDDGRLLGLDRDPQAVATGK----QLAQQDN--------R----FAIEYCAFSEMATAA-HA-----R----LWQNN--IDGILMDIGVSSPQLDDELEELTLALEQALDMLAVGGRLVVISFHSLEDRIVKRFFR-------------DEARGDD----FPAH----F---PV----TVEQ-------LNPRLK------II-GKAIKA---SETELADN-PRARS----AVLRVAEK A0A132DHS4/10-110_218-310 ---VLLDEAVDSLVT----R-----P-------DGIYVDGTFGRGGHSRAVLARLAPGGRLIAFDKDPRAIETAQ----RI--EDA--------R----FSIVHDSFASMRDAL-AA-----R----GVEK---VSGVLLDLGVSSPQVDDELADLQVVLDAALSLLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLK------II-SR-QFP---SEAEVAAN-PRARS----AVMRIAER A4JB86/10-110_218-310 ---VLLDEAVDSLVT----R-----P-------DGIYVDGTFGRGGHSRAVLARLAPGGRLIAFDKDPRAIETAQ----RI--EDA--------R----FSIVHDSFASMRDAL-AA-----R----GVEK---VSGVLLDLGVSSPQVDDELADLQVVLDAALSLLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLK------II-SR-QFP---SEAEVAAN-PRARS----AVMRIAER A0A1K2C0D1/10-110_218-310 ---VLLDEAVDSLVT----R-----P-------DGIYVDGTFGRGGHSRAVLARLAPGGRLIAFDKDPRAIETAQ----RI--EDA--------R----FSIVHDSFASMRDAL-AA-----R----GVEK---VSGVLLDLGVSSPQVDDELADLQVVLDAALSLLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLK------II-SR-QFP---SEAEVAAN-PRARS----AVMRIAER A0A0N0K9G9/8-117_218-309 HIPVLLDEVIAALTP----KG-GLTP-------GSLVVDATFGAGGYTRRLLGAG-AT--VHAFDRDPDAIAAGR-----AW-GEVSENP---PR----LVLHPRRFSELAEGL-AE-----A----GVSS---VQGVVFDIGVSSMQLDQELDELHAGLAAAERVLAPGGRLAVVSFHSLEDRIVKQFLR-------------EGAGALP---AGSRH----L---PM---SAPTA--------APVFE------KP-SAAIRP---GADEQARN-PRARS----ATLRWA-- A0A0Q5E1R3/2-104_208-300 ----LLDEAVDALALTG-AR-----A-------NGVFVDGTFGRGGHSRLILSKLGAGARLIAFDKDLQAIATAE----RI--ADP--------R----FTIVHDSFATMRAAL-AA-----R----GVDQ---VDGILLDLGISSPQVDDELEDLEAGLSQAYDSLAPGGILAVISFHSLEDRMVKRFLA-------------ARANVAQ----PDRR----L---PI----RAVD------LPQPELK------LL-AK-LKP---SDAEVDAN-PRARS----AVMRVARR A0A167BGS9/42-132_236-328 -------------------A-----E-------GGVFVDGTFGRGGHSRELLGRLGKAARLVVFDKDPEAIAVAR----QLAAADP--------R----VTVVHGGFATMAEEL-AQ-----L----GIGK---VDGVMLDLGVSSPQIDDELEELARTLASALDLLAPGGRLAVISFHSLEDRMVKQCIA-------------AAARPAA----AHAR----L---PL----RESE--M----PQPVLR------SL-GR-VLA---EDEEVSAN-ARARS----AVLRVAER I2NSA3/11-113_217-310 ---VLLNEAVDALAV----R-----E-------DGIYVDGTFGRGGHSRLILSRLGSQGRLIVFDKDPQAIEAAQ----KLAEQDG--------R----VTVVHDGFSSFQTTL-DK-----L----GIEE---IDGALFDLGISSPQIDDELEEVEAVLPQVMGRLKQGGRLAVIAFHSLEDRIVKQFVK-------------KYSQHPP----LPRW----A---AV----KEAD--L----PLPPLK------AV-GKAIKP---GVEETASN-PRARS----AVLRVAER A0A1E9VY45/11-113_217-310 ---VLLNEAVDALAV----R-----E-------DGIYVDGTFGRGGHSRLILSRLGSQGRLIVFDKDPQAIEAAQ----KLAEQDG--------R----VTVVHDGFSSFQTTL-DK-----L----GIEE---IDGALFDLGISSPQIDDELEEVEAVLPQVMGRLKQGGRLAVIAFHSLEDRIVKQFVK-------------KYSQHPP----LPRW----A---AV----KEAD--L----PLPPLK------AV-GKAIKP---GVEETASN-PRARS----AVLRVAER A0A023RCZ2/10-111_215-309 ---VLLHEAVEGLAI----K-----P-------DGIYVDGTFGRGGHSRLILQQLGPNGRLIAIDRDPQAIAEAA----KI--QDP--------R----FEIVHGPFSGITSYL-SD-----R----GLLGK--VDGFLLDLGVSSPQLDDELDEIETALNGALQALATDGRLSVISFHSLEDRLVKHFIR-------------KHEKGPE----VPHG----I---PL----TEAQ--LA---GGRKLK------SV-GKALKP---SEHEVTEN-SRSRS----SVLRVAQR F3ETG1/10-113_217-311 ---VLLEEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSEA-QE-----R----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QFKP-------FEPKIK------IP-GKAQFA---SDTETKAN-PRSRS----AVMRVAEK A0A0Q0A0R1/10-113_217-311 ---VLLEEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSEA-QE-----R----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QFKP-------FEPKIK------IP-GKAQFA---SDTETKAN-PRSRS----AVMRVAEK A0A0C5VM31/10-111_215-306 ---VLLDEAVEQLVI----D-----P-------SGAYFDGTFGRGGHSRLILSCLSSAGALVAVDKDPEAIQEGE----RLVAADS--------R----FTMVPGSFAGIESIA-HS-----K----EI----LFDGVLLDLGVSSPQLDDELSDLEVLLAALDSVLKPGGRLVVISFHSLEDRLVKRFIQ-------------QHEKDP-----WPEG----L---PV----QGQQ-------FTPRFR------RV-GKAMKA---SAEEIAIN-PRARS----AVMRVAEK Q0AJD3/5-105_212-308 ---VLLEEAVDALNI----Q-----K-------GGIYVDGTYGRGGHSRLILSRLDKSGQLIAFDKDPAAISEAR----SI--LDE--------R----FQAVHSSYAGMYTAL-QS-----L----GINR---VDGILLDLGVSSIQLDEELEELSMTLPQCVELLNTGGRLVVISFHSLEDRIVKRFMR-------------MQTGTDT----LPRR----L---PI----REEE--SRLH-NQQKLR------II-GKKIRP---GSDEVSAN-PRARS----AVMRVAEK A0A0K1JZL4/14-117_221-313 ---VLLDEAVDALDLAG-VR-----A-------NGIFIDGTFGRGGHSRLILSRLGQDARLIAFDKDPQAIATAE----QV--ADS--------R----FTIVHDSFATMSAAL-AD-----R----GIGA---VDGILLDLGISSPQVDDELEDLEAGLNQAFDALAPGGIMAIISFHSLEDRMVKRFFA-------------SKANVEQ----PDRR----L---PI----RAVD------LPQPEMK------LL-AK-IKP---SDAEVEAN-PRARS----AVMRVARR A0A1H6A619/5-108_212-304 ---VLLEESINGLAI----H-----P-------DGVYVDATFGRGGHSRAILERLSEQGRLIAIDKDPEAIQYAG----EVFAQEK--------R----FEIFHGSFADIAVFA-EK-----A----GVSGV--VDGVLMDLGVSSPQLDDELSDLEKALKSSVDVLKIGGRLAVISFHSLEDRIVKQFMK-------------AMEEGNR----PPPG----V---PV----KYNE-------IVKKFR------RV-GKAIMP---EESEIKEN-VRSRS----AVLRIGEK A0A0W0XXU8/5-108_212-304 ---VLLEESINGLAI----H-----P-------DGVYVDATFGRGGHSRAILERLSEQGRLIAIDKDPEAIQYAG----EVFAQEK--------R----FEIFHGSFADIAVFA-EK-----A----GVSGV--VDGVLMDLGVSSPQLDDELSDLEKALKSSVDVLKIGGRLAVISFHSLEDRIVKQFMK-------------AMEEGNR----PPPG----V---PV----KYNE-------IVKKFR------RV-GKAIMP---EESEIKEN-VRSRS----AVLRIGEK A0A132CBF0/10-110_218-310 ---VLLDEAVDALVT----R-----P-------DGVYVDGTFGRGGHSRAVLARLGAAGRLIAFDKDPRAIETAK----GI--EDA--------R----FEIVHDSFAALKGAL-EA-----R----GVRR---VSGVLLDLGVSSPQVDDELADLQVVLEAALSSLEQGGRLVVISFHSLEDRIVKRFMQ-------------THARAPA----VDRR----L---PI----RAVD------LPSPPLK------LL-GR-KFP---SDAEVLAN-PRARS----AVMRIAER A4G8U6/14-117_221-313 ---VLLEEAVDALALDG-ER-----A-------NGMYVDGTFGRGGHSRLILQRLGENGCLLAFDKDTQAIANAA----TI--EDK--------R----FAIVHDSFATLSTAL-AE-----R----GIAQ---VNGVLLDLGISSPQVDDELEELEVVLNEAYRHLAPHGRLVVISFHSLEDRIVKQFMA-------------SKANVPQ----PDRR----L---PI----RAVD------LPQPEMK------LI-AR-IKP---SAAEISAN-PRARS----AVMRVAER A9M2I4/12-114_218-311 ---VLLNEAVDALAV----R-----E-------DGVYVDGTFGRGGHSRLILSRLGDAGRLIVFDKDPQAIAVAE----ELARSDK--------R----VGVVHGGFASFQTAL-DG-----L----GIGK---VDGALFDLGISSPQIDDELEEVGAVLPQVMCRLKEGGRLAVIAFHSLEDRIVKQFVK-------------KYSQHAP----LPRW----A---AV----READ--L----PEPPLK------IA-GRALKP---GEAEIAAN-PRARS----AVLRVAER W0E5R3/10-111_216-308 ---VLLDEAVSALVT----E-----P-------GGRYVDATFGRGGHSRAVLARLAPTGRLIGLDRDPEAIAAAR----AL--DDP--------R----FRILHSAFGGIGAAL-AE-----A----GETEP--LNGILLDLGVSSPQLDTELGEIERCLDQVCELLAPGGRLVVISFHSLEDRIVKHFMR-------------RESRGAV----LPKG----V---PV----TGAP-------APGRLR------LL-GKAQRP---STVESESN-PRARS----AIMRVAER H2G1L9/10-111_215-309 ---VLLEEAVAGLNI----R-----P-------DGIYVDGTFGRGGHSRHILSKLGPNGRLLAIDRDPAAIAVAE----QI--HDS--------R----FQILHGPFSGLAAMM-EA-----E----GLTGK--VDGVLLDLGVSSPQLDEELDEIEQALNGALTVLAPGGRLSVISFHSLEDRLVKHFIR-------------KQEKGPE----VPPG----L---PL----TEAQ--LA---GGRLLK------SV-GKAQKP---SPEEVAAN-PRARS----SVLRVAER A0A0K6IRY6/11-113_217-309 ---VMLNESVDMLVT----D-----P-------AGTYVDGTFGRGGHTRLVLSRLT-TGKMLGFDKDPVAIGHGK----TLEAEDS--------R----FTIVQDSFASMAEHI-PE-----VF---GADK---VDGVMMDLGVSSPQLDDELGDLETGLEAAAKALKVGGRLVVISFHSLEDRIVKQFMK-------------KMCKGPD----LPRH----L---PI----QNAH-------LDIHFK------TV-GKAIKP---SKGEVSDN-VRSRS----AVLRVMER A0A1K1TQD8/14-117_221-314 ---VLLEEAVNAWMT----R-----P-------DGCYVDGTFGRGGHSRHLLQRLNEKGCLLGIDKDPRALEAGT----LLAQQDS--------R----FVICHGSFTELPRFI-DQ-----Q----GWTSG--VDGILVDLGVSSPQLDDELDDLRDLLDQATELLAPGGRLVVISFHSLEDRMVKRFMR-------------DAARGDA---HLPPG----V---PF----RQDE-------LRPQLK------LI-GKAIKP---GDQEVSQN-PRARS----AVMRVAEK A0A177P635/10-114_218-311 ---VLYAEALEQLAI----K-----P-------DGTYLDCTFGRGGHSRGILAGLDESGRLLALDRDADAIASPEA---EKLRQDP--------R----FELHHASFAELAAVV-GR-----K----GYAGK--IDGILMDLGVSSPQLDIELEQIKAGLQQALDTLAPGGRLVVISFHSLEDRIVKRFIR-------------DQSGAKT----DPGK----L---PV----REQD--I----EQGQLR------KI-GKSIRA---QAQELRNN-PRARS----AVMRVAEK M4Z4V3/8-112_215-305 HIPVLGPEAVEMLAP----R-----D-------GGTYLDATFGAGGYTRLILQTPGTR--VLGIDRDSTAIAGGA----GLV-AEAGG------R----LTLVESRFSAIADVC-VS-----Q----GLAR---IDGIVMDVGVSSMQLDSELDELEQALSAAERILAPGGRLAVVSFHSLEDRIVKTFLA-------------ERSKTGG----GSRH----L---PE----IAQE--------TPSFH------LLNRKPVVA---AETEIEAN-PRARS----AKLRGA-- Q2G9A3/11-116_222-313 HIPVLLEEVVAALDP----K-----P-------GDLIVDATFGAGGYTRRLLDAG-AT--VHAFDRDPDAIAAGK-----LW-GETCGKE---PR----LVLHPRRFSEIAEGL-AE-----A----GIAG---VQGVVFDIGVSSMQLDQELDELVQGLAAAEKVLVPGGRIAVVSFHSLEDRIVKQFLR-------------EGAGAVP---AGSRH----L---PQ---LESKV--------QAVFE------KP-SGAIRP---TPEEEARN-PRARS----ATLRCA-- A0A0N1L6S1/12-112_217-306 ---VLLTEAVQALVT----Q-----P-------DGVYVDGTFGRGGHSRAVLALLGPAGRLLAFDKDPEAIAAAQ----DI--ADP--------R----FAICHASFDRMAEEL-AA-----R----GITQ---VQGVLLDLGISSPQIDNELEALQQGLKAALALLAPGGRLVVISFHSLEDRIVKTFIA-------------SESR-EV----VDRR----A---P-----------FAPA-KAMRLN------AL-AR-VKP---SAEEVRAN-PRARS----AVMRVAER A0A099L324/10-112_216-310 ---VLMDETIDALAI----K-----P-------DGIYMDGTFGRGGHSGQILARLGESGRLQAIDQDPQAIKSAE----KF-ADDP--------R----FSIAHSRFSKLYEVA-EQ-----N----DLIGQ--VDGILLDIGVSSPQLDDELEEIQTALQAAIKVLKPGGRLVVISFHSLEDRIVKQFIK-------------KQSKGEA----IPRG----L---PL----TDAQ--IN---KNLTLK------AV-GKAIKP---SADEVARN-PRSRS----SVLRIAQR G7ER69/10-112_216-310 ---VLMDETIDALAI----K-----P-------DGIYMDGTFGRGGHSGQILARLGESGRLQAIDQDPQAIKSAE----KF-ADDP--------R----FSIAHSRFSKLYEVA-EQ-----N----DLIGQ--VDGILLDIGVSSPQLDDELEEIQTALQAAIKVLKPGGRLVVISFHSLEDRIVKQFIK-------------KQSKGEA----IPRG----L---PL----TDAQ--IN---KNLTLK------AV-GKAIKP---SADEVARN-PRSRS----SVLRIAQR A0A1E3WVS2/10-112_216-310 ---VLMDETIDALAI----K-----P-------DGIYMDGTFGRGGHSGQILARLGESGRLQAIDQDPQAIKSAE----KF-ADDP--------R----FSIAHSRFSKLYEVA-EQ-----N----DLIGQ--VDGILLDIGVSSPQLDDELEEIQTALQAAIKVLKPGGRLVVISFHSLEDRIVKQFIK-------------KQSKGEA----IPRG----L---PL----TDAQ--IN---KNLTLK------AV-GKAIKP---SADEVARN-PRSRS----SVLRIAQR A0A0S3ARI2/10-112_216-310 ---VLMDETIDALAI----K-----P-------DGIYMDGTFGRGGHSGQILARLGESGRLQAIDQDPQAIKSAE----KF-ADDP--------R----FSIAHSRFSKLYEVA-EQ-----N----DLIGQ--VDGILLDIGVSSPQLDDELEEIQTALQAAIKVLKPGGRLVVISFHSLEDRIVKQFIK-------------KQSKGEA----IPRG----L---PL----TDAQ--IN---KNLTLK------AV-GKAIKP---SADEVARN-PRSRS----SVLRIAQR Z9K488/10-112_216-310 ---VLMDETIDALAI----K-----P-------DGIYMDGTFGRGGHSGQILARLGESGRLQAIDQDPQAIKSAE----KF-ADDP--------R----FSIAHSRFSKLYEVA-EQ-----N----DLIGQ--VDGILLDIGVSSPQLDDELEEIQTALQAAIKVLKPGGRLVVISFHSLEDRIVKQFIK-------------KQSKGEA----IPRG----L---PL----TDAQ--IN---KNLTLK------AV-GKAIKP---SADEVARN-PRSRS----SVLRIAQR E6RL57/10-112_216-310 ---VLMDETIDALAI----K-----P-------DGIYMDGTFGRGGHSGQILARLGESGRLQAIDQDPQAIKSAE----KF-ADDP--------R----FSIAHSRFSKLYEVA-EQ-----N----DLIGQ--VDGILLDIGVSSPQLDDELEEIQTALQAAIKVLKPGGRLVVISFHSLEDRIVKQFIK-------------KQSKGEA----IPRG----L---PL----TDAQ--IN---KNLTLK------AV-GKAIKP---SADEVARN-PRSRS----SVLRIAQR J0YBJ1/12-115_219-313 ---VLLDEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGPDGKLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGAEV-AE-----R----GMAGK--VAGVLLDLGVSSPQLDDELGDLEAGLEAALEALEVGGRLVVISFHSLEDRIVKLFMR-------------RLVKGESD--NLPRN----L---PV----RYEA-------FVPKIK------IH-GKAQFA---SEAELKAN-PRARS----AVMRVAEK A0A1H2HQF1/12-115_219-313 ---VLLDEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGPDGKLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGAEV-AE-----R----GMAGK--VAGVLLDLGVSSPQLDDELGDLEAGLEAALEALEVGGRLVVISFHSLEDRIVKLFMR-------------RLVKGESD--NLPRN----L---PV----RYEA-------FVPKIK------IH-GKAQFA---SEAELKAN-PRARS----AVMRVAEK V7E4F1/12-115_219-313 ---VLLDEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGPDGKLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGAEV-AE-----R----GMAGK--VAGVLLDLGVSSPQLDDELGDLEAGLEAALEALEVGGRLVVISFHSLEDRIVKLFMR-------------RLVKGESD--NLPRN----L---PV----RYEA-------FVPKIK------IH-GKAQFA---SEAELKAN-PRARS----AVMRVAEK Q9AJH1/10-111_219-315 ---VLLNESIDGLAI----K-----P-------DGIYIDGTFGRGGHSRTILSKLGPNGRLYSIDRDPQAIAEAG----KI--DDP--------R----FTIIHGPFSGMAQYA-EE-----Y----DLVGK--VDGVLLDLGVSSPQLDDELEEIDTALKGAARILAPEGRLSVISFHSLEDRMVKRFIR-------------KESKGPE----VPHG----I---PL----TEAQ--IKEL-GSANMK------TV-GKAIKP---SKQEIDMN-PRSRS----SVLRIAEK A6B5X9/10-111_219-315 ---VLLNESIDGLAI----K-----P-------DGIYIDGTFGRGGHSRTILSKLGPNGRLYSIDRDPQAIAEAG----KI--DDP--------R----FTIIHGPFSGMAQYA-EE-----Y----DLVGK--VDGVLLDLGVSSPQLDDELEEIDTALKGAARILAPEGRLSVISFHSLEDRMVKRFIR-------------KESKGPE----VPHG----I---PL----TEAQ--IKEL-GSANMK------TV-GKAIKP---SKQEIDMN-PRSRS----SVLRIAEK A0A0F6LPV3/10-111_219-315 ---VLLNESIDGLAI----K-----P-------DGIYIDGTFGRGGHSRTILSKLGPNGRLYSIDRDPQAIAEAG----KI--DDP--------R----FTIIHGPFSGMAQYA-EE-----Y----DLVGK--VDGVLLDLGVSSPQLDDELEEIDTALKGAARILAPEGRLSVISFHSLEDRMVKRFIR-------------KESKGPE----VPHG----I---PL----TEAQ--IKEL-GSANMK------TV-GKAIKP---SKQEIDMN-PRSRS----SVLRIAEK S5IQ13/10-111_219-315 ---VLLNESIDGLAI----K-----P-------DGIYIDGTFGRGGHSRTILSKLGPNGRLYSIDRDPQAIAEAG----KI--DDP--------R----FTIIHGPFSGMAQYA-EE-----Y----DLVGK--VDGVLLDLGVSSPQLDDELEEIDTALKGAARILAPEGRLSVISFHSLEDRMVKRFIR-------------KESKGPE----VPHG----I---PL----TEAQ--IKEL-GSANMK------TV-GKAIKP---SKQEIDMN-PRSRS----SVLRIAEK A0A072H7M1/10-111_219-315 ---VLLNESIDGLAI----K-----P-------DGIYIDGTFGRGGHSRTILSKLGPNGRLYSIDRDPQAIAEAG----KI--DDP--------R----FTIIHGPFSGMAQYA-EE-----Y----DLVGK--VDGVLLDLGVSSPQLDDELEEIDTALKGAARILAPEGRLSVISFHSLEDRMVKRFIR-------------KESKGPE----VPHG----I---PL----TEAQ--IKEL-GSANMK------TV-GKAIKP---SKQEIDMN-PRSRS----SVLRIAEK Z2EV55/10-111_219-315 ---VLLNESIDGLAI----K-----P-------DGIYIDGTFGRGGHSRTILSKLGPNGRLYSIDRDPQAIAEAG----KI--DDP--------R----FTIIHGPFSGMAQYA-EE-----Y----DLVGK--VDGVLLDLGVSSPQLDDELEEIDTALKGAARILAPEGRLSVISFHSLEDRMVKRFIR-------------KESKGPE----VPHG----I---PL----TEAQ--IKEL-GSANMK------TV-GKAIKP---SKQEIDMN-PRSRS----SVLRIAEK A0A0D1EL58/10-111_219-315 ---VLLNESIDGLAI----K-----P-------DGIYIDGTFGRGGHSRTILSKLGPNGRLYSIDRDPQAIAEAG----KI--DDP--------R----FTIIHGPFSGMAQYA-EE-----Y----DLVGK--VDGVLLDLGVSSPQLDDELEEIDTALKGAARILAPEGRLSVISFHSLEDRMVKRFIR-------------KESKGPE----VPHG----I---PL----TEAQ--IKEL-GSANMK------TV-GKAIKP---SKQEIDMN-PRSRS----SVLRIAEK A3WNF1/11-113_217-311 ---VLLEESIRALVT----D-----P-------DGIYIDATFGRGGHTRALLSKLSPKGRVIALDQDPQAIASAQ----AL-ADDE--------R----FSIIHTPFSDLAHII-EQ-----Q----QLAHQ--VTGILFDLGVSSPQLDDELEQIEDALEASLTALKEDGRLVVISFHSLEDRIVKRFMR-------------THSQPKQ----VPPG----L---PI----TEAE--LN---KDRRLA------LE-SKAIKP---SAAELELN-PRARS----SVLRIARR A0A139C5S0/11-113_217-311 ---VLLEESIRALVT----D-----P-------DGIYIDATFGRGGHTRALLSKLSPKGRVIALDQDPQAIASAQ----AL-ADDE--------R----FSIIHTPFSDLAHII-EQ-----Q----QLAHQ--VTGILFDLGVSSPQLDDELEQIEDALEASLTALKEDGRLVVISFHSLEDRIVKRFMR-------------THSQPKQ----VPPG----L---PI----TEAE--LN---KDRRLA------LE-SKAIKP---SAAELELN-PRARS----SVLRIARR A4NY51/15-116_226-320 ---VLLHEAVNGLAL----K-----E-------NGIYIDGTFGRGGHSRFILSQLSSNSRLIAVDRDPRAIAEAH----KI--QDS--------R----FQIEHNSFSHIPEIC-DK-----L----NLVGK--IDGILLDLGVSSPQLDEELDELESLLNSALDMLAPEGRLSIISFHSLEDRMVKHFMK-------------KQSKGED----IPKG----L---PL----REDQ--IQ---RNQKLR------II-GKAIQP---SDAEIQAN-PRSRS----AILRVAER B5WM69/14-114_222-314 ---VLLNEAVDALVT----R-----T-------DGTYVDGTFGRGGHSRLVLERLGEAGRLIAFDKDPLAIATAQ----KI--ADS--------R----FAIVHESFASLRAAM-AE-----R----GVGR---VSGVLLDLGVSSPQVDDELAELQVVLEAALSLLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASTPA----VDRR----L---PI----RAVD------LPSPPLK------II-GR-VFA---SDAEVADN-PRARS----AVMRVAER A0A1E3H5H6/1-63_167-258 ------------------------------------------------------------MIGIDRDPTAIAGGA----GLL-AEAAG------R----LRLVHGRFGDMEEHA-EA-----L----ELAG---IDGIVLDVGVSSMQIDEELDELGMALAAAEQMLAEGGRLAIVSFHSLEDRIVKRFLA-------------ERSRTTA---QGSRH----M---AD----VAVA--------PPTFT------LGRRSGTEP---SEAEVAAN-PRSRS----ARLRFA-- A0A0K0TX83/13-113_216-304 HVPVLLAEVLSALQP----L-----K-------GARIVDGTFGAGGYSRALLEAG-AQ--VIAIDRDPNVAPHVE----RLR-SQFPD------S----FEFVPGTFSRLDEAV-------------GGRP---VEGVVLDIGVSSMQLDEEFDQLVEGLFAAERLLPEGGRLAVVTFHSLEDRIVKRFFD-------------PEKG-GP---AQSRH----M---PM-----------T---AAPERR-----WIKVAKAVKP---GEAELARN-PRARS----SVLRS--- A0A066URK6/10-111_219-315 ---VLLNESIDGLAI----K-----P-------DGTYIDGTFGRGGHSRTILSKLGENGRLFSIDRDPQAIAEAQ----KI--DDP--------R----FTIIHGPFSGMAEYA-ER-----Y----DLVGK--VDGVLLDLGVSSPQLDDELDEIATALKGATSILAPQGRLSVISFHSLEDRMVKRFIR-------------KESQGPQ----VPHG----L---PL----TEEQ--IKAL-GSAVLK------PV-GKAIKP---SKSEVDEN-TRSRS----SVLRLAEK A0A0N8K714/9-112_213-303 HLPVLLDEVVAAIGP----A-----P-------GMTIVDATFGAGGYSRALLEAG-AR--VFAFDRDPHAIREGE----AMV-ARYAG------Q----LSLHPRRFSEMADEL-AT-----L----GVEK---VDAVVMDIGVSSMQLDRELGELRAGLAAAEILLREGGVLAVVSFHSLEDRIVKRFLR-------------EASGAGR---AVSRH----L---PG---EMPGA--------APTFA------RL-SKAIRP---GEAELEAN-PRARS----AVLRH--- A0A1H1XUK2/9-112_213-303 HLPVLLDEVVAAIGP----A-----P-------GMTIVDATFGAGGYSRALLEAG-AR--VFAFDRDPHAIREGE----AMV-ARYAG------Q----LSLHPRRFSEMADEL-AT-----L----GVEK---VDAVVMDIGVSSMQLDRELGELRAGLAAAEILLREGGVLAVVSFHSLEDRIVKRFLR-------------EASGAGR---AVSRH----L---PG---EMPGA--------APTFA------RL-SKAIRP---GEAELEAN-PRARS----AVLRH--- A0A162LCD2/13-114_218-310 ---VMLEEVLDMWFS----Q-----S-------EGFYVDGTFGRGGHSRALLARLDDNGRLTGIDRDPQAIAAGQ----ELAASDS--------R----FHMMASRFDCLPQVV-EQ-----A----G---R-PIDGLLLDLGVSSPQLDDELDALNQVLEQSLETLAIGGRLAIISFHSLEDRIVKLFIR-------------DHSGRAP---KGRGG----L---PL----GDE--------MPQRLE------PV-GKAMRA---GKAELKVN-VRSRS----AVLRVAEK F3LT40/14-114_219-308 ---VLLAEAVEALVT----Q-----A-------DGLYVDGTFGRGGHTRALLAALSPRARVLAFDRDPEAIAAAA----AI--DDP--------R----FTICHASFGAMREEL-AA-----R----GVGQ---VQGVLLDLGVSSPQIDTELEALEQGLSAALQLLAPGGRLVVISFHSLEDRIVKNFIT-------------RESR-DE----FDRR----A---P-----------MAPP-RALKLK------AL-AR-VKP---GDDEVRAN-PRARS----AVMRVAER A0A177NJP5/10-114_218-311 ---VLYAEALEQLAI----K-----P-------DGTYLDCTFGRGGHSRGILAGLAESGRLLALDRDADAIASPEA---EKLRQDP--------R----FELHHASFAELAAVV-GR-----K----GYAGN--IDGILMDLGVSSPQLDIELEQIKAGLQQALDTLAPGGRLVVISFHSLEDRIVKRFIR-------------DQSGAKT----DPGK----L---PV----REQD--I----EQGQLR------KI-GKSIRA---QAQELRNN-PRARS----AVMRVAEK F3DYI2/10-113_217-311 ---VLLEEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILNHLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSQA-QE-----L----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAAMESLEIGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QYKA-------FEPKIK------IH-GKAQFA---SDVETKAN-PRSRS----AVMRVAEK A0A1C3U7T3/6-110_213-304 HIPVLGREAIAHLAP----R-----E-------GGVYVDATFGAGGYSRAILDVPGTR--VIAIDRDRTAIAGGA----ELV-ERAAG------R----LTLVEDRFSNLAEVC-AA-----Q----GVDG---VDGVVMDVGVSSMQLDQELEELQTALAAAERVLKPGGRLVVVSFHSLEDRIVKNFLS-------------ERSKTGG----GSRH----L---PE----VAQI--------APSFQ------LLTRRPVVA---GEDEVAHN-PRARS----AKLRAAE- A3WA78/5-108_209-299 HTPVLLDEVVAAIQP----S-----P-------DMAIIDATFGAGGYSRALLEKG-AR--VYAFDRDPNAIRDGQ----GMV-AEFDG------R----LSLHAERFSSMREEM-TR-----I----GVPQ---VDAVVMDIGVSSMQLDQELGELRAGLNAAETLLREGGVLAVVSFHSLEDRIVKRFLK-------------EASGAGR---AVSRH----L---PG---EVPGP--------PPTFT------RV-SKAIRP---SGAEIERN-PRSRS----SILRH--- L8XZX9/9-110_214-306 ---VLLNEAINALNI----Q-----P-------AGVYVDGTFGRGGHSSEILKRLT-AGHLISIDRDPTAQACAK----ERFKESE--------N----FTFFAGCMSDIKAAV-AS-----A----HFEK---VDGVLLDIGVSSPQLDDELTELSQTLTAAYDLLNPGGRLVVISFHSLEDRIVKNFMN-------------HHAKPKD---LLPD-----L---PV----AQFV-------SEPTLK------LI-GKPVKA---SDEESRHN-PRARS----AIMRIAEK A0A0B3TEV7/14-114_222-314 ---VLLEEAVDALLW----R--D----------DGVYVDGTFGRGGHSRRILERLGPKGRLIAFDKDPQAIAEAA----KI--ADP--------R----FSIEHESFATLREAL-AR-----R----GIDK---VSGVLLDLGVSSPQFDDELADLQIALDVAADVLETGGRLVAISFHSLEDRIVKRFVQ-------------ARTTAPV----VDRR----V---PL----RAHE------IPEPPFK------SS-RK-IKP---SAEEVEAN-PRARS----AIMRVMER A0A167HPA7/1-98_203-291 ----MLNEAVDALAI----N-----P-------DGHYVDATYGRGGHSRLILERLSPQGRLTVFDKDPQAVAQAQ----ALAASDA--------R----VSVRHEGFAHLGELG-EA-----T-----------VQGVLMDLGVSSPQIDDELEELQQALEASLHVLSPEGRLVVISFHSLEDRMVKQFMA-------------RHSR-AV----VDRR----V---P-----------FMEP-GAMPFT------GV-SR-VMP---SKAEVAGN-PRSRS----SVMRVAV- Q39JX8/10-110_218-310 ---VLLDEAVESLVT----R-----P-------DGIYVDGTFGRGGHSRAVLARLAPGGRLIAFDKDPRAIETAQ----GI--EDA--------R----FSIVHDSFASMRDAL-AA-----R----GVEK---VSGVLLDLGVSSPQVDDELADLQVVLDAALSLLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLK------II-SR-QFP---SEAEVAAN-PRARS----AVMRIAER A0A0G3YYE3/10-110_218-310 ---VLLDEAVESLVT----R-----P-------DGIYVDGTFGRGGHSRAVLARLAPGGRLIAFDKDPRAIETAQ----GI--EDA--------R----FSIVHDSFASMRDAL-AA-----R----GVEK---VSGVLLDLGVSSPQVDDELADLQVVLDAALSLLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLK------II-SR-QFP---SEAEVAAN-PRARS----AVMRIAER A0A0B2BI05/10-110_218-310 ---VLLDEAVESLVT----R-----P-------DGIYVDGTFGRGGHSRAVLARLAPGGRLIAFDKDPRAIETAQ----GI--EDA--------R----FSIVHDSFASMRDAL-AA-----R----GVEK---VSGVLLDLGVSSPQVDDELADLQVVLDAALSLLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLK------II-SR-QFP---SEAEVAAN-PRARS----AVMRIAER A8EIN3/16-116_224-316 ---VLLDEAVDALVT----R-----P-------DGVYVDGTFGRGGHSRAVLARLGDAGRLIAFDKDPRAIETAE----SI--EDA--------R----FEIVHDSFAAMKGAL-DA-----R----GVGR---VSGVLLDLGVSSPQVDDELADLQVVLEAALSLLEQGGRLVVISFHSLEDRIVKRFLQ-------------AHASAPA----VDRR----L---PI----RAAD------LPRPPLK------LL-GR-MFP---NDAEVAAN-PRARS----AVMRIAER A0A098G4L7/7-110_214-306 ---VLLQESINGLAI----K-----P-------DGVYFDGTFGRGGHSREILRHLDDKGKLFAIDKDVDAIEYAK----EHFGSDK--------R----FHIFHGSFANIRNFA-SE-----A----QVLGL--VDGVLLDLGVSSPQLDNELNDLTSCLEQCIEILAPGGRLAVISFHSLEDRIVKQFMR-------------NKEQGTR----PPAE----V---PL----RYEQ-------IKTNFK------RI-GKAVMP---QQDEINNN-VRARS----AVLRIGEK Q1GYZ3/19-119_224-317 ---VLLEEAVEALSI----K-----P-------DGVYVDGTFGRGGHSRKILEKLGAQGRLVALDRDLAAIQAAQ----GI--QDA--------R----FKIVHSHFAAMAQVL-AS-----L----NIQQ---VDGVLLDLGISSPQIDEELEELSLTLPQCLSLLAPQGRLAVISFHSLEDRIVKRFIR-------------GEQDRDN----LPAH----F---PV----RASD--L----PQPRLV------AI-GRAVRP---SEDEVRRN-PRSRS----AVLRVAER R6J6V0/7-107_210-302 HIPVMLKEVLEHLSP----Q-----D-------GETYVDATFGNGGYSEAILKAANCR--LIAIDRDPTVLPRVE----ELK-EKYGS------R----FEFRQGTFGNFKDLI-AQ-------------P---VNGAVFDIGVSSMQLDEELEELENGLKGAVDLLTSHGRLVVVTFHSLEDRIVKSFFK-------------EQSGKNA---GVSRY----M---PEM--PQNSD--------CVSLA----EC---SKAVLP---GPEETETN-KRARS----AKLRCA-- A4VIH0/12-115_219-313 ---VLLDEAVAALNV----R-----A-------DGRYLDGTFGRGGHSRLLLQQLGPNGQLLGFDKDPLAIATGQ----ALAAEDG--------R----FVVVQRSFAELGDEV-AQ-----R----GWTGA--VSGILLDLGVSSPQLDDELGDLERGLDAALDALEVGGRLVVISFHSLEDRIVKQFMR-------------RHAKGEAD--KLPRD----L---PI----IPKA-------FEPRLK------LI-GKPQYA---SEAEVKAN-PRSRS----AVMRVAEK A0A0N0E5Z7/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSRLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGAEV-AE-----R----QMAGK--VNGILLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------RLVKGEED--NLPRN----L---PV----RHQA-------FEPRIK------VH-GKARFA---SDAELKAN-PRARS----AVMRVAEK A0A142FU38/17-119_223-315 ---VLLDEAVDFLVN----D-----P-------AGRYVDATFGRGGHSRLILGQLDAQGSLLGIDKDPEAIQVAK----DLAAQDS--------R----FFWYHGSFSELNQAL-ES-----Q----QWSA---VQGVLMDLGVSSPQLDDELEDLEVGLTAAVERLAPGGRLVVISFHSLEDRLVKRFMR-------------DLARGPK----IPKG----V---PV----TADQ-------ERSEFC------LV-GKASKA---NEQEIAEN-VRARS----AVMRVLER A0A085TUU6/12-111_215-304 HIPVLLRPLLRAVAP----V-----S-------G-VWLDGTFGAGGYARGLLEAGADK--VIGVDRDPAVFEMAK----SWR-ADYGD------R----LELVEGTFSELDTYS-D-------------VL---LDGVVLDLGVSSMQLDQEFGQLIEGLEAAERALKPGGLLAVVTFHSLEDRVVKRFFA-------------ARSSTGG---GGSRH----A---PV----QQSL--------DPAFDIIV-------KGDGP---DEEELVEN-PRARS----ARLRV--- A0A1H0E0H7/12-115_219-313 ---VLLDEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGSDGKLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGAEV-AE-----R----GMAGK--VAGVLLDLGVSSPQLDDELGDLEAGLEAALEALEVGGRLVVISFHSLEDRIVKLFMR-------------RLVKGESD--NLPRN----L---PV----RFEA-------FVPKIK------IH-GKAQFA---SEAELKAN-PRSRS----AVMRVAEK A0A105URB3/10-110_218-310 ---VLLDEAVDALVT----R-----P-------DGIYVDGTFGRGGHSRAVLARLGAAGRLIAFDKDPRAIETAQ----GI--EDA--------R----FSIVHDSFASMQGAI-AA-----R----GIGK---VSGVLLDLGVSSPQVDDELADLQVVLDAALSLLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLK------II-GR-KFP---SDAEVAAN-PRARS----AVMRIAER A0A1I1W0P2/8-106_210-301 HIPVLLRPILAAADP----V-----S-------G-TWIDGTFGAGGYAKGLLDAGAGH--VVGIDRDPLAHEMAA----PWA-AEYGD------R----LRLVEANFAQMDEVA---------------SG---VDGVVLDLGVSSMQLDREYAALHEGLLAAERALAPGGLLAVVTFHSVEDRMVKRFLQ-------------IRAGQTG---RANRF----Q---PL----VEEP--------EPQFT------LVSKKAIGP---DAEELEAN-PRARS----AKLRLA-- A0A0H4UUU7/6-109_213-304 ---VLFNEVMEGLAI----R-----Q-------NGIYVDATFGRGGNSLGLLQRLGPEGRLLAMDKDPEAIATGV----EGPFRNQ--------R----FAIVHETFSNLERVI-RN-----R----GWYGK--VNGIVLDLGVSSPQLDKELDELRECLPQCLEILAIKGRLCVISFHSLEDRIVKRFIQ-------------KESRDL-----LPRE----L---PI----LASE-------VKHRLK------KI-GALIKP---TEAEIREN-LRARS----ARLRIVEK B9MFS0/10-109_214-303 ---VLLDEAVHALL-----GDGD-AP-------AGTFVDGTFGRGGHSRLILQRLGPQGRLVAFDKDTEAIQAAA----RI--TDA--------R----FSIRHQGFSHLGELP-AA-----S-----------VSGVLLDLGVSSPQIDDELEELQQALEGSLRVLRPGGRLVVISFHSLEDRIVKQFIA-------------QHSK-EV----YDRR----A---P-----------FAPP-QPMRLK------AL-ER-IKP---STDEVAAN-ARARS----AVMRVAER G2DCL0/10-113_217-309 ---VLLEEAVTALNI----T-----A-------EGIYIDGTFGRGGHSRRILKVLGERGRLIGIDKDPQAIVHGR----EQLGGDA--------R----FTIVQQSFAMIAQVA-QN-----A----GVAGR--VDGVLLDLGVSSPQLDQELDDLQQFLGQVLEVLRPGGRLAVISFHSLEDRIVKRFMR-------------DQAKGDR----FPAG----V---PV----TQAQ-------LQPRLK------LL-GKAIRP---GADETESN-PRARS----AVLRVAER A0A0R2RBN3/12-114_216-305 HYPVLLNELISIITP----QY------------GGTFIDCTFGNGGYSKKILEYNNTK--VIALDRDIETQNKAN----ELF------LK-FEER----FLFKNLKFSQLNNLKIKN-----ED----------IKGVVFDLGYSYIQIKDEISELIYGLINALKVLKKDGVIAVVTFHSLEDKIVKYFFK-------------SLSENKS----ISRY----M---PS----VEQP--------DTLLK------LSQKKPIIA---SKKELTEN-LSSRS----AKLRY--- A0A0R2QZA5/12-114_216-305 HYPVLLNELISIITP----QY------------GGTFIDCTFGNGGYSKKILEYNNTK--VIALDRDIETQNKAN----ELF------LK-FEER----FLFKNLKFSQLNNLKIKN-----ED----------IKGVVFDLGYSYIQIKDEISELIYGLINALKVLKKDGVIAVVTFHSLEDKIVKYFFK-------------SLSENKS----ISRY----M---PS----VEQP--------DTLLK------LSQKKPIIA---SKKELTEN-LSSRS----AKLRY--- A0A0R2RX30/12-114_216-305 HYPVLLNELISIITP----QY------------GGTFIDCTFGNGGYSKKILEYNNTK--VIALDRDIETQNKAN----ELF------LK-FEER----FLFKNLKFSQLNNLKIKN-----ED----------IKGVVFDLGYSYIQIKDEISELIYGLINALKVLKKDGVIAVVTFHSLEDKIVKYFFK-------------SLSENKS----ISRY----M---PS----VEQP--------DTLLK------LSQKKPIIA---SKKELTEN-LSSRS----AKLRY--- A0A161JH78/8-112_216-258_280-310 HIPVLLDEVIAALAP----R-----D-------GGLYVDGTFGAGGYSRALLRSASCR--VIGIDRDPAAIERGR----ALA-LEFPG------R----LEVIEGRFGDMDRLL-AD-----H----GVGT---VDGVALDVGVSSPQIDEELGELRRGLSAAESLLAPGGRLAVVSFHSLEDREVKAFLR-------------ERS-----------------------------------------FR------LLSRKPVDP---SEAEARNN-PRARS----ARLRAAE- A0A0W0ZMS0/7-110_214-306 ---VLLHESIEGLAI----K-----N-------GGIYFDGTFGRGGHSREILRHLNDQGRLYAIDKDIDAIVYAG----EHFGEDK--------R----FHIFQGSFSRIQEFA-TE-----A----GVVGK--VDGILLDLGVSSPQLDNELNDLKSCLEQCINVLAPKGRLAVISFHSLEDRIVKQFMR-------------DKEQGAK----PPPE----V---PI----RYEE-------LTTNFK------RI-GKAIMP---KESEVKEN-VRARS----AVLRIGEK A0A0W0R4X4/7-110_214-306 ---VLLQESIQALEI----K-----D-------NGIYIDGTFGRGGHSRSILNALNENGRLIAIDKDEQAIAFAG----NRFAKDP--------R----FQIVHGSFAEIGNIA-KK-----L----EIFGK--VNGILLDLGVSSPQLDEELEDLKACLHQSLDVLEAGGRLAVISFHSLEDRIVKDFMR-------------SQEKGPE----IPPG----V---PV----RHID-------IKTNFR------RI-GKAIKP---NEQEISQN-VRARS----AVLRIGEK X6KUL7/9-107_208-299 HVPVLLEPLLEAVAP----V-----E-------G-TWIDGTLGAGGYTRGLLEAGAER--VIGIDRDPLAHQIAA----EWG-GVWGE------R----LVLVQDNFANMDAHA---------------EG---VDGVVLDLGVSSMQLDREYEALWQGLMAAERVLKPGGRLAVVTFHSIEDRMVKRFLQ-------------AHGERKT---RVNRY----A---SE----TPEE--------TAPFR------ILTRKAVGP---REDELKRN-PRARS----AKLRVA-- A0A0Q8UHW6/5-101_205-296 HTSVLLDEVIAALEP----G-----P-------GKLIIDGTFGAGGYSRGFLATG-AD--VVAFDRDPSARRFAE----GL--G---E------R----FRLIDDRFSQMAEAL-------------GEGA---ADGVALDLGVSSMQLDQELSELEAGLVAAERVLKPGGRLAVVTFHSLEDRIAKAFFT-------------ERAGRTP---GGSRH----L---PP---VEAGA--------APSFQ------LLFNGARAP---GEAETAAN-PRARS----AKLRV--- A0A0Q7D484/5-101_205-296 HTSVLLDEVIAALEP----G-----P-------GKLIIDGTFGAGGYSRGFLATG-AD--VVAFDRDPSARRFAE----GL--G---E------R----FRLIDDRFSQMAEAL-------------GEGA---ADGVALDLGVSSMQLDQELSELEAGLVAAERVLKPGGRLAVVTFHSLEDRIAKAFFT-------------ERAGRTP---GGSRH----L---PP---VEAGA--------APSFQ------LLFNGARAP---GEAETAAN-PRARS----AKLRV--- A0A0Q7F7U4/5-101_205-296 HTSVLLDEVIAALEP----G-----P-------GKLIIDGTFGAGGYSRGFLATG-AD--VVAFDRDPSARRFAE----GL--G---E------R----FRLIDDRFSQMAEAL-------------GEGA---ADGVALDLGVSSMQLDQELSELEAGLVAAERVLKPGGRLAVVTFHSLEDRIAKAFFT-------------ERAGRTP---GGSRH----L---PP---VEAGA--------APSFQ------LLFNGARAP---GEAETAAN-PRARS----AKLRV--- A0A136HL36/15-119_222-264_285-314 HKPVLLREVLEALAP----R-----D-------GEIMVDGTFGAGGYSRAILDSANCE--LYGIDRDPTAVATGK----KLE-AEYDG------R----FHMVEGCFGDMAKLL-PA-----A----GAPQ---VDGIVLDIGVSSMQLDQELGELERAMDAAETLLKPGGRLVVVTFHSLEDRQVKTFMK-------------ERS-----------------------------------------FT------TITRKAVTG---QKDEIRAN-PRARS----AKLRAV-- A0A165P6N8/10-112_216-310 ---VLMDETIDALDI----K-----P-------EGIYMDGTFGRGGHSGQILARLSEQGRLQAIDQDPQAIKAAE----KF-ADDA--------R----FSIAHTRFSNLKTVA-ED-----N----DLIGK--VDGILLDIGVSSPQLDDELEEIQTALQAAVDVLKPGGRLVVISFHSLEDRIVKQFIK-------------KQSKGEA----IPRG----L---PL----TDAQ--IN---KNLTLK------AV-GKAIKP---SKAEIEAN-PRSRS----SVLRVAQR I4KCL0/12-115_219-313 ---VLLDEAVEALAV----R-----A-------DGCYVDGTFGRGGHSRLILSQLGSDGKLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGAEV-AE-----R----GMAGK--VAGVLLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------RLVKGESD--NLPRN----L---PV----RFEA-------FVPKIK------IH-GKAQFA---SEAELKAN-PRSRS----AVMRVAEK A0A0W0NDS1/12-115_219-313 ---VLLDEAVEALAV----R-----A-------DGCYVDGTFGRGGHSRLILSQLGSDGKLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGAEV-AE-----R----GMAGK--VAGVLLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------RLVKGESD--NLPRN----L---PV----RFEA-------FVPKIK------IH-GKAQFA---SEAELKAN-PRSRS----AVMRVAEK A0A1E4W5R6/12-115_219-313 ---VLLDEAVEALAV----R-----A-------DGCYVDGTFGRGGHSRLILSQLGSDGKLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGAEV-AE-----R----GMAGK--VAGVLLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------RLVKGESD--NLPRN----L---PV----RFEA-------FVPKIK------IH-GKAQFA---SEAELKAN-PRSRS----AVMRVAEK A0A1H1XFC6/12-115_219-313 ---VLLDEAVEALAV----R-----A-------DGCYVDGTFGRGGHSRLILSQLGSDGKLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGAEV-AE-----R----GMAGK--VAGVLLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------RLVKGESD--NLPRN----L---PV----RFEA-------FVPKIK------IH-GKAQFA---SEAELKAN-PRSRS----AVMRVAEK I2BK61/12-115_219-313 ---VLLDEAVEALAV----R-----A-------DGCYVDGTFGRGGHSRLILSQLGSDGKLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGAEV-AE-----R----GMAGK--VAGVLLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------RLVKGESD--NLPRN----L---PV----RFEA-------FVPKIK------IH-GKAQFA---SEAELKAN-PRSRS----AVMRVAEK A0A1G3F9W2/12-115_219-313 ---VLLDEAVEALAV----R-----A-------DGCYVDGTFGRGGHSRLILSQLGSDGKLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGAEV-AE-----R----GMAGK--VAGVLLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------RLVKGESD--NLPRN----L---PV----RFEA-------FVPKIK------IH-GKAQFA---SEAELKAN-PRSRS----AVMRVAEK A0A0R3C533/12-115_219-313 ---VLLDEAVEALAV----R-----A-------DGCYVDGTFGRGGHSRLILSQLGSDGKLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGAEV-AE-----R----GMAGK--VAGVLLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------RLVKGESD--NLPRN----L---PV----RFEA-------FVPKIK------IH-GKAQFA---SEAELKAN-PRSRS----AVMRVAEK A0A1K1XLH4/12-115_219-313 ---VLLDEAVEALAV----R-----A-------DGCYVDGTFGRGGHSRLILSQLGSDGKLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGAEV-AE-----R----GMAGK--VAGVLLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------RLVKGESD--NLPRN----L---PV----RFEA-------FVPKIK------IH-GKAQFA---SEAELKAN-PRSRS----AVMRVAEK A0A120FZG2/12-115_219-313 ---VLLDEAVEALAV----R-----A-------DGCYVDGTFGRGGHSRLILSQLGSDGKLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGAEV-AE-----R----GMAGK--VAGVLLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------RLVKGESD--NLPRN----L---PV----RFEA-------FVPKIK------IH-GKAQFA---SEAELKAN-PRSRS----AVMRVAEK A0A0Q8YAI8/12-115_219-313 ---VLLDEAVEALAV----R-----A-------DGCYVDGTFGRGGHSRLILSQLGSDGKLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGAEV-AE-----R----GMAGK--VAGVLLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------RLVKGESD--NLPRN----L---PV----RFEA-------FVPKIK------IH-GKAQFA---SEAELKAN-PRSRS----AVMRVAEK K6X4M2/15-117_221-315 ---VLLDESIEGLDI----K-----P-------DGIYMDATFGRGGHTEKVLQKLSDSGRLIALDRDPYAIEAAK----RF-ANDQ--------R----FSIEHVAFSNIEEVA-KK-----H----DVFGK--VDGILMDLGVSSPQLDDELDEVRDGLKSALECLSSGGRLAVISFHSLEDRLVKRFMR-------------EQSRGMQ----VPAR----M---AI----TQAE--ID---ATRAMK------LI-GKAIKP---SDYEIKAN-ARSRS----SVLRVAQK A0A094IMW7/10-112_216-310 ---VLLQESIEALAI----R-----P-------NGIYLDATFGRGGHSRAILAQLNDQGRLIALDRDPTAIAAAE----AL-ADDP--------R----FTIVHTPFSRLEEVL-DA-----Q----QLRGA--IDGILFDLGVSSPQLDDELEEIEQALQAAVAGLKAGGRLAVISFHSLEDRLVKRFMR-------------AQSKGKD----IPAG----L---PL----RDDQ--ID---RGQTLK------LI-GKAHKP---SAEETKLN-PRARS----SVLRVAER A0A1E2ZMC9/12-115_219-313 ---VLLEEAVEALAL----R-----A-------DGCYMDGTFGRGGHSRLILSHLGPDGRLLGFDKDPQAIATGQ----TLAAEDG--------R----FVIVQRSFAELGSEA-QE-----R----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLDAALDALEIGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QYKA-------FEPKIR------IH-GKAQFA---SDTETKAN-PRSRS----AVMRVAEK A0A0M3G557/15-116_226-320 ---VLLHEAVNGLAL----K-----E-------NGIYIDGTFGRGGHSRLILSKLSPNGRLISVDRDPRAIAEAQ----KI--QDS--------R----FQIEHNSFSHIPEIC-EK-----L----NLVGK--IDGILLDLGVSSPQLDEELDELESVLNSALDMLAPEGRLSIISFHSLEDRMVKHFMK-------------KQSKGED----IPKG----L---PL----REDQ--IQ---RNQKLK------TI-GKAIQP---SDAEIQAN-PRSRS----AVLRVAER A0A0F7M3L3/7-112_216-308 ---VLKDQAVEALLW----E-----P-------SGYYVDGTFGRGGHSRAVLAGLGNQGRLLGIDKDPQAILQGV----ALMEEDP--------R----FAIAQGSFAEFKNLA-GA-----S----RLGDPDGFSGVLLDLGVSSPQLDQELGDLEDLLARVVDSLAVGGRLVVISFHSLEDRLVKRFMR-------------RQAKGDD----LPSY----L---PV----TESQ-------RNCRMK------LI-GKAIKA---SAEEVAQN-PRARS----AVMRVAEK A1WC14/10-109_214-303 ---VLLDEAVHALL-----GDGD-AP-------AGTFVDGTFGRGGHSRLILQRLGPQGRLVAFDKDTEAIQAAA----RI--TDA--------R----FSIRHQGFSHLGELP-AA-----S-----------VSGVLLDLGVSSPQIDDELEELQQALEGSLHVLRPGGRLVVISFHSLEDRIVKQFIA-------------QHSK-EV----YDRR----A---P-----------FAPP-QPMRLR------AL-ER-IKP---STDEVAAN-ARARS----AVMRVAER A0A1E5AFA3/12-110_214-304 HIPVLLRPLLAAVAP----V-----A-------G-CWLDGTFGAGGYTRGLLEAGADQ--VTGVDRDPLAFELAK----PWA-GAFGD------R----LILQPGVFSRMDEYA---------------QD---LDGVVLDLGVSSMQLDLEYDELFEGLLAAERALKPGGLLAVVTFHSVEDRMVKRFFQ-------------HRAGKTG---RANRY----A---PE----QVET--------PSQFE------LVTRKAVGP---DDQELAEN-PRSRS----ARLRV--- A0A0W1RUJ9/10-113_217-305 ---VMRDEAVDALVI----D-----A-------SGTYVDGTFGRGGHSRAILARLSDKGRLVGFDRDAEAAESAA----RLADEDS--------R----FSFIKAPFSGWGDAL-VE-----N----DVTAP--VHGVMFDLGVSSPQLDQELDEITQALEQSLEHLRPGGRLVVISFHSLEDRIVKRFIR-------------DHSTAGKDFFGNPTG--------PV------------------ALK------RI-GKAVRA---GKDEIRNN-PRARS----AIMRVAER A0A0A2YNE1/14-115_225-319 ---VLLNEAVDGLAI----N-----P-------NGIYIDGTFGRGGHSRRILSLLGEHGRLIAIDRDPQAIAAAQ----SI--QDP--------R----FSIEHHNFSEINEIC-EK-----Y----QLIGK--IDGILLDLGVSSPQLDQELEELEKILTAAIEVLAPQGRLSIISFHSLEDRLVKRFMK-------------KQSKGDD----IPRG----L---PL----TEDQ--IE---RNQKLK------II-GKAIMP---SEQEIAVN-SRSRS----AVLRVAER A0A0D6SBQ8/12-115_219-313 ---VLLDEAVESLAV----R-----A-------DGCYLDGTFGRGGHSRLILRHLGSEGRLLGFDKDPQAISTGQ----ALAAEDG--------R----FVIVQRSFAELGEEL-AE-----R----GLVGQ--VDGVLLDLGVSSPQLDDELGDLERGLQAALDSLAIGGRLVVISFHSLEDRIVKQFMR-------------RQVKGEAD--NLPRD----L---PV----RQAV-------FEPRLR------LL-GKPQYA---SEAELKAN-PRSRS----AVMRVAEK A0A1G3Z7M5/3-101_204-294 HKPVLFQEVMAALRK----E-----G-------PALYLDCTFGGGGHTRGLLESNAEA-AVVGLDCDPEAAERAT----AFC-------E---KR----FEFIALNFGKLATLD-RG-------------P---FDGILMDLGVSSFQLDTELGNLERGLLAAFAKLKPGGVLAVISFHSLEDRIVKQFFR-------------EKAG---------------L---PIDRHDARCQ-------DDRAVQ----ATLLTKKPIIP---TSVECAQN-PRSRS----AKLRIL-- A0A0E3CFB7/14-115_225-319 ---VLLNEAVDGLAI----K-----P-------NGIYIDGTFGRGGHSRRILSLLGEHGRLIAIDRDPQAIAAAQ----SI--QDP--------R----FSIEHHNFSEINEIC-EK-----Y----QLIGK--IDGILLDLGVSSPQLDQELEELEKILTAAIEVLAPQGRLSIISFHSLEDRLVKRFMK-------------KQSKGDD----IPRG----L---PL----TEDQ--IE---RNQKLK------II-GKAIMP---SEQEIAVN-SRSRS----AVLRIAER A0A0P1I2P8/20-118_222-313 HIPVLLRPLLAAVAP----V-----S-------G-VWLDGTFGAGGYTRGLLEAGADK--VIGVDRDPLAFEMAA----DWA-DGYGD------R----LVMQPGVFSGLDEYA---------------QD---LDGVVLDLGVSSMQLDQEYDELFQGLMAAERALRPGGQLAVVTFHSIEDRMVKRFFQ-------------SRAGKTG---RANRY----A---PE----MEQE--------LPQFT------LKTRKAVGP---DEQELQEN-PRARS----AKLRVA-- Q02H20/10-113_217-311 ---VLLEEAVSALAP----R-----E-------DGCYLDGTFGRGGHSRALLEKLGTGGRLLGFDKDPQAIQTGK----ALAAEDG--------R----FVIVQRSFAELGDEV-RA-----R----GLEGR--VDGVLLDLGVSSPQLDDELGDLERGLDAALESLAVGGRLVVISFHSLEDRIVKLFMR-------------KHAKGEAD--NLPRD----L---PI----RSKV-------FEPRLK------LL-GKPQYA---SEEELKAN-PRSRS----AVMRVAEK A0A157V2K5/10-113_217-311 ---VLLEEAVSALAP----R-----E-------DGCYLDGTFGRGGHSRALLEKLGTGGRLLGFDKDPQAIQTGK----ALAAEDG--------R----FVIVQRSFAELGDEV-RA-----R----GLEGR--VDGVLLDLGVSSPQLDDELGDLERGLDAALESLAVGGRLVVISFHSLEDRIVKLFMR-------------KHAKGEAD--NLPRD----L---PI----RSKV-------FEPRLK------LL-GKPQYA---SEEELKAN-PRSRS----AVMRVAEK A0A150UMJ4/6-110_213-304 HIPVLGREALDHLAP----H-----A-------GGIYIDATFGAGGYSRAILDVPGTR--LIAIDRDHTAIAGGA----ELV-ERSAG------R----LTLVEDRFSNLAEVC-AA-----Q----GVDA---VDGVVMDVGVSSMQLDQELEELQTALAAAERVLKPGGRLVVVSFHSLEDRIVKNFLA-------------ERSKTGG----GSRH----L---PE----VAQT--------PPSFQ------LLTRRPVVA---GEEEVAHN-PRARS----AKLRAAE- H5WP14/13-117_222-311 ---VLLNEAIEAIAT----Q-----P-------DGVYVDGTFGRGGHARALLARLSPVGRLIAFDKDPDAIAAATQGPDAI--NDP--------R----FAIVHASFADMRTAL-AE-----R----GVAQ---VQGVLLDLGVSSPQIDNELEDLGQGLAAALEVLAPQGRLVVISFHSLEDRIVKTFIA-------------RESR-SE----VDRR----A---P-----------FAPP-KPTRLV------SV-AR-VKP---SYTEVLAN-PRARS----AILRVAER A0A094L8S4/11-113_217-311 ---VLLQESIEALAI----R-----P-------DGIYLDATFGRGGHSRAILSQLNSQGQLIALDRDPTAIEAAQ----SL-AEDP--------R----FTIIHTPFSRLDEVL-ET-----Q----QLRGR--LDGILFDLGVSSPQLDEELEEIEEALAAAVYGLKPEGRLVVISFHSLEDRIVKRFMR-------------AQSQGRK----IPPG----L---PL----RDDQ--ID---RGETLR------LV-GKAIKP---STGEIQEN-PRARS----SVLRIAAR A0A1M3G6L3/9-109_213-306 ---VLAQEAVAALAI----R-----P-------GGVYVDATFGRGGHSRLILDRLDASGRLIALDRDPDAVRAGA----AL--ADG--------R----LTLVKRAFSELGAVL-DG-----L----DIAQ---VDGVLLDIGVSSPQLDDELEELTAVLPQCVDRLLPGGRLAVISFHSLEDRIVKRFLR-------------DESRGEQ----PPAR----L---PI----PAAQ--I----RPGRLR------LV-GRARHA---ADTEVAAN-PRARS----AVLRAAER A0A1E4PW54/9-109_213-306 ---VLAQEAVAALAI----R-----P-------GGVYVDATFGRGGHSRLILDRLDASGRLIALDRDPDAVRAGA----AL--ADG--------R----LTLVKRAFSELGAVL-DG-----L----DIAQ---VDGVLLDIGVSSPQLDDELEELTAVLPQCVDRLLPGGRLAVISFHSLEDRIVKRFLR-------------DESRGEQ----PPAR----L---PI----PAAQ--I----RPGRLR------LV-GRARHA---ADTEVAAN-PRARS----AVLRAAER A0A1E4NFJ8/9-109_213-306 ---VLAQEAVAALAI----R-----P-------GGVYVDATFGRGGHSRLILDRLDASGRLIALDRDPDAVRAGA----AL--ADG--------R----LTLVKRAFSELGAVL-DG-----L----DIAQ---VDGVLLDIGVSSPQLDDELEELTAVLPQCVDRLLPGGRLAVISFHSLEDRIVKRFLR-------------DESRGEQ----PPAR----L---PI----PAAQ--I----RPGRLR------LV-GRARHA---ADTEVAAN-PRARS----AVLRAAER A0A0Q6LIB8/2-96_197-288 ------TEVVAALAP----A-----P-------GDVMVDATFGAGGYTRAILTSG-AR--VIAFDRDPDAIAAGE--------AAAID------G----LTLIHADFSAMESAL-DG-----I----GVGP---VDGVTMDIGVSSMQLDQELGELADGLAAAERVLKPGGRLAVVTFHSLEDRMVKRFLR-------------DRSGGAP---SASRH----L---PQ---AIQGP--------APSFE------LV-GRGIRA---GEAEVAAN-PRARS----ATLRTA-- A0A0V2RH40/12-115_219-313 ---VLLEEAVSALAP----R-----E-------DGCYLDGTFGRGGHSRALLEKLGTGGRLLGFDKDPQAIQTGK----ALAAEDG--------R----FVIVQRSFAELGDEV-RA-----R----GLEGR--VDGVLLDLGVSSPQLDDELGDLERGLDAALESLAVGGRLVVISFHSLEDRIVKLFMR-------------KHAKGEAD--NLPRD----L---PI----RSKV-------FEPRLK------LL-GKPQYA---SEAELKAN-PRSRS----AVMRVAEK A0A154KQB2/15-119_222-264_285-314 HKPVLLREVLDALSP----G-----A-------GEIMVDGTFGAGGYSRAILDHADCE--LYAIDRDPTAVATGK----KLE-ADYAN------R----FHMVEGCFGDMGTLL-PA-----A----GVDQ---VDGIVLDIGVSSMQLDQELGELERAMQAAENLLKPGGRLVIVTFHSLEDRSVKTFMK-------------ERS-----------------------------------------FT------TLTRKAVTA---QKDELRAN-PRARS----AKLRAV-- A0A1B9QYL6/10-111_219-315 ---VLLNESIDGLAI----K-----P-------DGTYIDGTFGRGGHSRTILSKLGENGRLFSIDRDPQAIAEAK----KI--DDP--------R----FTIIHGPFSGMAEYA-ER-----Y----DLIGK--VDGVLLDLGVSSPQLDDELEEIDTALKGAASILAPQGRLSVISFHSLEDRMVKRFIR-------------KESKGPQ----VPHG----I---PL----TEAQ--ISAL-GSADLK------PI-GKANKP---SESEVEQN-PRSRS----SVLRIAEK A0A1E5BK57/10-111_219-315 ---VLLNESIDGLAI----K-----P-------DGTYIDGTFGRGGHSRTILSKLGENGRLFSIDRDPQAIAEAK----KI--DDP--------R----FTIIHGPFSGMAEYA-ER-----Y----DLIGK--VDGVLLDLGVSSPQLDDELEEIDTALKGAASILAPQGRLSVISFHSLEDRMVKRFIR-------------KESKGPQ----VPHG----I---PL----TEAQ--ISAL-GSADLK------PI-GKANKP---SESEVEQN-PRSRS----SVLRIAEK A0A081KED5/10-109_213-305 ---VLLYEAVEALLT----D-----P-------SGVYVDGTFGRGGHSRLILSSLTEQGRLIGIDKDPAAIATGH----ELGQQDS--------R----FSIHHGSFTDVDSVN-GE-----Q--------Q--VDGILLDLGVSSPQLDDELEDLVLCLDRALEKLKPGGRLVVISFHSLEDRIAKRFIR-------------KHQKGDE----HPSW----L---PV----REDQ-------LNRRLK------SL-GKAIKP---SKQEVAEN-VRSRS----AVMRVAEK A0A1E7UYM7/14-117_221-313 ---VLLDEAVDALDLSG-DR-----A-------HGIYVDGTFGRGGHSRLILSRLAPDARLIGFDKDLQAIATAE----QI--GDP--------R----FEIVHDSFATMTASL-AE-----R----GVQQ---VDGILLDLGISSPQVDDELEDLEIGLSQAYACLAPGARMAVISFHSLEDRMVKRFFA-------------SKANVEQ----PDRR----L---PI----RAVD------LPQPEMK------LI-SK-MKP---SDAEIEGN-PRSRS----AVMRVAQR A0A0T8LFA6/12-115_219-313 ---VLLDEAVAALNV----C-----A-------DGRYLDGTFGRGGHSRLLLQQLGPNGQLLGFDKDPLAIATGQ----ALAAEDG--------R----FVVVQRSFAELGDEV-AQ-----R----GWTGA--VSGILLDLGVSSPQLDDELGDLECGLDAALEALEVGGRLVVISFHSLEDRIVKQFMR-------------RHAKGEAD--KLPRD----L---PI----IPKA-------FEPRLK------LI-GKPQYA---SEAEVKAN-PRSRS----AVMRVAEK A0A1E2V0L7/8-111_215-307 ---VLLQASVEALKV----E-----P-------MGIYMDATFGRGGHSRLILEGLGEHGRLIGIDRDPQAVAHGE----QLFAHDN--------R----FRMVQENFAMLAEVA-EQ-----Q----GVAGQ--VNGILLDLGVSSPQLDQELDALRQTLDGVIDVLAPGGRLVVISFHSLEDRIVKRFMR-------------DQAKGDP----FPPG----V---PV----TDDQ-------RQPKLR------LV-GKAITP---DEAETGAN-PRARS----AVLRVAER A0A0F6ZZD7/10-113_217-311 ---VLLEEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSEA-QE-----R----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAAMDALEVGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QFKP-------FEPKIK------IH-GKAQFA---SDVETKAN-PRSRS----AVMRVAEK A0A0P9MYF6/10-113_217-311 ---VLLEEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSEA-QE-----R----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAAMDALEVGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QFKP-------FEPKIK------IH-GKAQFA---SDVETKAN-PRSRS----AVMRVAEK A0A1E2VE85/16-119_223-316 ---VLLDEAVEALVT----R-----P-------EGRYIDGTFGRGGHSRLILQQLNNEGRLLGIDKDPRAIATGE----ALAAQDP--------R----FQIAHRSFAEIETLT-ET-----Q----GWSEQ--VDGILLDLGVSSPQLDDELADLEDVLDRAVRQLRPGGRLVIISFHSLEDRMVKRFIR-------------DAARGDT---HLPPG----I---PL----TEDQ-------IERRLK------PI-GKAIKP---SAEEIEVN-VRSRS----AVMRVAEK A0A0Q4INU7/10-112_213-304 HIPVLLDEVIAALAP----A-----P-------GETIVDGTFGAGGYTRALLSRG-AC--VIAFDRDPDAIAAGQ----D-W-ADGEE------R----LTLVAADFSAMVAEL-EA-----R----DALP---VDGITLDIGVSSMQLDQELGELADGLLAAERALKPGGRLAIVTFHSLEDRMVKRFLR-------------TRSGSAP---SGSRH----L---PQ---AKTVV--------EPSFT------DV-GRPVRA---GEDELARN-PRARS----ATLRTA-- A0A0C1X1X0/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSKLGPDGRLIGFDKDPQAIATGQ----TLAAEDG--------R----FVVVQRSFAELGSVV-AE-----Q----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALECLEVGGRLVVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----RHVA-------FEPKIK------VH-GKAQTA---SDAELKAN-PRSRS----AVMRVAEK A0A173J7L1/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSKLGPDGRLIGFDKDPQAIATGQ----TLAAEDG--------R----FVVVQRSFAELGSVV-AE-----Q----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALECLEVGGRLVVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----RHVA-------FEPKIK------VH-GKAQTA---SDAELKAN-PRSRS----AVMRVAEK A0A132F6B0/10-110_218-310 ---VLLDEAVESLVT----R-----P-------DGVYVDGTFGRGGHSRAVLARLGPGGRLIAFDKDPRAIETAQ----GI--GDA--------R----FSIVHDSFASMRDAL-AA-----R----GVEK---VSGVLLDLGVSSPQVDDELADLQVVLDAALSLLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLK------II-GR-QFP---GEAEVAAN-PRARS----AVMRIAER F0GHF9/10-110_218-310 ---VLLDEAVESLVT----R-----P-------DGVYVDGTFGRGGHSRAVLARLGPGGRLIAFDKDPRAIETAQ----GI--GDA--------R----FSIVHDSFASMRDAL-AA-----R----GVEK---VSGVLLDLGVSSPQVDDELADLQVVLDAALSLLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLK------II-GR-QFP---GEAEVAAN-PRARS----AVMRIAER G4MC62/14-114_222-314 ---VLLKEAVDGLIT----R-----T-------DGIYIDGTFGRGGHSRAILQRLGDAGRLIAFDKDPLAIATAA----KI--QDS--------R----FSIMHDSFAALRDAA-NE-----R----GVQK---VSGVLLDLGVSSPQVDDELAELQVVLESALALLEQGGRLVVISFHSLEDRIVKRFMQ-------------ARASAPA----VDRR----L---PI----RAVD------LPSPPLR------LV-GR-VFP---GEAEVTDN-PRARS----AVMRIAER W0R3S8/2-102_208-302 ----LLHEAVDGLAL----K-----A-------EGIYIDGTFGRGGHSRLILSQLGEKGRLIAIDRDPRAIAEAK----TI--SDP--------R----FQIVHSAFSAIPDIC-EE-----L----GLTGK--IDGILLDLGVSSPQLDEELDELEKALNSALSVLAAEGRLSIISFHSLEDRMVKQFMR-------------KHSKGEP----VPKG----L---PI----LESE--LN---KNIPLQ------TV-GKAIMP---SEAEISAN-PRSRS----AVLRVAQR J3HHU8/14-117_221-313 ---VLLEEAVDALAIEG-ER-----A-------DGIYLDGTFGRGGHSRAILAKLGPRGRLIAFDKDPLAIATAR----QI--ADP--------R----FEIVHDSFATLDQAL-AV-----R----GIAQ---VDGILMDLGISSPQVDDELEELEVGLDKAFEQMALHGRLVVISFHSLEDRIVKQFMA-------------SKANAPQ----PDRR----L---PI----RAVD------LPQPPAR------LL-GR-TMP---SDAEVGAN-PRARS----AVMRNLER A0A0A8BS45/14-114_222-314 ---VLLEEAVDALLW----R--D----------DGVYVDGTFGRGGHSRRLLERLGARGRLIAFDKDPQAIAEAA----KI--ADP--------R----FSIEHDSFATLREVL-AR-----R----GIDK---VSGVLLDLGVSSPQFDDELADLQIALDVAADVLETGGRLVAISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----V---PL----RAHE------IPEPPFK------TS-RK-IKP---SAAEVEAN-PRARS----AIMRVMER A0A0X3TAP9/22-125_229-321 ---VLLEESLRALAI----D-----P-------DGRYIDGTFGRGGHSGAILNALSPSGRLLAIDQDPEAVKWAK----QTFSADP--------R----FDIAHARFDELVQLC-EA-----R----DWVGK--VNGVFLDIGVSSPQLDEELEGLASVLTQSLTVLAPGGRLAVISFHSLEDRIVKRFIR-------------EHATAKD----LYPA----S---PI----EIEV-------VAPVLK------KV-GKPVFP---SETECQRN-PRARS----AVLRVAQK A0A0K0SXU9/27-127_232-325 ---VLLNEAVEALNV----R-----A-------DGIYVDGTFGRGGHSRLILSKLGSQGRLIGLDRDLAAVAHGQ----AI--ADA--------R----FSMVHAHFSSMATVL-AE-----L----GVQA---VDGILLDLGISSPQIDEELEELSLVMPDCLRLLRPQGRLAVISFHSLEDRIVKRFIQ-------------SEEDRDN----LPAG----L---PV----RAKD--L----PQPRLV------SV-GKTIKP---SKAEVAAN-VRSRS----AVLRVAER A0A1J5RFF2/17-119_224-318 ---VLLHEAVDRLVT----D-----T-------AGIYLDATFGRGGHTRELLSRLAPAGRVVALDRDPQAIAAGR----ELAQADA--------R----LTLVHAPFSAFGEVL-NG-----L----EIAS---VRGMLFDLGVSSPQIDEELAELEAALAQVMARLADGGRLVVISFHSLEDRMVKQFMA-------------SQARAPE----LTRE-QRRM---PV----EPAP-------FHPGLK------LL-AK-LRP---GPAEVGAN-PRARS----AIMRVAER A0A158M9L5/42-132_236-328 -------------------R-----A-------GGTFVDGTFGRGGHSRELLSRLGPQARLVVFDKDPQAIAVAQ----ALAAEDG--------R----VQVVHGGFATMAEAL-MD-----R----GIEQ---VDGVMLDLGVSSPQIDDELEELARALASAIELLAPGGRLAVISFHSLEDRMVKQCIA-------------AAARPAA----AHPR----L---PL----RESE--L----PQPILQ------SL-GK-VVA---DDEEVAGN-ARSRS----AILRAAER A0A0W0RY03/5-108_212-304 ---VLLQESIEGLAI----D-----P-------EGIYIDATFGRGGHSRAILERLSERGRLIAIDKDPEAIAFAN----QVFSQEK--------R----FEIFHGSFADIGVYT-EK-----A----GVSGA--VSGVLMDLGVSSPQLDDELSDLEKALKSAVDILKIGGRLVVISFHSLEDRIVKQFMK-------------SMEEGNK----PPPG----V---PV----KYND-------IAKKFK------RV-GKAIKP---DESEIKEN-IRSRS----AVLRIGEK H3KD18/10-110_216-307 ---VLGEEAPEALLT----D-----P-------NGIYVDGTFGRGGHSRRILEKLGPEGRLYAFDRDPEAVVAAR----GI--TDP--------R----FTIIHEPFSTMRESL-AA-----L----GVTE---VTGVFLDIGVSSPQIDDELDELRRALSAAGAILRPEGRLAVISFHSLEDRIVKRFFE-------------REAHPERE---LDPR----L---PI----PASQ--L----PQPRFT------DV-KRIM-P---GEAECEAN-PRARS----AVLRVG-- A0A1B3BCJ0/9-112_216-308 ---VLLDEAVEALVI----N-----P-------DGIYIDCTFGRGGHSRAVLSALSENGRLMAFDKDPQAIEKGQ----ALEREDS--------R----FEIIHGSFSLLEQEV-KE-----H----GLFGQ--IDGVLMDLGVSSPQLDQELDDLAKTLEQSLECLKVGGRIVAISFHSLEDRMVKRFIQ-------------KQERGQD----FPPG----L---PV----TEDM-------IKRRMK------KV-GKFTRA---GDEELARN-NRARS----AVMRIAEK R9PI41/10-112_216-310 ---VLLQECIDGLAI----K-----E-------DGIYVDGTFGRGGHSRAILQQLGPKGRLIAIDRDPRAIEAAK----QF-ADDP--------R----FQIVHGPFSGIEQYI-TE-----L----GLAKK--IDGVLLDLGVSSPQLDDELDEIDTALLGAMNSLATDGRLAVISFHSLEDRMVKRFIR-------------KQEKGQQ----FPRG----L---PL----TEEQ--LA---SGRYLK------SI-GRAIKP---SAAEIEVN-PRSRS----SVLRVAKR L9UCY9/77-178_282-375 ---VLLEGAVDALVH----D-----A-------RGVYLDGTFGRGGHSRLILDRLDAQGQLLAMDRDPQAIAAAA----DI--DDP--------R----FQIAQREFAQLAEFA-RE-----Q----GVFGK--LSGVLLDVGVSSPQLDDELEQLDSALDAALEALAPGGHLVVISFHSLEDRRVKRFIR-------------HHVRGDT---DLPRG----V---PI----RDDQ-------MNRRLE------AL-GKGVRP---SEEEVDAN-PRARS----AVMRAARK C5TNH9/12-114_218-311 ---VLLHEAVDALAI----R-----K-------DGIYVDGTFGRGGHSRLILSRLSEQGRLVVFDKDPEAIAVAN----ELAKQDK--------R----VSVVHNGFETFQTAL-DE-----L----GIDK---IDGALFDLGISSPQIDDELEEVEAVLPQVAGRLKEGGRLAVIAFHSLEDRIVKQFIK-------------KYSQHAP----LPRW----A---VV----KEAD--L----PQPPLK------AV-GKAIKP---GSTETEAN-PRARS----AVLRVAER A0A103HX56/10-110_218-310 ---VLLDEAVDSLVT----R-----P-------DGIYVDGTFGRGGHSRAVLARLAPGGRLIAFDKDPRAIETAQ----RI--EDA--------R----FSIVHDSFASMRDAL-AA-----R----GVEK---VSGVLLDLGVSSPQVDDELADLQVVLDAALSLLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLK------IV-SR-QFP---SEAEVAAN-PRARS----AVMRIAER A0A154R4E0/11-111_215-306 ---VMLGEAVEGLAV----Q-----A-------GGRYLDGTFGRGGHARAVLSRLGPGGRLLLMDRDPAAIAAAR----AEFAGDP--------R----VAIRHANFSSLAEWD-------------ETAAG--LDGVLLDLGVSSPQLDEELDALQQGLDAALERLKPGGRLAVISFHSLEDRAVKLFIR-------------DHSGRVQ---NSRRG----P---PV----PAAP---------ARLA------AV-GKAQFP---SAAEQAAN-PRSRS----AVLRVAEK A0A075JYA5/10-110_214-305 ---VMLGEAVEGLAV----Q-----A-------GGRYLDGTFGRGGHARAVLLRLGPDGRLLLMDRDPTAIATAQ----TEFASDP--------R----VSIRHANFSSMAEWS-------------ETAGG--LDGILLDLGVSSPQLDEELEALDRGLNAALDLLKVGGRLSIISFHSLEDRAVKLFIR-------------DHSGRVQ---GSRRG----P---PV----AAAP---------ARLA------AV-GKAQFP---SEQELSVN-PRSRS----AVLRVAEK A0A0N8KC88/10-112_216-310 ---VLLAESIQGLAI----D-----P-------SGIYIDATFGRGGHSRAILEQLSDAGHLYALDRDPSAAAAAQ----AL-AHDP--------R----FTFIHTAFSALPHIV-AE-----H----NLDGK--VAGILFDLGVSSPQLDNELEEAETALEAAVEALQPGGRLAVISFHSLEDRLTKHLMR-------------RLSQRAP----VPAG----I---PL----REDQ--IP---DDRKLK------LV-GKAIKP---SAAEIAAN-PRCRS----SVLRVAER A0A0X3TPS9/13-111_215-306 HIPVLLRPLLAAVAP----V-----H-------G-VWLDGTFGAGGYTRGLLDAGADK--VIAVDRDPLAFDMAA----SWA-GDYGD------R----LVMQPGVFSRMDEYA---------------QD---LDGVVLDLGVSSMQLDQEYDELFEGLMAAERALKPGGQLAVVTFHSIEDRMVKRFLQ-------------ARSGRTG---RASRY----A---PE----LPQE--------QPQFT------LKTRKAIGP---DEQELAEN-PRARS----AKLRVA-- A0A0H2MEH5/1-101_212-254_277-306 ----MLPEIIAALTP----Q-----D-------NEVFVDGTFGAGGYSRAIAQQADCK--VFGIDRDPTAHENAK----KLP-EVVAG------K----ISTLSGCFGDMQALL-KE-----A----GINK---VDGITLDLGVSSMQLDQELGELERGLEAAEQLLNPGGRMAIVSFHSLEDRIVKNFLR-------------ERS-----------------------------------------FS------LPTKKAIAP---SEKECSEN-PRSRS----AKLRVA-- A0A1F4G7Y6/13-122_227-316 ---VLLHEAVDALWD----E-----ATGPLP--QGRYVDATFGRGGHSRLILSKLGPGAALLAIDRDPEAVAHATEGEAAI--HDA--------R----FQIAHAPFSQWAEAA-EA-----R----GWEA---VDGLLMDIGVSSPQIDNELGELEDALDAALRMLAPGGRLAVISFHSLEDRIVKTFIA-------------RHSK-EE----VDRR----V---P-----------FAQP-RPLLLT------SL-GR-IKP---SEAEVAGN-PRSRS----AVLRVAER W6QZY7/11-114_218-312 ---VLLDEAVEGLAV----R-----G-------DGRYMDGTFGRGGHSRLILQKLGPDGRLLGFDKDPLAIATGE----ALAAEDG--------R----FVVVQRSFAELGDEA-VV-----R----GISGQ--VAGILLDLGVSSPQLDDELGDLERGLEAALETLEVGGRLVVISFHSLEDRIVKQFMK-------------RQAKGEAD--KLPRD----L---PI----IPKA-------FEPRLK------LI-GKPVYA---GDAELKAN-PRSRS----AVMRIAEK A0A061CXN6/11-114_218-312 ---VLLDEAVEGLAV----R-----G-------DGRYMDGTFGRGGHSRLILQKLGPDGRLLGFDKDPLAIATGE----ALAAEDG--------R----FVVVQRSFAELGDEA-VV-----R----GISGQ--VAGILLDLGVSSPQLDDELGDLERGLEAALETLEVGGRLVVISFHSLEDRIVKQFMK-------------RQAKGEAD--KLPRD----L---PI----IPKA-------FEPRLK------LI-GKPVYA---GDAELKAN-PRSRS----AVMRIAEK A0A167EXX8/10-112_216-310 ---VLMDETLDALDI----K-----S-------NGIYIDGTFGRGGHSGQILKRLGESGRLQAIDQDPQAIKAAQ----KF-AQDS--------R----FSIAHNRFSNIAQVA-QE-----A----DLTGK--VDGILLDIGVSSPQLDDELEEIQTALSASLDVLKPGGRLVVISFHSLEDRIVKQFIK-------------KQSKGEA----IPRG----L---PL----TDDQ--IN---KDLTLK------AI-GKAIKP---SDDEIKRN-PRARS----SVLRIAEK A0A0W7WEW9/13-110_214-307 HVPVLLRPLLDAVAP----V-----R-------G-LWIDGTFGAGGYARGLIEAGAER--VIGIDRDPQAHEMAA----QWI-GGWPG-----------LSLVRANFAEMDQVA---------------EA---ADGVVLDLGVSSMQLDEEYGALWQGLMAAERVLRPGGLLAVVTFHSIEDRMVKRFFQ-------------LHGDRKT---HVNRY----AR-EAE----AAPA--------TTPFE------ILTRKAVGP---DARELAEN-PRSRS----AKLRVA-- U1S802/15-116_226-320 ---VLLHETVEGLAL----K-----E-------NGIYIDGTFGRGGHSRLILSKLADNGKLIAIDRDPKAVAEAK----KI--QDP--------R----FHIEHNTFSEILPIC-EK-----L----GLAGK--IDGILLDLGVSSPQLDDELDELEKVLASALAVLAPGGRLSIISFHSLEDRMVKHFMR-------------KQSQGEA----IPKG----L---PL----REDQ--IQ---RNQRLK------VI-GKAMMP---SEDEIAQN-PRARS----AVLRIAER Q9HVZ5/10-113_217-311 ---VLLEEAVSALAP----R-----E-------DGCYLDGTFGRGGHSRALLEKLGAGGRLLGFDKDPQAIQTGK----ALAAEDG--------R----FVIVQRSFAELGDEV-RA-----R----GLEGR--VDGVLLDLGVSSPQLDDELGDLERGLDAALESLAVGGRLVVISFHSLEDRIVKLFMR-------------KHAKGEAD--NLPRD----L---PI----RSKV-------FEPRLK------LL-GKPQYA---SEEELKAN-PRSRS----AVMRVAEK A0A1G5ID31/10-113_217-311 ---VLLEEAVSALAP----R-----E-------DGCYLDGTFGRGGHSRALLEKLGAGGRLLGFDKDPQAIQTGK----ALAAEDG--------R----FVIVQRSFAELGDEV-RA-----R----GLEGR--VDGVLLDLGVSSPQLDDELGDLERGLDAALESLAVGGRLVVISFHSLEDRIVKLFMR-------------KHAKGEAD--NLPRD----L---PI----RSKV-------FEPRLK------LL-GKPQYA---SEEELKAN-PRSRS----AVMRVAEK A0A0H3QUJ6/10-113_217-311 ---VLLEEAVSALAP----R-----E-------DGCYLDGTFGRGGHSRALLEKLGAGGRLLGFDKDPQAIQTGK----ALAAEDG--------R----FVIVQRSFAELGDEV-RA-----R----GLEGR--VDGVLLDLGVSSPQLDDELGDLERGLDAALESLAVGGRLVVISFHSLEDRIVKLFMR-------------KHAKGEAD--NLPRD----L---PI----RSKV-------FEPRLK------LL-GKPQYA---SEEELKAN-PRSRS----AVMRVAEK A0A1D5BRS4/10-113_217-311 ---VLLEEAVSALAP----R-----E-------DGCYLDGTFGRGGHSRALLEKLGAGGRLLGFDKDPQAIQTGK----ALAAEDG--------R----FVIVQRSFAELGDEV-RA-----R----GLEGR--VDGVLLDLGVSSPQLDDELGDLERGLDAALESLAVGGRLVVISFHSLEDRIVKLFMR-------------KHAKGEAD--NLPRD----L---PI----RSKV-------FEPRLK------LL-GKPQYA---SEEELKAN-PRSRS----AVMRVAEK G2FEU1/3-31_135-227 --------------------------------------------------------------------------------------------------------------AQVA-QN-----A----GVAGR--VDGVLLDLGVSSPQLDQELDDLQQFLGQVLEVLRPGGRLAVISFHSLEDRIVKRFMR-------------DQAKGDR----FPAG----V---PV----TQAQ-------LQPRLK------LL-GKAIRP---GADETESN-PRARS----AVLRVAER Q3IFZ6/10-112_216-310 ---VLMDETIDALAI----K-----P-------DGIYMDGTFGRGGHSGQILARLGSEGRLQAIDQDPQAIKSAE----KF-ADDP--------R----FAIAHTRFSNLYGVA-EQ-----N----DLIGK--VDGILLDIGVSSPQLDDELEEIQTALQSAIKVLKPGGRLVVISFHSLEDRIVKQFIR-------------KQSRGET----LPRG----L---PL----TDAQ--IN---QNLTLK------AV-GKAIKP---SAAEVERN-PRSRS----SVLRIAQR A0A0C3R4E4/10-112_216-310 ---VLLTETVAGLNI----K-----P-------DGIYIDGTFGRGGHSREVLKQLGPNGRLVAIDRDPQAIAAAE----QF-ADDA--------R----FSIVHGGFGQLAQYV-DD-----L----GLRGK--IDGILFDFGVSSPQLDDELEQIDQALEGAVTVLAPHGRLSVISFHSLEDRMVKRFIR-------------RHSQGES----VPHG----L---PL----TEAE--IN---KTRLLK------AV-GKAIKP---SAEEIDRN-ARARS----SVLRVAER D0CW45/13-111_215-306 HIPVLLRPLLDAVRP----V-----S-------G-TWLDGTFGAGGYTRGLLEAGADR--VIGVDRDPLAFEMAA----DWA-AEYGD------R----LVMQPGVFSRMDEYA---------------SD---LDGVVLDLGVSSMQLDQEYEELFQGLMAAERALKPGGKLAVVTFHSVEDRMVKRFLQ-------------ARAGKTG---RANRY----A---PE----IQQD--------QPQFT------LKTRKAIGP---DAQELQDN-PRARS----AKLRVA-- A0A0W0S7I1/7-110_214-306 ---VLLHESIKGLAI----K-----S-------SGIYFDGTFGRGGHSREILRHLNDEGRLFAIDKDIDAIAYAT----DHLGQDK--------R----FHIFQGSFARIEEFA-RE-----A----DVLGK--VDGILLDLGVSSPQLDNELNDLKSCLEQCINVLAPKGRLAVISFHSLEDRIVKQFMR-------------DKEQGEK----PPPE----V---PI----RHEE-------LITNFK------RI-GKAIMP---QESEVKEN-VRARS----AVLRIGEK A0A1H2GRQ3/12-115_219-311 ---VLLDEALEALAV----K-----P-------DGLYVDGTFGRGGHSREVLARLGSAGRLIGFDKDPEAIRAGT----ALAAEDG--------R----FVVVKRSFADLGEEL-KA-----R----GLYGE--VDGVLLDLGVSSPQLDDELDDLKLGLTAAVDVLKPGGRLAVISFHSLEDRLVKQFMR-------------LESRGAP----IPRG----L---PV----RDSD-------IHTRLT------LI-GKAIKP---GTAELAVN-PRARS----AVLRIAEK A0A0C2HXH3/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSKLGPGGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGSEI-AE-----R----NMAGK--VNGILLDLGVSSPQLDDELGDLEIGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------RLVKGESD--NLPRN----L---PV----RHQA-------FEPRIK------VH-GKAQFA---SEAELKAN-PRARS----AVMRVAEK D5BW18/15-118_222-314 ---VLLREVIQALAI----R-----R-------DGLYVDATFGRGGHAQAILDALSSEGRLLGVDKDPEAIAAGR----ILAQQDR--------R----FSIVQASIGELARVV-AE-----Q----GWLKR--VNGVLFDLGVSSPQLENELEELRAALEQAVTVLAVKGRLVVISFHSLEDRMVKRFFR-------------QKSRGED----LPPD----L---PV----MQDH-------FQASLQ------VL-GKLIWP---TPEEVSRN-PRARS----ARLRVAEK A0A0B3C0Q8/12-115_219-313 ---VLLEEAVDALGV----R-----P-------DGCYLDGTFGRGGHSRLILEQLNERGHLLGFDKDPLAIATGQ----ALMAEDP--------R----FTIVQRSFAELGQAV-TE-----Q----GLQGR--IAGVLLDLGVSSPQLDDELGDLEQGLEAALDVLEVGGRLVVISFHSLEDRIVKQFMR-------------RQAKGEAD--TLPRD----L---PI----IPKA-------FEPRLK------LL-GKPQYA---SEAEVRAN-PRSRS----AVMRVAEK A0A1H5SG62/13-114_218-310 ---VMLEEVLDMWFS----R-----G-------DGFYVDGTFGRGGHSRALLEKLDRQGRLAGIDRDPQAVAAGE----QLASEDD--------R----FRIIANRFDCLPEVV-AE-----A----G---R-PIDGLLLDLGVSSPQLDDELDALNKVLEQSLETLAIGGRLAIISFHSLEDRIVKLFIR-------------DHSGRAP---KGRGG----L---PL----GDE--------MPQRLE------PV-GKAIRA---SKAELKVN-VRSRS----AVLRVAEK E6VLR6/8-112_215-305 HVPVLGPEAVGLLAP----R-----D-------GGVYVDGTFGAGGYTRLILQTAGSR--VIAIDRDPTAIVGGA----GLV-AEAGG------R----LTLVQDRFSNLADVC-AA-----Q----GAAT---VDGVVIDIGVSSMQLDQELDELHQALDAAERVLKPGGRLAVVSFHSLEDRIVKTFLA-------------ERSKTGG----GSRH----L---PE----VAQA--------APSFT------LLAKRPIVA---GDAEVAAN-PRARS----AKLRGA-- A0A0J6KLH5/11-113_217-310 ---VLLTEAVDALAI----R-----P-------DGTYVDCTFGRGGHSRLILSRLGPQGRLVAFDKDPEAIAVAT----RLAEEDP--------R----FQIVHNGFETLGQEL-DR-----L----GIPQ---VDGVLMDLGVSSPQIDDELDELKAVLPQAARRLAENGRLAVISFHSLEDRIVKQYLR-------------DASSEEK----LPAW----A---MV----RAAD--M----AQPPLS------TV-GKPVRA---SDEEVRAN-ARSRS----AIMRVAER A0A147GDC2/12-115_219-313 ---VLLDEAVEALAL----R-----A-------DGCYLDGTFGRGGHSRLILSKLGPEGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGAEV-AE-----R----GLHGK--VSGILMDLGVSSPQLDDELGDLETGLQAAIDALEVGGRLAVISFHSLEDRIVKLFMR-------------KLAKGEAD--NLPRN----L---PV----QHKV-------FEPTIK------LI-GKAQFA---SDAELKAN-PRSRS----AVMRVAEK D6V2U0/8-112_215-305 HISVLGREAVEFLAP----H-----A-------GGIYVDATFGAGGYSKRILEVAGTR--VIGIDRDRTAVAEAF----DLV-ERAEG------R----LTVVQDRFSNLAEVC-AA-----E----GAPQ---VDGIVMDIGVSSMQLDRELDELQTALHASERALKPGGRLVVVSFHSLEDRIVKNFLA-------------SRAKQGG----GSRH----L---PE----VEQI--------APSFE------ILTKRPVVA---NDNETAVN-PRARS----AKLRAA-- K4L3D4/9-108_212-304 ---VLLNEAVDALIT----D-----P-------SGIYVDGTFGRGGHSRLVLTRLAGDGRLIGVDKDPQAIASAE----ALAAANS--------R----FSVRHGSFAQIGEWF-EP-----AS----------VDGVLLDLGVSSPQLDQELGDLEVVLEAALKVLKPGGRLVVISFHSLEDRLVKRFIR-------------DKERGPQ----LPKG----L---PV----MESQ-------ITKTLK------SL-GKAVKA---SARELDEN-QRSRS----AVMRCAEK A0A1F0GXB9/12-114_218-311 ---VLLHEAVDALAI----R-----E-------DGIYVDGTFGRGGHSRLILSRLGEQGRLVVFDKDPEAIAVAN----ELAAQDK--------R----VSVVHNGFETFQTAL-DE-----L----GIDK---IDGVLFDLGISSPQIDDELEEVEAVLPQVAGRLKEGGRLAVIAFHSLEDRIVKQFIK-------------KYSQHAP----LPRW----A---VV----KEAD--L----PQPPLK------AV-GKAIKP---GSIETEAN-PRARS----AVLRVAER A0A0J8G326/12-115_219-313 ---VLLDEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGSDGKLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGAEV-AE-----R----GMAGK--VAGVLLDLGVSSPQLDDELGDLEAGLEAALEALEVGGRLVVISFHSLEDRIVKLFMR-------------RLVKGESD--NLPRN----L---PV----RFEA-------FVPKIK------IH-GKPQFA---SEAELKAN-PRSRS----AVMRVAEK A0A1H0JJ95/13-111_215-305 HIPVLLRPLLQAIAP----V-----T-------G-VWLDGTFGAGGYTRALLEAGADR--VIAVDRDPLAFDMAA----GWA-GAYGD------R----IEMVAGVFSRLDEYG---------------QD---LDGVVLDIGVSSMQLDREYGELLAGLEAAERALRPGGKLAVVTFHSIEDRIVKRFFT-------------DRSGGGG---RANRY----A---PQ----LEQA--------APQFT------LPTKKAIGP---DAQELDEN-PRARS----AKLRV--- A0A0G9H0A6/10-110_214-305 ---VMLGEAVEGLAV----Q-----A-------GGRYLDGTFGRGGHARAVLSRLGPDGRLLLMDRDPQAIATAQ----AEFASDP--------R----VSIRHANFSSMAEWD-------------QTAGG--LDGILLDLGVSSPQLDEELDALEHGLKAALELLKVGGRLSIISFHSLEDRAVKLFIR-------------DHSGRVQ---GSRRG----P---PV----AAAP---------ARLA------AV-GKAQFP---SDAELSVN-PRARS----AVLRVAEK E1P2H4/12-114_218-311 ---VLLHEAVDALAV----R-----E-------DGVYVDGTFGRGGHSRLILSRLGDAGRLVVFDKDPRAVAAAE----ELARSDK--------R----VSVVHGGFASFQTAL-DD-----L----GIGD---VDGALFDLGVSSPQIDDELEEVEAVLPQVMCRLKQGGRLAVIAFHSLEDRIVKQFVG-------------KYSRHAP----LPRW----A---AV----READ--L----PEPPLK------IV-GKALKP---GGAEVAAN-PRARS----AVLRVAER A0A0W0JCM7/12-115_219-313 ---VLLEEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSHLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSEV-QE-----R----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALDTLEIGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRD----L---PI----QFKP-------FEPKIK------IH-GKAQFA---SEAETKAN-PRSRS----AVMRVAEK A0A1G5B7A3/7-110_214-306 ---VLLHESIEGLAI----K-----S-------QGIYIDGTFGRGGHSREILKALGDSGYLIAIDKDPEAIDHAR----KIFANDK--------R----FSIFHASYAQLSEIA-KQ-----T----GVYGK--VNGILLDLGMSSPQIDNELAELKSCLEQSFDVLAPGGRLVVISFHSLEDRIVKQFMR-------------FKEQGAS----LPRE----I---PL----KHEE-------IQIRFK------RI-NKAIKP---DEAEIKDN-LRARS----AVLRIGEK A0A0W0VL45/7-110_214-306 ---VLLHESIEGLAI----K-----S-------QGIYIDGTFGRGGHSREILKALGDSGYLIAIDKDPEAIDHAR----KIFANDK--------R----FSIFHASYAQLSEIA-KQ-----T----GVYGK--VNGILLDLGMSSPQIDNELAELKSCLEQSFDVLAPGGRLVVISFHSLEDRIVKQFMR-------------FKEQGAS----LPRE----I---PL----KHEE-------IQIRFK------RI-NKAIKP---DEAEIKDN-LRARS----AVLRIGEK A0A1A5XD11/14-114_222-314 ---VLLDEAVDALVT----R-----A-------DGVYVDGTFGRGGHSRAVLGRLSEAGRLIAFDKDPLAIATAE----QV--GDA--------R----FSIVHESFASLRDAM-AE-----R----GVGR---VSGILLDLGVSSPQIDDELAELQVVLEAALALLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHATAPA----IDRR----L---PI----RAVD------LPSPPLK------LL-GR-VFA---SDEEVAAN-PRARS----AVMRIAER F8GZZ5/12-115_219-313 ---VLLDEAVAALNV----R-----A-------DGRYLDGTFGRGGHSRLLLQQLGPNGQLLGFDKDPLAIATGQ----ALAAEDG--------R----FVVVQRSFAELGDEV-AQ-----R----GWTGG--VSGILLDLGVSSPQLDDELGDLECGLDAALEALEVGGRLVVISFHSLEDRIVKQFMR-------------RHAKGEAD--KLPRD----L---PI----IPKA-------FEPRLK------LI-GKPQYA---SEAEVKAN-PRSRS----AVMRVAEK A0A0M8KG26/10-112_216-310 ---VLMTETIEALAI----K-----P-------DGIYIDGTFGRGGHSGEILARLGEQGRLQAIDQDPSAIAAAQ----RF-ADDP--------R----FNIAHSRFSRLDEVA-EA-----Q----GLIGK--VDGILLDIGVSSPQLDDELEEIQTALQAALKVLKPGGRLVVISFHSLEDRIVKQFIK-------------KQSKGEA----MPRG----L---PL----TDEQ--LK---QQLTLK------AV-GKAIKP---SEEEIARN-SRARS----SVLRVAER A0A171KP78/25-117_221-313 -------------------Q-----P---RR--SGVFVDGTFGRGGHSRELLSRLDGDARLVVFDKDPQAIAVAR----ELAAADP--------R----VTVVHDGFATMPDAL-AG-----L----GIAQ---VDGVMLDLGVSSPQIDDELEELAHTLQAVVGLLATGGRLAVISFHSLEDRMVKQSIA-------------AAGQLDP----ALAR----L---PL----RESE--L----PRPVMR------AI-GR-IKP---DDTEVAGN-ARARS----AVLRVAER A0A0F5F144/15-116_226-320 ---VLLTEAVDGLAL----K-----E-------KGIYIDGTFGRGGHSRLILSRLAQDGRLIAIDRDPRAIAAAQ----QI--QDP--------R----FHIEHNSFSAIPEIC-EK-----L----GLVGK--IDGILLDLGVSSPQLDEELDELERVLEGALQVLAPQGRLSIISFHSLEDRMVKHFMR-------------KQSKGES----LPKG----L---PL----REDQ--IQ---RSQTLK------TI-GKAIMP---TEQEIAQN-ARSRS----AVLRVAEK A0A1E2ZGI3/8-111_215-307 ---VLLQPSIEALKI----D-----P-------AGIYIDGTFGRGGHSRQILHALGERGRLLAIDRDPDAVAFGR----KRFGQDA--------R----FRIVQESFAMLAEVS-EQ-----A----GLMGK--VNGILLDLGVSSPQLDQELDALQRALQSVIDVLAIGGRLAVISFHSLEDRIVKRFMR-------------DQAKGDR----YPPG----V---PV----TRDS-------MQPRLR------LV-GKAVRP---GDDETAAN-PRARS----AVLRVAER M5DPZ1/11-113_217-309 ---VLLHETVDGCVV----D-----P-------DGIYVDGTFGRGGHSRLLLSKLSPKGRLIGFDKDPLAIASGK----ELAAEDS--------R----FHIVQASFADMTTEL-------------LVLGYPQVNGILLDLGVSSPQLDDELGDLEDVLARSVDLLKPGGRLSVISFHSLEDRMVKRFIR-------------AQEKGNE----PPPG----V---PL----TDDQ-------LGRTMK------RI-GKAFMP---GREEVERN-PRARS----AVLRVAER E8YFZ1/10-110_218-310 ---VLLEEAVEALVT----R-----A-------DGVYVDGTFGRGGHSRLVLEKLSEAGRLIAFDKDPLAIATAQ----QI--ADP--------R----FGIVHESFASLRTAI-AA-----R----GIER---VSGVLLDLGVSSPQVDDELAELQVVLEAALALLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLK------II-GR-VFA---SDAEVAAN-PRARS----AVMRVAER A0A0Y5PPD6/12-114_218-311 ---VLLNEAVDALAV----R-----E-------DGVYVDGTFGRGGHSRLILSRLGDAGRLIVFDKDPQAIAVAE----ELARSDK--------R----VGVVHGGFASFQTAL-DG-----L----GIGK---VDGALFDLGISSPQIDDELEEVGAVLPQVMCRLKEGGRLAVIAFHSLEDRIVKQFVK-------------KYSQHAP----LPRW----A---AV----READ--L----PEPPLK------IV-GRALKP---GEAEIAAN-PRARS----AVLRVAER U3HE96/12-115_219-313 ---VLLDEAVESLAV----R-----A-------DGCYLDGTFGRGGHSRLILQHLGEEGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAEMAGEL-AE-----R----SLSGK--VDGVLLDLGVSSPQLDDELGDLERGLEAALENLAIGGRLVVISFHSLEDRIVKLFMR-------------KHAKGEAD--KLPRN----L---PI----RPPA-------FDPRLK------LL-GKPQFA---SDAELKAN-PRSRS----AVMRVAEK A0A1F4LJ11/11-111_216-305 ---VLLNEAVDALLA----GAGD-AP-------SGTWIDGTFGRGGHARRILSRLSPQGRLLAFDKDPEAIQEAA----RI--QDA--------R----FSIRHEGFRHLADLP-PG-----S-----------AAGVLMDLGVSSPQIDTELEELQQALEASLSVLQPGGRLVVISFHSLEDRIVKQFIA-------------QHSK-EV----YDRR----A---P-----------FAVP-QPMRLK------AL-DR-IKP---GAAEVAAN-PRARS----AVMRVAER A0A089YM16/12-115_219-313 ---VLLDEAVEALAV----R-----D-------DGCYLDGTFGRGGHSRLILRHLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGAEV-RE-----R----GMHGK--VSGILLDLGVSSPQLDDELADLEAGLEAALDALEIGGRLVVISFHSLEDRIVKLFMR-------------KLTKGEAD--NLPRN----L---PV----RFEA-------FVPKAK------LH-GKAQFA---SEAELKAN-PRSRS----AVMRVAEK A0A1G0JAT8/10-113_217-309 ---VLLEPAVAALLT----D-----E-------AGFYVDGTFGRGGHSRLILKHLRQTGRLLAIDKDPEAIRAAR----TEFGADE--------R----FEIVQGSFSRLGEFV-AN-----L----RRTGK--VNGVLLDLGVSSPQLDEELDDLQSVLRQALDVLCVGGRLAVISFHSLEDRIVKQFIS-------------EQAKGDD----YPVG----V---PV----QYVD-------LNPRMK------KV-GKPVKA---DDAELAGN-PRARS----AIMRVAEK D0KMH2/10-111_215-311 ---VLLDEAVNGLNI----R-----S-------GGTYIDGTFGRGGHSRLILSQLGPEGRLLAIDRDPQAIEAAK----AI--DDP--------R----FSIIHGPFSAMADYV-AE-----R----GLTGQ--IDGVLLDLGVSSPQLDDELEEIERALEGALSVLAPQGRLSVISFHSLEDRIVKRFIR-------------HQSRGPQ----VPAG----L---PL----TEAQ--LRSQ-GGQTLK------PV-GKKLMP---SEEEVAEN-PRARS----SVLRFAER A0A0H3IAF0/10-111_215-311 ---VLLDEAVNGLNI----R-----S-------GGTYIDGTFGRGGHSRLILSQLGPEGRLLAIDRDPQAIEAAK----AI--DDP--------R----FSIIHGPFSAMADYV-AE-----R----GLTGQ--IDGVLLDLGVSSPQLDDELEEIERALEGALSVLAPQGRLSVISFHSLEDRIVKRFIR-------------HQSRGPQ----VPAG----L---PL----TEAQ--LRSQ-GGQTLK------PV-GKKLMP---SEEEVAEN-PRARS----SVLRFAER A0A1E9TQ32/11-113_217-310 ---VLLNEAVDALAV----R-----E-------DGIYVDGTFGRGGHSRLILSRLGSQGRLIVFDKDPQAIEAAQ----KLAEQDG--------R----VTVVHDGFSSFQTTL-DK-----L----GIEE---IDGALFDLGISSPQIDDELEEVEAVLPQVMGRLKQGGRLAVIAFHSLEDRIVKQFVK-------------KYSQHPP----LPRW----A---AV----KEAD--L----PLPPLK------AV-GKAIKP---GIEETASN-PRARS----AVLRVAER A0A0G3BEZ0/13-113_218-307 ---VLLHEAVDALVH----S-----P-------QGTYLDGTFGRGGHSSLLLTRLAPEGRLLAFDKDPEAIAAST----RV--QDP--------R----FSIEHDSFARMGEAC-AA-----R----GITE---VAGVLLDLGVSSPQIDNELEELEQGLNAALELLAPGGRLVVISFHSLEDRIVKQFIV-------------RHSR-HE----VDRR----A---P-----------FAPV-PESKLK------AL-AR-IKP---GDAEVAAN-PRARS----AVLRVAER Q9F1N8/10-112_216-310 ---VLLTETVAGLNI----K-----P-------DGIYIDGTFGRGGHSREVLKHLGDNGRLIAIDRDPQAIIAAE----QF-ADDA--------R----FSIVHGGFGQLADYV-ED-----L----GLKGK--VDGVLLDFGVSSPQLDDELEQIDQALEGALKVLAPQGRLSVISFHSLEDRIVKRFIR-------------RHSQGMS----VPHG----L---PI----TEAE--IN---KTRLLK------AV-GKATKP---STEEVEMN-KRSRS----SVLRVAER A0A0R3N4H5/8-112_215-306 HISVLGREAVEMLNP----R-----D-------GGVYVDATFGAGGYSRAVLAVAGTQ--VIGIDRDRSAITGGF----DLV-EESEG------R----LTLVEDRFSNLAEVC-AG-----Q----GAAA---VDGVVMDVGVSSMQLDQELDELHLALSAAERVLKPGGRLVVVSFHSLEDRIVKDFFN-------------ARGKTGG----GSRH----L---PE----VAQA--------APSFQ------ILTKRPVTP---TDAEVAAN-PRARS----AKLRAAE- A0A101LLQ8/10-113_217-311 ---VLLDEAVQALAI----Q-----P-------AGRYLDGTFGRGGHSRAVLRLLGGEGRLLGFDKDPQAIAAGQ----ALAVEDS--------R----FEIVQRSFAELGDEL-VA-----R----GWSGQ--VDGVLLDLGVSSPQLDDELSDLEQGLQAAYEQLAVGGRLVVISFHSLEDRIVKQFMR-------------RLAKGEAD--QLPRD----L---PI----RASV-------FEPSLR------LL-GKPVYA---SEGELAAN-PRARS----AVMRVAEK A0A0X3UB67/9-110_214-306 ---VLLREAVDALVT----D-----P-------GGLYIDGTFGRGGHSAAILERLNENGRVLAIDKDPDAVTYAK----ERFAGDP--------R----LSIWHGSFADMDRAA-AT-----E------VGR--VTGVLLDLGVSSPQLDQELEDLRQALEKSIELLAPNGRLVVISFHSLEDRMVKRFIR-------------DKERGPT----LPRG----L---PV----MDSQ-------IVKTLR------AV-GKAVKA---EAEELGEN-LRSRS----AVMRVAEK A0A107E9Q0/10-110_218-310 ---VLLDEAVDALVT----R-----P-------DGIYVDGTFGRGGHSRAVLARLGAAGRLIAFDKDPRAIETAQ----GI--EDA--------R----FSIVHDSFASMQGAL-AA-----R----GIEK---VSGVLLDLGVSSPQVDDELADLQVVLDAALSLLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLK------II-GR-KFP---SDAEVAAN-PRARS----AVMRIAER A0A060NXJ7/10-109_214-303 ---VLLNEAVQALHV----Q-----A-------DGRYIDATFGRGGHARAILARLSAAGRLAVYDKDPQAIAAAQ----QLAASDA--------R---LHAVHHQGFAALAEQP-EA-----S-----------ADGILMDLGVSSPQLDDELEELQHALKAALRVLKPGGWLVVISFHSLEDRLVKQFMA-------------QHAK-DA----YDRR----Q---P-----------LAAP-KALALA------QV-QR-VLP---SAAEVAAN-PRARS----AVLRLAQR A0A066ZX42/14-115_219-311 ---VMLKESVEGLAI----K-----S-------DGIYIDCTFGRGGHSREILGHLS-SGNLMAIDQDPEAIEFAK----QHFAESN-------------FEIQYGSFEQLKEYC-DS-----R----GWTGK--VDGVLIDLGVSSPQLDDELDVLKNVLEAAVQVLGSGGRLSIISFHSLEDRIVKQFIR-------------DQSQMKD----LFPD----S---PI----QLEV-------VEPVLK------KV-GKPIFP---SDEECREN-PRSRS----AVLRIAQK G0AF46/14-117_221-313 ---VLLDEAVSALAITG-AR-----A-------DGIYVDGTFGRGGHSRKILQSLGPRGRLIAFDKDPQAIATAA----EI--ADP--------R----FEIVHDSFATMAQAL-QE-----R----GIQQ---VDGVLLDLGISSPQVDDELEELEIVLDQAFRQMAQQGRLVVISFHSLEDRIVKQFMA-------------SKARLPQ----PDRR----L---PI----RAVD------LPQPELK------LV-AR-VKP---SDTEVADN-PRARS----AIMRVGER A0A1A9RMW1/11-113_217-310 ---VLLHEAVDALEV----K-----P-------GGVYVDGTFGRGGHSRLILSKLGANGRLVVFDKDPQAIAVAR----RLAEADK--------R----VQVVHGGFAGFQVAL-KE-----L----GIEA---VDGALFDLGVSSPQIDDELEEISAVLPQAAGYLKTGGRLAVIAFHSLEDRIVKQFIR-------------RHSRPVP----LPKW----V---MV----RESE--R----PEPPLR------EI-GKAQRA---SAAETAAN-PRARS----AVLRVAER Q133W3/8-112_215-305 HIPVLGVEAVGLLAP----R-----D-------GGVYVDGTFGAGGYTRLILEAADTR--VIAIDRDRNAIADGF----DLV-QSTSG------R----LTLVEDRFSNLADVC-EA-----Q----GAES---VDGVVMDIGVSSMQVDQELDELYQALSAAERVLKPGGRLAVVSFHSLEDRIVKTFLG-------------DRSRTGG----GSRH----L---PE----LTQA--------APSFT------VLTKRPIVA---GDAEVAAN-PRARS----AKLRGA-- S2EM87/2-74_178-272 --------------------------------------------------ILSRLGPDGRLLGFDKDPQAIATGQ----TLAAEDG--------R----FVVVQRSFAELGAEV-AA-----R----GMNGK--VSGVLLDLGVSSPQLDDELGDLEAGLEAALESLEVGGRLVVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----RHVA-------FEPKIK------IH-GKAQTA---SDAELKAN-PRSRS----AVMRVAEK A0A1D9IJJ1/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILQKLGPQGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAEMGAEV-AE-----R----GLAGK--VSGVLLDLGVSSPQLDDELGDLEAGLEAALESLEIGGRLVVISFHSLEDRIVKQFMR-------------KLVKGESD--NLPRD----L---PI----QHVA-------FIPKIK------IH-GKALTA---SDAELKAN-PRSRS----AVMRVAEK G2DJT2/9-111_215-308 ---VLLHETVDSLAV----K-----N-------DGIYVDGTFGRGGHSRLLLSKLGKNGRLVVFDKDPQAIAVAE----SLAAEDE--------R----VSVVHDGFVNFQTAL-GE-----L----GIDK---IDGAMFDLGISSPQIDDELEEVEGVLPQVVGRLKSGGRLAVIAFHSLEDRIVKQFMK-------------KHSQHEA----LPKW----V---AV----KEED--L----PVPPLM------LI-GKAIKA---GEDEVRAN-PRSRS----AILRVAER A5EPL2/8-112_215-305 HVPVLGPEAVAMLAP----R-----E-------GGTYIDATFGAGGYTRLILQSPGTR--VIGIDRDSTAIAGGA----ALV-AEAGA------R----LTLVENRFSAIADIC-AS-----L----GLSQ---VDGIVMDVGVSSMQLDSELDELEQALSAAEQVLAPGGRLAVVSFHSLEDRIVKTFLA-------------ERSKTGG----GSRH----L---PE----IAQE--------TPTFQ------LLNRKPVVA---DQSEIEAN-PRARS----AKLRGA-- A0A084Y6D5/10-113_217-310 ---VLLREAVEALEI----K-----P-------AGTYVDGTFGRGGHTRAILERLGPNGRLLALDRDPQAVELAR----AI--QDR--------R----LLVMHRRFADLVDAL-RQ-----A----GVAVEKGVDGVLLDIGVSSPQLDEELQQLALVLPETMTVLKQGGRLVVISFHSLEDRIVKRFMR-------------DQAAPDC----LPRK----L---PL----RANE--L----PQPGLR------LI-GKPRRA---SAAEVTAN-PRARS----AVMRVAEK A0A1H2IN12/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSQLGPDGRVLGFDKDPQAIATGQ----TLAAEDG--------R----FVVVQRSFAELGSEV-AE-----R----GLHGK--VSGVLLDLGVSSPQLDDELGDLEAGLEAALDCLEIGGRLVVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----RHVA-------FEPIIK------IH-GKAQSA---SEAELKAN-PRSRS----AVMRVAEK A0A024EG99/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSQLGPDGRVLGFDKDPQAIATGQ----TLAAEDG--------R----FVVVQRSFAELGSEV-AE-----R----GLHGK--VSGVLLDLGVSSPQLDDELGDLEAGLEAALDCLEIGGRLVVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----RHVA-------FEPIIK------IH-GKAQSA---SEAELKAN-PRSRS----AVMRVAEK A0A1J5K9U6/15-116_226-320 ---VLLNEAVAGLAL----K-----E-------KGIYIDGTFGRGGHSRLILSRLADNGRLIAIDRDPRAIAEAK----TI--QDP--------R----FHIEHRSFSDIPRIC-ER-----L----NLVGK--VDGILLDLGVSSPQLDEELDELESVLKSAVQVLASQGRLAIISFHSLEDRMVKHFMR-------------KQSKGED----IPKG----L---PL----RDDQ--IQ---RTQTLK------VI-GKAIMP---TEQEQQQN-PRSRS----AVLRVAEK A0A140D7J7/15-116_226-320 ---VLLNEAVAGLAL----K-----E-------KGIYIDGTFGRGGHSRLILSRLADNGRLIAIDRDPRAIAEAK----TI--QDP--------R----FHIEHRSFSDIPRIC-ER-----L----NLVGK--VDGILLDLGVSSPQLDEELDELESVLKSAVQVLASQGRLAIISFHSLEDRMVKHFMR-------------KQSKGED----IPKG----L---PL----RDDQ--IQ---RTQTLK------VI-GKAIMP---TEQEQQQN-PRSRS----AVLRVAEK A0A1C7PM24/10-111_215-308 ---VLLHEAVEGLAI----K-----P-------DGIYVDGTFGRGGHSRLILQHLGPNGRLIAIDRDPQAIAEAA----KI--QDP--------R----FEIVHGPFSGITTYL-AE-----R----GLLGK--VDGFLLDLGVSSPQLDDELDEIETALDGALQALAPEGRLSVISFHSLEDRLVKHFIR-------------KHEKGPE----VPRG----I---PL----TEAQ--LA---GGRKLK------SV-GKALKP---SEHEVTEN-SRSRS----SVLRVA-L A0A154LBZ4/15-119_222-264_285-314 HKPVLLREVLDALSP----G-----A-------GEIMVDGTFGAGGYSRAILDHADCE--LYAIDRDPTAVATGK----AME-ADYAN------R----FHMVEGCFGDMGSLL-PA-----A----GVDQ---VDGIVLDIGVSSMQLDQELGELERAMQAAENLLKPGGRLVVVTFHSLEDRSVKTFMK-------------ERS-----------------------------------------FT------TITRKAVTA---QKDELRAN-PRARS----AKLRAV-- A0A081NE94/13-112_216-308 ---VLLNEAVEALVT----D-----P-------DGIYVDGTFGRGGHSRAILEKLSDKGRLVGIDKDPRAIAVAD----QLAEADS--------R----FSIYHGSFAELEEAL-QG-----Q--------K--VEGVLLDLGVSSPQLDNELDDLVDCLDIALEVLKPGGRLVVISFHSLEDRIAKRFIR-------------KQAKGDE----LPRW----M---PV----TEDQ-------LNKRLR------PI-GKAIKP---GEQEVKAN-PRARS----AVMRIAEK A0A037UNE7/31-135_239-281_302-331 HIPVLLREVLGALHP----G-----V-------GERFIDGTFGAGGYARAILEAVHCD--VLGLDRDPTAIAAGR----TLE-TAFAG------R----LKLAETPFSEMEDAA-LS-----I----GWDA---LDGVVLDLGVSSMQLDEELGELTRALAAAERLLKPGGRLVVVSFHSLEDRIVKRFLA-------------ERS-----------------------------------------FE------LRDRHGVEP---GEDEVAAN-PRARS----ARLRWA-- A0A1C3RJH4/4-104_207-249_271-299 HIPVLLKEIVEAVAP----Q-----D-------DDIIIDGTFGGGGYTKAILDGARCR--VFGIDRDPDAIERGK----ALS-KTLDN------R----LEMFEGCYGDMAALV-NQ-------------K---VNAVVLDIGVSSFQIDEELGELMRGLAAAEELLLPGGRLVVVTFHSLEDRIVKKFFK-------------ERS-----------------------------------------FK------IINRKPVAP---SEEECREN-PRARS----SKLRA--- A0A101VMK7/12-117_218-306 HIPVLLDEVIAALDP----Q-----P-------GDVIVDATFGAGGYTRALLDRG-AT--VHAFDRDPDAIAQGR-----GW-AEARITP---PR----LVLHPRRFSEMAVAL-AE-----A----GIAQ---VDGVAMDIGVSSMQLDQELGELREGLHAAECILRAGGRLAVVSFHSLEDRIVKHFLR-------------DAAGRRG---G-SRY----L---PE----ANAE--------PAIFT------HI-SKAIRP---SDAEIARN-PRARS----STLRH--- A0A0B4EHL9/12-110_214-304 HIPVLLRPLLAAVAP----V-----S-------G-RWLDGTFGAGGYTRGLLEAGAEQ--VIGVDRDPLAFELAK----PWA-GEYGD------R----LILQPGVFSRMDEYA---------------QD---LDGVVLDLGVSSMQLDLEYDELFEGLLAAERALKPGGLLAVVTFHSVEDRMVKRFFQ-------------HRAGKTG---RANRY----A---PE----QAET--------PSQFE------LVTRKAVGP---DDQELAEN-PRSRS----ARLRV--- A0A0B2D4I6/10-113_217-311 ---VLLEEAVDALGV----R-----P-------DGCYLDGTFGRGGHSRRILEQLNERGHLLGFDKDPLAIATGQ----ALMAEDP--------R----FTIVQRSFAELGQAV-TE-----Q----GLQGR--IAGVLLDLGVSSPQLDDELGDLEQGLEAALDVLEVGGRLVVISFHSLEDRIVKQFMR-------------RQAKGEAD--TLPRD----L---PI----IPKA-------FEPRLK------LL-GKPQYA---SEAEVRAN-PRSRS----AVMRVAEK A0A0W0TH90/7-110_214-306 ---VLLRETIEGLAI----K-----A-------DGIYIDGTFGRGGHSRAILQQLSAAGRLIAIDKDPEAIEYAK----QHFANDN--------R----FHIYQGSFAKLASFA-KQ-----A----NVYGQ--VNGILLDLGVSSPQLDNELTDLTACLDEALNVLAVGGRLVVISFHSLEDRIVKQFMR-------------TKEQGLR----LPPE----V---PV----RNVE-------IQTCFK------RV-GKAVKA---SDEEVKEN-IRARS----AVLRIGEK A0A0P9S810/10-113_217-311 ---VLLEEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSEA-QE-----R----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QFKP-------FEPKIK------IH-GKAQFA---SDTETKAN-PRSRS----AVMRVAEK F3K385/10-113_217-311 ---VLLEEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSEA-QE-----R----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QFKP-------FEPKIK------IH-GKAQFA---SDTETKAN-PRSRS----AVMRVAEK A0A0N8SIU6/10-113_217-311 ---VLLEEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSEA-QE-----R----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QFKP-------FEPKIK------IH-GKAQFA---SDTETKAN-PRSRS----AVMRVAEK A0A0Q0CWL3/10-113_217-311 ---VLLEEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSEA-QE-----R----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QFKP-------FEPKIK------IH-GKAQFA---SDTETKAN-PRSRS----AVMRVAEK A0A0W8HJV4/10-113_217-311 ---VLLEEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSEA-QE-----R----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QFKP-------FEPKIK------IH-GKAQFA---SDTETKAN-PRSRS----AVMRVAEK A0A0P9UK30/10-113_217-311 ---VLLEEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSEA-QE-----R----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QFKP-------FEPKIK------IH-GKAQFA---SDTETKAN-PRSRS----AVMRVAEK A0A0P9UGB0/10-113_217-311 ---VLLEEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSEA-QE-----R----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QFKP-------FEPKIK------IH-GKAQFA---SDTETKAN-PRSRS----AVMRVAEK A0A0N8QUG9/10-113_217-311 ---VLLEEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSEA-QE-----R----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QFKP-------FEPKIK------IH-GKAQFA---SDTETKAN-PRSRS----AVMRVAEK A0A0N0WYA0/10-113_217-311 ---VLLEEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSEA-QE-----R----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QFKP-------FEPKIK------IH-GKAQFA---SDTETKAN-PRSRS----AVMRVAEK A0A0P9I1Z0/10-113_217-311 ---VLLEEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSEA-QE-----R----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QFKP-------FEPKIK------IH-GKAQFA---SDTETKAN-PRSRS----AVMRVAEK A0A0P9Q9H4/10-113_217-311 ---VLLEEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSEA-QE-----R----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QFKP-------FEPKIK------IH-GKAQFA---SDTETKAN-PRSRS----AVMRVAEK A0A0Q0BK03/10-113_217-311 ---VLLEEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSEA-QE-----R----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QFKP-------FEPKIK------IH-GKAQFA---SDTETKAN-PRSRS----AVMRVAEK A0A0N1JQG3/10-113_217-311 ---VLLEEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSEA-QE-----R----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QFKP-------FEPKIK------IH-GKAQFA---SDTETKAN-PRSRS----AVMRVAEK A0A0P9K429/10-113_217-311 ---VLLEEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSEA-QE-----R----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QFKP-------FEPKIK------IH-GKAQFA---SDTETKAN-PRSRS----AVMRVAEK A0A0P9WAB6/10-113_217-311 ---VLLEEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSEA-QE-----R----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QFKP-------FEPKIK------IH-GKAQFA---SDTETKAN-PRSRS----AVMRVAEK F2L7H9/10-110_218-310 ---VLLDEAVDALVT----R-----P-------DGIYVDGTFGRGGHSRLVLDRLAEGGRLIAFDKDPLAIETAS----RV--GDT--------R----FSIVHDSFASLGGAL-AE-----R----GVGR---VTGVLLDLGVSSPQIDDELADLQVVLESALSSLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLK------LL-GR-KFP---GEAEVAAN-PRARS----AVMRIAER A0A080MA70/10-113_217-310 ---VLLREAVEALEI----K-----P-------AGTYVDGTFGGGGHTRAILEQLGPHGRLLALDRDPQAVALAH----AI--QDR--------R----LLVMHHCFADLVSAT-RK-----A----GVAAEEGIDGVLLDIGVSSPQLDEELQQLALVLPEAMTVLKQGGRLVVISFHSLEDRIVKHFMR-------------DQAAPDR----LPRK----L---PL----RAAE--L----PQPELR------LV-GKPRRA---SAAEVAAN-PRARS----AVMRVAEK A0A127HWP1/12-115_219-313 ---VLLDEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGSDGKLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGAEV-AE-----R----GMAGK--VAGVLLDLGVSSPQLDDELGDLEAGLEAALEALEVGGRLVVISFHSLEDRIVKLFMR-------------RLVKGESD--NLPRN----L---PV----RFEA-------FVPKIK------IH-GKAQFA---SEAELKAN-PRSRS----AVMRVAEK A0A0A1YWN7/12-115_219-313 ---VLLDEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGSDGKLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGAEV-AE-----R----GMAGK--VAGVLLDLGVSSPQLDDELGDLEAGLEAALEALEVGGRLVVISFHSLEDRIVKLFMR-------------RLVKGESD--NLPRN----L---PV----RFEA-------FVPKIK------IH-GKAQFA---SEAELKAN-PRSRS----AVMRVAEK W2DTE7/12-115_219-313 ---VLLDEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGSDGKLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGAEV-AE-----R----GMAGK--VAGVLLDLGVSSPQLDDELGDLEAGLEAALEALEVGGRLVVISFHSLEDRIVKLFMR-------------RLVKGESD--NLPRN----L---PV----RFEA-------FVPKIK------IH-GKAQFA---SEAELKAN-PRSRS----AVMRVAEK A0A1H1R7S3/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSKLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGSEV-AE-----R----GLDGK--VSGVLLDLGVSSPQLDDELGDLEAGLEAALESLEVGGRLVVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----RHVA-------FEPKIK------IH-GKAQTA---SDAELKAN-PRARS----AVMRVAEK A0A1E1G3N8/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSKLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGSEV-AE-----R----GLDGK--VSGVLLDLGVSSPQLDDELGDLEAGLEAALESLEVGGRLVVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----RHVA-------FEPKIK------IH-GKAQTA---SDAELKAN-PRARS----AVMRVAEK R5QTK4/8-108_211-301 HFPVMLSEVLEALAP----A-----D-------GKTYVDATFGNGGYSEAVLEKANCK--VIALDRDPTVSARAE----ELK-AKFGS------R----FDFRAGQFGDFAQLV-TE-------------D---IDGAVFDIGVSSMQLDEELGELEKGLAGATSRLKPGGRLVVVDFHSLEDRIVKNFFK-------------ENAGQSA---HVSRY----L---PE----VNST-------KGITFA----KC---SKAIAA---SQEEIAQN-ARSRS----AKLRY--- E7PK88/10-113_217-311 ---VLLEEAVEALEV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSEA-QE-----R----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QFKP-------FEPKIK------IH-GKAQFA---SDTETKAN-PRSRS----AVMRVAEK A0A0N1JEN8/10-113_217-311 ---VLLEEAVEALEV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSEA-QE-----R----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QFKP-------FEPKIK------IH-GKAQFA---SDTETKAN-PRSRS----AVMRVAEK A0A0N8RPS2/10-113_217-311 ---VLLEEAVEALEV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSEA-QE-----R----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QFKP-------FEPKIK------IH-GKAQFA---SDTETKAN-PRSRS----AVMRVAEK A0A0P9ZBE3/10-113_217-311 ---VLLEEAVEALEV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSEA-QE-----R----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QFKP-------FEPKIK------IH-GKAQFA---SDTETKAN-PRSRS----AVMRVAEK Q48EF0/10-113_217-311 ---VLLEEAVEALEV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSEA-QE-----R----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QFKP-------FEPKIK------IH-GKAQFA---SDTETKAN-PRSRS----AVMRVAEK A0A0M9HS98/10-113_217-311 ---VLLEEAVEALEV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSEA-QE-----R----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QFKP-------FEPKIK------IH-GKAQFA---SDTETKAN-PRSRS----AVMRVAEK H0SEV2/8-112_215-305 HIPVLGPEAVAMLAP----R-----D-------GGTYVDATFGAGGYTRLILATPGTR--VIAIDRDSTAISGGA----VLV-SEASG------R----LTLVENRFSALADIC-AA-----Q----GLAQ---VDGVVMDVGVSSMQLDSELDELEQALSAAERILAPGGRLAVVSFHSLEDRIVKTFLA-------------ERSKTGG----GSRH----L---PE----IAQE--------APSFQ------LLNRKPVVA---DEAETVAN-PRARS----AKLRGA-- A0A062UEM9/15-118_222-264_285-314 HRPVMLDEVLAWLGP----Q-----D-------GDRIVDGTFGGGGYTRAILLAAKCS--VLAIDRDLDAILRAE----KMA-TETP-------R----LTPLLGRFGEMDTLV-RN-----A----GFET---VDGVVLDIGVSSFQIDEELGELARALQAAERLLRPGGRLVIVAFHSLEDRMVKQWLR-------------DRG-----------------------------------------FE------LSVSKAIVP---SDKEVEGN-PRARS----AKLRAA-- A0A1H2NG40/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSQLGSEGKLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGAEV-AE-----R----GMAGK--VAGVLLDLGVSSPQLDDELGDLEAGLEAALESLEVGGRLVVISFHSLEDRIVKLFMR-------------RLVKGETD--NLPRN----L---PV----RFEA-------FVPKIK------IH-GKAQFA---SEAELKAN-PRSRS----AVMRVAEK A0A098SUM6/12-115_219-313 ---VLLEEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILQNLGTEGRLLGFDKDPQAIATGQ----TLAAEDG--------R----FVIVQRSFAELGAEA-QA-----R----GLAGN--VSGILLDLGVSSPQLDDELGDLEAGLEAALDVLEVGGRLVVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PI----RHQA-------FEPRIK------LI-GKAQFA---SEEETRGN-PRSRS----AVMRVAEK A0A172YW58/12-115_219-313 ---VLLDEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGPDGKLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGAEV-AE-----R----GMAGK--VAGVLLDLGVSSPQLDDELGDLEAGLEAALEALEVGGRLVVISFHSLEDRIVKLFMR-------------RLVKGESD--NLPRN----L---PV----RFEA-------FVPKIK------IH-GKAQFA---SEAELKAN-PRSRS----AVMRVAEK A0A0S2THT5/10-113_218-310 ---VLLEEALEALKL----K-----P-------AGVYVDATFGRGGHAQAILQRLGSAGRLLGLDKDPQAVASAQ----QRFGDDA--------R----FSIHHASFAELGGVV-SE-----A----GLMGR--VDGILMDLGVSSPQLDDELANLHSCLEQVVDVLDRGGRLAVISFHSLEDRIVKRFMR-------------DQARGDE----FPPD----L---PV----TVDQ-------LNPRLR------LV-GKAVHA---SAAELAHN-VRARS----AVLRVAEK A0A059KNR4/15-119_224-313 ---VLLHEAVDALLH----R-----P-------DGTYIDGTFGRGGHSRLILSRLAPGGRLMAIDRDPEAVAHAREGDTRI--DDA--------R----FSIDHTRFADYPEVM-AA-----H----GVAQ---VDGLLLDIGVSSPQIDDELDELEQALEASLAALAPGGRLAIISFHSLEDRIVKNFIQ-------------RHAR-EE----FDRR----A---P-----------FATP-KPALLE------EV-AR-IKP---SEAEIEAN-ARSRS----AILRVARR A0A1N7CAG5/15-119_224-313 ---VLLHEAVDALLH----R-----P-------DGTYIDGTFGRGGHSRLILSRLAPGGRLMAIDRDPEAVAHAREGDTRI--DDA--------R----FSIDHTRFADYPEVM-AA-----H----GVAQ---VDGLLLDIGVSSPQIDDELDELEQALEASLAALAPGGRLAIISFHSLEDRIVKNFIQ-------------RHAR-EE----FDRR----A---P-----------FATP-KPALLE------EV-AR-IKP---SEAEIEAN-ARSRS----AILRVARR A8H992/10-112_216-310 ---VLLAETVAGLNI----R-----P-------DGIYIDGTFGRGGHSRKVLEELGPNGRLIAIDRDPQAIAAAE----QF-KDDS--------R----FQIVHGGFGQLADYV-ED-----L----GLKGQ--IDGVLLDFGVSSPQLDDELEQIDQALEGALAVLAPEGRLSVISFHSLEDRMVKRFIR-------------RNSQGES----VPHG----L---PI----TEAE--IN---KSRKLK------AM-GKAIKP---SVEEVERN-ARARS----SVLRIAER A0A106BPG6/8-108_212-305 ---VLAQEAVAALEI----R-----P-------DGIYVDATFGRGGHSRLILAQLGPAGRLIALDRDPDAIRAGA----AL--QDA--------R----LTLVQSPFSRLAAVL-DQ-----L----GVTQ---VDGILLDIGVSSPQLDDELEELSAVLPQCVDKLKPGGRLAVISFHSLEDRIVKRFMR-------------EEALGEQ----APRR----L---PI----PAAL--L----KPGRLK------LV-GRAQRA---TGAEVAAN-PRARS----AVLRVTER Q7NPZ1/11-113_217-310 ---VLLTEAVDALAI----R-----P-------DGVYVDCTFGRGGHSRLILSKLGPSGRLIAFDKDPEAIAVAD----RLAAEDS--------R----FNIVHNGFETLSAEL-AR-----L----GVAG---VDGVLMDLGVSSPQIDDELDELKAVLPQAARLLNEGGRLAVISFHSLEDRIVKLYLR-------------DVSSEEK----LPAW----A---MV----RAAD--M----AQPPID------LV-GKAIRA---GDEEVREN-PRARS----AIMRVAQR F5ZBQ8/12-114_218-312 ---VLLDECIEALAI----K-----P-------NGIYIDATFGRGGHSAHILDALGSDGTLIAFDRDPQAIEAAK----RF-ADDS--------R----FRIIHSPFGDMAEEI-EA-----L----GLTGK--IDGVLMDLGVSSPQLDDELEQLRTGLKAATQVLAKEGRLAVISFHSLEDRLVKRFIK-------------DQSKGKS----VPHN----L---PI----TQAE--ID---ADKVLK------AL-SRAIKP---SELEIANN-VRSRS----SVLRVAEK A0A0T5Z9N2/10-113_217-309 ---VLLEEAVTALNI----T-----A-------EGIYIDGTFGRGGHSRRILKALGERGRLIGIDKDPQAIVHGR----EQLGGDA--------R----FTIVQQSFAMIAQVA-QH-----A----GVAGR--VDGVLLDLGVSSPQLDQELDDLQQFLGQVLEVLRPGGRLAVISFHSLEDRIVKRFMR-------------DQAKGDR----FPAG----V---PV----TQAQ-------LQPRLK------LL-GKAIRP---GADETESN-PRARS----AVLRVAER A8TR33/8-112_216-258_283-311 HIPVMLEPVVEALAP----R-----D-------GGRYVDGTFGVGGYTRALLTAANCT--VYAIDRDPEAIRRAG----ILA-QEFGG------R----LIAIEGRFGAMDQLV-AN-----A----GAAQ---VDGIALDLGVSSPQIDDELDELDHGLEAAERLLSPGGRLAVVSFHSLEDRRVKTFLR-------------RRS-----------------------------------------FE------VITGRPIAP---SDAEAARN-ARARS----ARLRI--- A0A0U1QEK2/42-132_236-328 -------------------A-----E-------RGVFVDGTFGRGGHSRELLGRLGKSARLVVFDKDPEAIAVAN----ALAAADP--------R----VTVIHGGFATMAEEL-QQ-----L----GIDK---VDGVMLDLGVSSPQIDDELEELARTLAAALDLLAPGGRLAVISFHSLEDRMVKQCIV-------------AAARPAA----AHAR----L---PL----RESE--M----PQPILR------SL-GR-VQA---EDDEVSGN-ARARS----AVLRVAER M9R979/10-106_210-301 HIPVLIGPLIAACSP----I-----S-------G-TWLDATFGAGGYTQRLLAAGADK--VIGVDRDPAVFKMAQ-----WA-ADNPA-----------ITLVEDTFSNLDTIA---------------SD---LDGIVLDLGVSSMQIDQEYGQLAEGLEAAERALKPGGYLAIVTFHSVEDRMVKRFLQ-------------QRGGGMG---NANRY----S---PV----LETE--------KPSFE------IITKKAKAA---DEDEVAQN-PRSRS----AKLRVA-- F4APD7/10-112_216-310 ---VLLQESLDGLSI----K-----P-------DGVYLDATFGRGGHSKQILTQLSDKGRLIALDRDPSAIKSAK----AL-ANDP--------R----FSIHHCNFSEMEDVL-TS-----L----ELHGK--VDGILMDLGVSSPQLDEELDEIRTGLKSALNSLNSGGRLSVISFHSLEDRLVKRFIR-------------EQSRGLQ----VPHG----L---PI----MQSE--ID---SHKALK------AI-GKAIKP---SSEELSRN-VRARS----SVLRVAEK A0A1I9YJR2/14-114_222-314 ---VLLNEAVDALVT----R-----A-------DGTYVDGTFGRGGHSRLVLERLGEAGRLIAFDKDPLAIATAQ----QI--ADP--------R----FAIVHESFASLRAAM-AE-----R----GVGR---VSGVLLDLGVSSPQVDDELAELQVVLEAALSLLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLK------II-GR-VFA---SDAEVAGN-PRARS----AVMRVAER A0A1M3P0X5/9-109_213-304 ---VMLDEAVEGLAV----Q-----A-------GGRYLDGTFGRGGHARAVLSRLDADGRLLLMDRDPVAVAAAK----EAFAAEP--------R----VVIRHANFASLAEWD-------------ETAAG--LDGVLLDLGVSSPQLDEELDAVRRGLDAALARLKPGGRLAVISFHSLEDRIVKQFIR-------------DHSGRVQ---GSRRG----P---PQ----AAAP---------AELA------AV-GKAQFP---SEAELAAN-PRARS----AVLRVAEK A0A1E4MNV9/9-109_213-304 ---VMLDEAVEGLAV----Q-----A-------GGRYLDGTFGRGGHARAVLSRLDADGRLLLMDRDPVAVAAAK----EAFAAEP--------R----VVIRHANFASLAEWD-------------ETAAG--LDGVLLDLGVSSPQLDEELDAVRRGLDAALARLKPGGRLAVISFHSLEDRIVKQFIR-------------DHSGRVQ---GSRRG----P---PQ----AAAP---------AELA------AV-GKAQFP---SEAELAAN-PRARS----AVLRVAEK A0A0W0W149/7-110_214-306 ---VLLQEAIDGLAI----K-----P-------EGVYIDGTFGRGGHSKVILQRLSASGRLLAIDKDPEAIAYAK----QHFADDP--------R----FQIIHGSFATLAELA-KA-----E----QIYGC--IDGVLLDLGVSSPQLDNELSDLVTCLNSAMDALAVGGRLVVISFHSLEDRIVKQFMR-------------DKEYGHR----PPPG----V---PL----RNVE-------MSTNFK------RV-GKAIKA---SDNEIRQN-VRARS----AVLRIGEK S5AFF9/12-114_218-312 ---VLLDECIEALAI----K-----P-------SGIYIDATFGRGGHSAHILDELGEKGRLIAFDRDPQAIKAAE----RF-ADDK--------R----FSIIHSPFGDMAEEI-EA-----L----GLTGK--IDGVLMDLGVSSPQLDDELEQLRVGLKAATQVLAKEGRLAVISFHSLEDRLVKRFIK-------------DQSKGKV----VPHN----L---PI----TQAE--ID---ADKVLK------AL-GKAIKP---SEQEIANN-VRSRS----SVLRVAEK G4E468/28-134_240-332 ---VLCNEVLSALLP----D----TP----PG-AGVYVDATFGRGGHSQALLARLPPDSRLLAIDQDPEAAKAAQ----SLCAQDP--------R----LQFVAGSFRDLHSIC-AD-----L----GLLGQ--VRGLLLDLGVSSPQLDDELGALAQCLAGVPALLAPGGRLAVISFHSLEDRLVKRFIR-------------QQEHGQP----IPRH----L---PI----TGTP-------NAPILR------HL-GKAIFP---SEAEVSTN-PRARS----AVLRIAER F0E7B0/12-115_219-313 ---VLLDEAVEALAL----R-----A-------DGCYLDGTFGRGGHSRLILSKLGPQGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGAEV-AE-----R----GLHGK--VSGVLLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLAVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----QHKV-------FEPKVK------LI-GKAQFA---SEAELKAN-PRSRS----AVMRVAEK T0J539/13-122_228-319 HVPVLLEEVVAALNP----Q-----G-------GDVIVDGTLGAGGYTRRLLDAG-AT--VHAFDRDPDAIAAIVDN-RAKW-PELDANP---PR----LVLHARRFSEMVASL-EE-----A----GVTG---VDGVVMDIGVSSMQLDQELDELDAGMEGAETVLRAGGRLAVVTFHSLEDRKVKRFLR-------------DAAGQAQ---STSRH----L---PQ---LGSGP--------QATFE------RV-AKAVRP---GEAELAAN-PRSRS----ATLRAA-- Q1MYB2/7-110_214-306 ---VLLHEAVEALNQ----D-----P-------DGLYVDCTFGRGGHTKLLLDQLSEQGRVIGIDKDPRAIATGQ----ELMAQDQ--------R----FQICHGSFAQLREFV-EA-----H----GQGKE--LSGVLMDLGVSSPQLDEELGDLESVLDETVEMLAKGGRLVVISFHSLEDRIVKRFIR-------------DKEKGPQ----LPPD----L---PI----MEQD-------APRPLK------HI-GKAIKA---SKEEVEQN-VRSRS----AIMRVAEK A0A139CCH4/17-118_222-315 ---VLLDGAIDTLLN----D-----P-------AGIYLDGTFGRGGHSRALLERLSPEGRLLAIDRDPEALAEAR----RI--EDP--------R----FSIHASPFSRLDAIA-RE-----Q----GVQGR--LSGILLDIGVSSPQLDDELEELEAALEAALEALAPGGHLVIISFHSLEDRRVKRFIR-------------DQVRGDT---HLPRG----M---PI----RDDQ-------LARRLE------TL-GKAQRP---GEAEVAEN-PRARS----AVMRAARK A0A1G0GBV8/11-113_219-311 ---VLLMEAVEGLVI----S-----P-------DGIYIDATFGRGSHSQAILNKLSEKGRLIAFDKDPDAVDYAQ---HHI--ADK--------R----FTILHRSFSQLKNSL-CE-----I----QISDN--IHGILFDLGVSSPQLDTELVELRDALMQAQEVLKIGGRLSVISFHSLEDRIVKQFIK-------------QHEKKQD----LPRG----L---PI----KNHI-------FNPKLR------TI-GKPIKP---SLAEITSN-PRARS----AILRIAEK A0A0A6D478/10-112_213-304 HIPVLLDEVIAALAP----A-----P-------GETIVDGTFGAGGYTRALLSRG-AC--VIAFDRDPDAIAAGQ----D-W-ADGEE------R----LTLVAADFSAMVAEL-EA-----R----DALP---VDGITLDIGVSSMQLDQELGELADGLLAAERALKPGGRLAIVTFHSLEDRMVKRFLR-------------TRSGSAP---SGSRH----L---PQ---AKTVV--------EPSFT------DV-GRPVRA---GEDELARN-PRARS----ATLRTA-- A0A0Q4JWH7/10-112_213-304 HIPVLLDEVIAALAP----A-----P-------GETIVDGTFGAGGYTRALLSRG-AC--VIAFDRDPDAIAAGQ----D-W-ADGEE------R----LTLVAADFSAMVAEL-EA-----R----DALP---VDGITLDIGVSSMQLDQELGELADGLLAAERALKPGGRLAIVTFHSLEDRMVKRFLR-------------TRSGSAP---SGSRH----L---PQ---AKTVV--------EPSFT------DV-GRPVRA---GEDELARN-PRARS----ATLRTA-- R5QLD7/7-111_215-307 HIPVLLNEVISGISP----K-----D-------GGIYVDGTFGAGGYTRAVLTAANCK--VIAIDRDPDAVRNGQ----KLC-REFEG------R----LTLLHGEFGDMVDLV-RQ-----T----GTDA---VDGVMLDIGVSSMQVDQELEQLRSGLNGAEELLKTGGRMAVVSFHSLEDRIVKAFIQ-------------EKSGKSA---RPSKY----L---PD----AVQT--------EAVLK------PVTKKPILP---SEEEINRN-IRSRS----ARLRIAE- A0A1E4Z1S0/10-110_218-310 ---VLLDEAVESLVT----R-----P-------DGVYVDGTFGRGGHSRAVLARLASAGRLIAFDKDPRAIETAQ----GI--EDA--------R----FSIVHDSFASMRDAL-AA-----R----GVEK---VSGVLLDLGVSSPQVDDELADLQVVLDAALSLLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLK------II-SR-QFP---SEAEVAAN-PRARS----AVMRIAER B1JUW4/10-110_218-310 ---VLLDEAVESLVT----R-----P-------DGVYVDGTFGRGGHSRAVLARLASAGRLIAFDKDPRAIETAQ----GI--EDA--------R----FSIVHDSFASMRDAL-AA-----R----GVEK---VSGVLLDLGVSSPQVDDELADLQVVLDAALSLLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLK------II-SR-QFP---SEAEVAAN-PRARS----AVMRIAER V4ZWK2/10-110_218-310 ---VLLDEAVESLVT----R-----P-------DGVYVDGTFGRGGHSRAVLARLASAGRLIAFDKDPRAIETAQ----GI--EDA--------R----FSIVHDSFASMRDAL-AA-----R----GVEK---VSGVLLDLGVSSPQVDDELADLQVVLDAALSLLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLK------II-SR-QFP---SEAEVAAN-PRARS----AVMRIAER A0A1H1C6A7/10-110_218-310 ---VLLDEAVESLVT----R-----P-------DGVYVDGTFGRGGHSRAVLARLASAGRLIAFDKDPRAIETAQ----GI--EDA--------R----FSIVHDSFASMRDAL-AA-----R----GVEK---VSGVLLDLGVSSPQVDDELADLQVVLDAALSLLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLK------II-SR-QFP---SEAEVAAN-PRARS----AVMRIAER A0K478/10-110_218-310 ---VLLDEAVESLVT----R-----P-------DGVYVDGTFGRGGHSRAVLARLASAGRLIAFDKDPRAIETAQ----GI--EDA--------R----FSIVHDSFASMRDAL-AA-----R----GVEK---VSGVLLDLGVSSPQVDDELADLQVVLDAALSLLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLK------II-SR-QFP---SEAEVAAN-PRARS----AVMRIAER A0A0T5P0J2/10-105_209-300 HVPVLIEPILRAVAP----V-----Q-------G-VWLDGTLGAGGYTRRLLEAGADK--VIGVDRDPLAIDMAQ----GWA-DE---------R----VQLVQGTFSRLDEYG---------------QD---LDGVVLDLGVSSMQLDREYGELVEGLEAAERALKPGGHLAVVTFHSIEDRMVKRFLA-------------EKTGNTG---GGSRH----A---PV----VEQD--------PPTFR------QDTRKAIGP---DDAELAEN-PRARS----AKLRVA-- A0A074J8D2/15-119_222-264_285-314 HKPVLLREVLDALAP----R-----A-------GEIMVDGTFGAGGYSRAILDHADCE--LYAIDRDPTAVATGR----AME-ADYAN------R----FHMLEGCFGDMGTLL-PA-----A----GVDQ---VDGIVLDIGVSSMQLDQELGELERAMQAAENLLKPGGRLVVVTFHSLEDRSVKTFMK-------------ERS-----------------------------------------FT------TLTRKAVTA---QKDELRAN-PRARS----AKLRAV-- A0A197BTZ2/14-115_216-306 HIPVLIDEVLDALAI----N-----P-------GEVHVDGTFGAGGYSGAMADKG-AR--VFAFDRDPDAIREGQ----AL--ADAKG-----------ITLIAGEFSRMEQLL-AD-----R----GVTS---VSGVTLDIGVSSMQLDRELEELERGLEAAEAMLEEGGRLAVVTFHSLEDRIVKQFLR-------------NRSGSEA---SGSRH----L---PQ---LQSGP--------APTFE------RP-AKAVRP---GMAELARN-PRSRS----ATLRS--- A0A096YKQ7/10-110_218-310 ---VLLDEAVDALVT----R-----P-------DGVYVDGTFGRGGHSRAVLARLSDAGRLIAFDKDPRAIETAS----GI--EDA--------R----FEIVHDSFAAMKGAL-DA-----R----GVGR---VSGVLLDLGVSSPQVDDELADLQVVLEAALSLLEQGGRLVVISFHSLEDRIVKRFLQ-------------THASAPA----VDRR----L---PI----RAVD------LPSPPLK------LL-GR-MFP---SDAEVAAN-PRARS----AVMRIAER Q2SZJ1/10-110_218-310 ---VLLDEAVDALVT----R-----P-------DGVYVDGTFGRGGHSRAVLARLSDAGRLIAFDKDPRAIETAS----GI--EDA--------R----FEIVHDSFAAMKGAL-DA-----R----GVGR---VSGVLLDLGVSSPQVDDELADLQVVLEAALSLLEQGGRLVVISFHSLEDRIVKRFLQ-------------THASAPA----VDRR----L---PI----RAVD------LPSPPLK------LL-GR-MFP---SDAEVAAN-PRARS----AVMRIAER A0A1B4JZ29/10-110_218-310 ---VLLDEAVDALVT----R-----P-------DGVYVDGTFGRGGHSRAVLARLSDAGRLIAFDKDPRAIETAS----GI--EDA--------R----FEIVHDSFAAMKGAL-DA-----R----GVGR---VSGVLLDLGVSSPQVDDELADLQVVLEAALSLLEQGGRLVVISFHSLEDRIVKRFLQ-------------THASAPA----VDRR----L---PI----RAVD------LPSPPLK------LL-GR-MFP---SDAEVAAN-PRARS----AVMRIAER A3WVF5/95-199_302-393 HVPVLGGEAVAMLAL----R-----A-------GGVYVDATFGAGGYSRAILATADTR--VIGIDRDPAAIAGGS----ALV-EESGG------R----LTLVEDRFSNLASVC-AA-----Q----DVAV---VDGVVMDVGVSSMQLDEELDELVAALAAAERVLKPGGRLAVVSFHSLEDRIVKNFLA-------------RRGKRGG----GSRH----R---PE----IEQG--------SPSFA------ILTKRPLTP---GEEEMHAN-PRARS----ARLRAAE- G7F3C8/1-85_189-283 -------------------------------------MDGTFGRGGHSGQILARLGDEGRLQAIDQDPQAIQSAE----KF-ADDP--------R----FAIAHTRFSNLYEVA-EQ-----N----DLIGK--VDGILLDIGVSSPQLDDELEEIQTALQSAVKVLKPGGRLVVISFHSLEDRIVKQFIR-------------KQSRGEV----LPRG----L---PL----TDAQ--IN---KNLTLK------AV-GKAIKP---STVEVERN-PRSRS----SVLRIAQR A0A0Q4KN42/6-109_210-301 HIPVLMTEAIAALGI----Q-----P-------GETHVDATFGAGGYTRAMLAAG-AR--VIAFDRDPTAHDAAA----PLL-EEAGE------R----LMLIRAPFSAMASEL-AA-----R----DINE---VDGVVMDIGVSSMQLDQELGELTAGLDAAERVLRAGGRLSVVSFHSLEDRIVKRFLR-------------ERGGAMP---AGSRH----R---PV---VVQGP--------APSFA------GI-AKAVRP---GDEEISMN-PRARS----ATLRAA-- A0A0Q4FYY6/6-109_210-301 HIPVLMTEAIAALGI----Q-----P-------GETHVDATFGAGGYTRAMLAAG-AR--VIAFDRDPTAHDAAA----PLL-EEAGE------R----LMLIRAPFSAMASEL-AA-----R----DINE---VDGVVMDIGVSSMQLDQELGELTAGLDAAERVLRAGGRLSVVSFHSLEDRIVKRFLR-------------ERGGAMP---AGSRH----R---PV---VVQGP--------APSFA------GI-AKAVRP---GDEEISMN-PRARS----ATLRAA-- A0A0Q4K0R8/6-109_210-301 HIPVLMTEAIAALGI----Q-----P-------GETHVDATFGAGGYTRAMLAAG-AR--VIAFDRDPTAHDAAA----PLL-EEAGE------R----LMLIRAPFSAMASEL-AA-----R----DINE---VDGVVMDIGVSSMQLDQELGELTAGLDAAERVLRAGGRLSVVSFHSLEDRIVKRFLR-------------ERGGAMP---AGSRH----R---PV---VVQGP--------APSFA------GI-AKAVRP---GDEEISMN-PRARS----ATLRAA-- A0A0P9NG18/10-113_217-311 ---VLLEEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSEA-LE-----R----GLASK--VSGILLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QFKP-------FEPKIK------IH-GKAQFA---SDTETKAN-PRSRS----AVMRVAEK A0A1B3LUW3/11-109_214-303 ---VLLNEAVQALAI----N-----P-------DGHYVDATFGRGGHSRLILEQLSRQGRLTVFDKDPQAVEAAQ----ALAANDA--------R----IAIRHEGFAHLGELG-AA-----S-----------VDGVLMDLGVSSPQIDDELEELQQALEASLHVLRPTGHLVVISFHSLEDRMVKQFMA-------------RHSR-AV----VDRR----V---P-----------FAEP-APMALR------GL-KR-VMP---SDDEVKGN-PRSRS----AVMRVAER H0J453/18-119_223-316 ---VLLEGAVDALVH----D-----P-------DGIYIDGTFGRGGHSRVILSRLSEQGRLMAMDRDPQAIAAAA----EI--DDS--------R----FQITQREFSRLAEFA-QE-----Q----GLHGK--LSGVLLDVGVSSPQLDDELEQLDAALDAALEALAPGGHLVVISFHSLEDRRVKRFIR-------------HHVRGDT---HLPRG----V---PI----RDDQ-------LNRRLE------AL-GKGVRP---SDAELDAN-PRARS----AVMRAARK A1TKC3/12-112_217-306 ---VLLDEAVDALLG----GAGP-AP-------AGVWIDATFGRGGHSRRILERLGPDGRLVAFDKDPEAIHEAA----RI--TDA--------R----FSIRHEGFRHLADLP-ER-----S-----------AAGILMDLGVSSPQIDSELEELQAALEASLRVLAPGGRLAVISFHSLEDRIVKQFIA-------------QHSR-EV----YDRR----A---P-----------FAAP-QPMRLK------AL-DR-IKP---GACEVDAN-PRARS----AVMRVAER A0A078BD54/17-117_222-316 ---VLLHEAVDQLIT----N-----P-------DGVYLDATFGRGGHSREILRRLSPAGRLIAIDRDPQAIEAAA----QI--HDA--------R----FVIKHAPFSEFTRVL-HE-----Q----GVAQ---ADGLLFDLGVSSPQLDQELAQIETALSQVLDCLRPGGRLAVISFHSLEDALIKRFIH-------------RHARAPA----VDRR-QPFV---PG----VSAE-------FQPQLK------EV-VR-MRP---SAAEISGN-ARSRS----AMLRVAQR A0A160SNX2/17-117_222-316 ---VLLHEAVDQLIT----N-----P-------DGVYLDATFGRGGHSREILRRLSPAGRLIAIDRDPQAIEAAA----QI--HDA--------R----FVIKHAPFSEFTRVL-HE-----Q----GVAQ---ADGLLFDLGVSSPQLDQELAQIETALSQVLDCLRPGGRLAVISFHSLEDALIKRFIH-------------RHARAPA----VDRR-QPFV---PG----VSAE-------FQPQLK------EV-VR-MRP---SAAEISGN-ARSRS----AMLRVAQR A0A139DHU1/18-120_224-316 ---VLLDAAVDYLVN----D-----E-------AGRYVDATFGRGGHSRLILGRLAGEGRLLGIDKDPQAIEVAQ----ALSDVDS--------R----FSRYHGSFAELSQAL-DS-----Q----NWPQ---VNGVLMDLGVSSPQLDDELEDLEVGLKAAVDRLAPGGRLVVISFHSLEDRVVKRFMR-------------DLARGPK----IPKG----V---PV----TADQ-------EASGYR------LI-GKASKA---NQQEIDEN-VRARS----AVMRVLER A0A0R3CWW8/6-110_213-304 HIPVLGREAIAHLAP----R-----E-------GGLYVDATFGAGGYSRAILDVPGTR--LIAIDRDRTAIAGGA----ELV-ERAAG------R----LTLVEDRFSNLAEVC-AA-----Q----GVDG---VDGVVMDVGVSSMQLDQELEELQTALAAAERVLKPGGRLVVVSFHSLEDRIVKNFLS-------------ERSKTGG----GSRH----L---PE----VAQI--------APSFQ------LLTRRPVVA---GEDEVAHN-PRARS----AKLRAAE- A0A1K1M728/11-114_218-312 ---VLLDEAVEGLAV----R-----G-------DGRYMDGTFGRGGHSRLILQKLGPDGRLLGFDKDPLAIATGE----ALAAEDG--------R----FVVVQRSFAELGDEA-VV-----R----GISGQ--VAGILLDLGVSSPQLDDELGDLERGLEAALETLEVGGRLVVISFHSLEDRIVKQFMK-------------RQAKGEAD--KLPRD----L---PI----IPKA-------FEPRLK------LI-GKPVYA---AEAELKAN-PRSRS----AVMRIAEK A0A0B1PTD5/18-119_223-316 ---VLLDGAVDALIH----D-----P-------DGVYLDGTFGRGGHSRLILSRLSEQGRLLAMDRDPQAIAAAA----EI--TDS--------R----FEITRREFARLAEFA-QE-----Q----GVHGR--LSGILLDIGVSSPQLDDELEQLDGALEAALEALAPGGHLVVISFHSLEDRRVKRFIR-------------HHVRGDT---HLPRG----V---PI----RDDQ-------LNRRLE------AL-GKGSRP---CDEEVDAN-PRARS----AVMRAARK A0A0S8ENK4/10-113_217-309 ---VLLGPAIEALNL----R-----P-------EGIYVDATFGRGGHAGEILKRLGDGGRLLAMDRDPAAVAEAT----RKFAGDK--------R----IEIRRGPFSMLGHYV-EE-----K----GLTGK--IHGVLLDLGVSSPQLDDELDEVSAVLPQTLSVLKAGGRLAVISFHSLEDRLVKRFIQ-------------KEARGDD----FPPD----L---PV----TQSA-------LKPRVR------QV-GKPIRA---DADEIQRN-PRARS----AVLRVAER J1YG16/9-111_216-310 ---VLLAETLTGLAI----K-----A-------DGIYLDGTFGRGGHSREILKQLGPQGRLYAIDRDPAAIAAAA----PL-QADA--------R----FHITHSPFAALANIA-ES-----L----AIFGK--IDGILLDLGVSSPQLDEELEQVNLALQGAMAALKPAGRLCVISFHSLEDRLVKQFMR-------------RHSKPEA----VPRG----L---PL----TNAQ--LQ---QEVPLK------LI-GKAIMP---SDAELAVN-PRARS----AVLRIAER A0A0N0C1H8/6-110_213-304 HIPVLGREAIDHLAP----R-----E-------GGIYVDATFGAGGYSRAILDVPGTR--LIAIDRDRTAIAGGA----ELV-ERSAG------R----LTLVEDRFSHLAEVC-AA-----Q----GVDA---VDGVVMDVGVSSMQLDQELEELQAALTAAERVLKPGGRLVVVSFHSLEDRIVKNFLA-------------ERSKTGG----GSRH----L---PE----VAQT--------APSFQ------LLTRRPVVA---GEDEVAHN-PRARS----AKLRAAE- A0A1L5M629/6-110_213-304 HIPVLGREAIDHLAP----R-----E-------GGIYVDATFGAGGYSRAILDVPGTR--LIAIDRDRTAIAGGA----ELV-ERSAG------R----LTLVEDRFSHLAEVC-AA-----Q----GVDA---VDGVVMDVGVSSMQLDQELEELQAALTAAERVLKPGGRLVVVSFHSLEDRIVKNFLA-------------ERSKTGG----GSRH----L---PE----VAQT--------APSFQ------LLTRRPVVA---GEDEVAHN-PRARS----AKLRAAE- A0A1D7YY23/10-111_215-311 ---VLLDEAVNGLNI----R-----S-------GGTYIDGTFGRGGHSRLILSQLGPEGRLLAIDRDPQAIEAAK----AI--DDP--------R----FSIIHGPFSAMAEYV-AE-----R----GLTGQ--IDGVLLDLGVSSPQLDDELEEIERALEGALSVLAPQGRLSVISFHSLEDRIVKRFIR-------------HQSRGPQ----VPAG----L---PL----TEEQ--LRSQ-GGQTLK------PV-GKKLMP---SEDEVAEN-PRARS----SVLRFAER A0A193GAR2/41-131_235-327 -------------------R-----R-------HGVFVDGTFGRGGHSRLLLSRLGPDARLVVFDKDPSAIAVAR----QLADSDG--------R----VSVVHDGFASMADAL-GR-----L----GVGK---VDGVMLDLGVSSPQIDDELEELARALASALELLAPMGRLAVISFHSLEDRMVKQFIA-------------AAARPAA----AHAR----L---PL----RESE--M----PQPVLR------SL-GR-IVA---EPGEVAGN-ARARS----ALLRVAER A0A0D7K9Y5/10-110_215-304 ---VLLHEAVDALLG----NAGP-EP-------SGTWVDATFGRGGHSRLILQRLGPQGNLVAFDKDPEAIQEAA----RI--TDA--------R----FSIRHEGFRHLGELP-AG-----S-----------ASGVLMDIGVSSPQIDSELEELQQALEASLSVLRPGGRLVVISFHSLEDRIVKQFIA-------------KHSK-EV----FDRR----A---P-----------FAVP-QAMKLI------AL-DR-IKP---SEQEVAAN-PRSRS----AIMRIAQR A0A0A3AAB2/14-115_225-319 ---VLLNEAVDGLAI----K-----P-------NGIYIDGTFGRGGHSRRILSLLGEHGRLIAIDRDPQAIAAAQ----SI--QDP--------R----FSIEHHNFSEINEIC-EK-----Y----QLIGK--IDGILLDLGVSSPQLDQELEELEKILTAAIEVLAPQGRLSIISFHSLEDRLVKRFMK-------------KQSKGDD----IPRG----L---PL----TEDQ--IE---RNQKLK------II-GKAIMP---SEQEIAVN-SRSRS----AVLRVAER A0A1J0J1A5/10-113_217-311 ---VLLEEAVSALAP----R-----E-------GGCYLDGTFGRGGHSRALLEKLGAGGRLLGFDKDPQAIQTGK----ALAAEDG--------R----FVIVQRSFAELGDEV-RA-----R----GLEGR--VDGVLLDLGVSSPQLDDELGDLERGLDAALESLAVGGRLVVISFHSLEDRIVKLFMR-------------KHAKGEAD--NLPRD----L---PI----RSKV-------FEPRLK------LL-GKPQYA---SEEELKAN-PRSRS----AVMRVAEK A0A0Q5Q2I5/7-103_204-295 HVPVLLDEVVAALAP----A-----P-------GETMVDGTFGAGGYTRALLAKG-VR--VIAFDRDPDAIAAGQ--------AAAID------G----LTLVQADFSAMESAI-D-------------SP---VDGVTLDIGVSSMQLDQELDELAEGLAAAERVLKPGGRLAIVTFHSLEDRMVKRFLR-------------DRSGGAP---SGSRH----L---PQ---ASAAA--------APSFQ------KV-GRAVRA---GEAELARN-PRARS----ATLRMA-- A0A0D6Q860/12-122_225-267_290-320 HVPVMLAEVMEYLTP----H-----D-------GGRYVDGTFGGGGYARAILAACDCQ--LWGIDRDPAAIARGA----ALA-PAFPDARGGGSR----LHLLHGGFADMADLL-AG-----D----GVTT---VDGIVLDLGVSSYQIDEELGQITRVLEQAPRLLAPGGRLVVVSFHSLEDRLVKQAMS-------------RAA-----------------------------------------FR------LLTGRPIRP---GDEETRRN-PRARS----ARLRAME- A0A1H2P991/12-115_219-313 ---VLLDEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGPDGKLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGAEV-AE-----R----GMAGK--VAGVLLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------RLVKGESD--NLPRN----L---PV----RFEA-------FVPKIK------IH-GKAQFA---SEAELKAN-PRARS----AVMRVAEK G2SL92/21-129_230-319 HVPVLWKAVVEGLVT----D-----P-------AGCYVDATIGGGGHTAALLDALAPEGRVIGIDRDPEALDAVR---RRL--GDAVEAG----R----LQLVQGNFADLEAIL-DR-----L----GVAQ---IDGLLLDLGVSSHQLDEELQALERALEAATRRVRPGGRLVVLSYHSLEDRRVKRFLR-----------------------------YGNLKGEPVR-------D-FYGR-LIAPWR------PLTGRAIRP---SDDEVAAN-PRARS----ARLRIAE- A0A1F8VL25/34-117_222-311 -------------------------A-------DGTYVDATFGRGGHSRLILSRLSPQGRLIAFDKDPMAIAEAQ----RI--TDP--------R----FAIRHQGFRHLDELP-SA-----S-----------AAGVLMDLGVSSPQIDNELEELQAALEASLDVLQPGGRLVVISFHSLEDRIVKQFIA-------------QHSR-EV----YDRR----A---P-----------FAAP-QPMKLK------AL-DR-IKP---SAPEVAAN-PRARS----AIMRVAMR A0A0F2TW03/10-111_219-315 ---VLLNESIEGLAI----K-----P-------DGIYIDGTFGRGGHSRTILAQLGPEGRLYSIDRDPQAIAEAQ----KI--DDP--------R----FTIVHGPFSGIAEYA-QR-----Y----DLVGK--VDGVLFDLGVSSPQLDDELEEIDTALRGASDILAPQGRLSVISFHSLEDRMVKRFMR-------------KESQGPE----VPHG----L---PL----TQEQ--IRAL-GSAKMK------TV-GKALKP---SDQEVELN-PRSRS----SVLRVAEK A0A0H3AMP0/10-111_219-315 ---VLLNESIEGLAI----K-----P-------DGIYIDGTFGRGGHSRTILAQLGPEGRLYSIDRDPQAIAEAQ----KI--DDP--------R----FTIVHGPFSGIAEYA-QR-----Y----DLVGK--VDGVLFDLGVSSPQLDDELEEIDTALRGASDILAPQGRLSVISFHSLEDRMVKRFMR-------------KESQGPE----VPHG----L---PL----TQEQ--IRAL-GSAKMK------TV-GKALKP---SDQEVELN-PRSRS----SVLRVAEK D7HEH9/10-111_219-315 ---VLLNESIEGLAI----K-----P-------DGIYIDGTFGRGGHSRTILAQLGPEGRLYSIDRDPQAIAEAQ----KI--DDP--------R----FTIVHGPFSGIAEYA-QR-----Y----DLVGK--VDGVLFDLGVSSPQLDDELEEIDTALRGASDILAPQGRLSVISFHSLEDRMVKRFMR-------------KESQGPE----VPHG----L---PL----TQEQ--IRAL-GSAKMK------TV-GKALKP---SDQEVELN-PRSRS----SVLRVAEK C2HW17/10-111_219-315 ---VLLNESIEGLAI----K-----P-------DGIYIDGTFGRGGHSRTILAQLGPEGRLYSIDRDPQAIAEAQ----KI--DDP--------R----FTIVHGPFSGIAEYA-QR-----Y----DLVGK--VDGVLFDLGVSSPQLDDELEEIDTALRGASDILAPQGRLSVISFHSLEDRMVKRFMR-------------KESQGPE----VPHG----L---PL----TQEQ--IRAL-GSAKMK------TV-GKALKP---SDQEVELN-PRSRS----SVLRVAEK A0A0P9H275/10-112_216-310 ---VLMDETIDALAI----K-----P-------DGIYMDGTFGRGGHSGQILARLGEQGRLQAIDQDPQAIKSAE----KF-ADDA--------R----FAIAHTRFSNLYDVA-EQ-----N----DLLGK--VDGILLDIGVSSPQLDDELEEIQTALQAAVKVLKPGGRLVVISFHSLEDRIVKQFIR-------------KQSKGEA----IPRG----L---PL----TDAQ--IN---KNLTLK------AV-GKAIKP---SAEEIERN-PRSRS----SVLRIAQR A0A0Q0DQ09/10-113_217-311 ---VLLEEAVEALAL----R-----A-------DGCYMDGTFGRGGHSRLILSYLGPDGRLLGFDKDPQAIATGQ----TLAAEDG--------R----FVIVQRSFAELGSEA-QE-----R----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALGALEIGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QYKA-------FEPKIR------IH-GKAQFA---SDTETKAN-PRSRS----AVMRVAEK A0A090SC13/10-111_219-315 ---VLLHESIDGLAI----K-----P-------DGTYIDGTFGRGGHSRQILSQLGDNGRLFSIDRDPTAIEEAK----KI--DDP--------R----FTIIHGPFSGMAEYA-ER-----Y----DLVGK--VDGVLLDLGVSSPQLDDELEEIDTALKGAASILAPQGRLSVISFHSLEDRMVKHFMR-------------KESKGPQ----VPHG----I---PM----TEDQ--IRAL-GSANLK------TI-GKALKP---SDREVEMN-TRSRS----SVLRVAEK S9QRD6/13-111_215-305 HVPVLLRPLLRAVAP----V-----Q-------G-TWIDGTLGAGGYARGLLEAGADK--VIGIDRDPLAHEMAR----DWA-PAYGD------R----LELVEDNFAEMDRHA---------------EQ---VEGVVLDLGVSSMQLDREYAALWQGLMAAERVLKPGGWLCVVTFHSVEDRMVKRFFQ-------------SRTGKLD---TVSRH----A---PA----VETE--------APRFE------LLTRKATGP---DEDELAQN-PRARS----ARLRI--- A0A0M3H0T1/12-114_218-311 ---VLLNEAVDALAV----R-----E-------DGVYVDGTFGRGGHSRLILSRLGDAGRLIVFDKDPQAIAVAE----ELARSDK--------R----VGVVHGGFASFQTAL-DG-----L----GIGK---VDGALFDLGISSPQIDDELEEVGAVLPQVMCRLKEGGRLAVIAFHSLEDRIVKQFVK-------------KYSQHEP----LPSW----A---AV----READ--L----PEPPLK------IV-GRALKP---GEAEIAAN-PRARS----AVLRVAER A0A1D3HCM4/12-114_218-311 ---VLLNEAVDALAV----R-----E-------DGVYVDGTFGRGGHSRLILSRLGDAGRLIVFDKDPQAIAVAE----ELARSDK--------R----VGVVHGGFASFQTAL-DG-----L----GIGK---VDGALFDLGISSPQIDDELEEVGAVLPQVMCRLKEGGRLAVIAFHSLEDRIVKQFVK-------------KYSQHEP----LPSW----A---AV----READ--L----PEPPLK------IV-GRALKP---GEAEIAAN-PRARS----AVLRVAER B4RQD7/12-114_218-311 ---VLLNEAVDALAV----R-----E-------DGVYVDGTFGRGGHSRLILSRLGDAGRLIVFDKDPQAIAVAE----ELARSDK--------R----VGVVHGGFASFQTAL-DG-----L----GIGK---VDGALFDLGISSPQIDDELEEVGAVLPQVMCRLKEGGRLAVIAFHSLEDRIVKQFVK-------------KYSQHEP----LPSW----A---AV----READ--L----PEPPLK------IV-GRALKP---GEAEIAAN-PRARS----AVLRVAER D6H625/12-114_218-311 ---VLLNEAVDALAV----R-----E-------DGVYVDGTFGRGGHSRLILSRLGDAGRLIVFDKDPQAIAVAE----ELARSDK--------R----VGVVHGGFASFQTAL-DG-----L----GIGK---VDGALFDLGISSPQIDDELEEVGAVLPQVMCRLKEGGRLAVIAFHSLEDRIVKQFVK-------------KYSQHEP----LPSW----A---AV----READ--L----PEPPLK------IV-GRALKP---GEAEIAAN-PRARS----AVLRVAER A0A0S8BA07/11-111_215-307 ---VLLEETLAALAL----R-----P-------DGVYVDATFGRGGHARAVLARLGPRGRLIAIDRDPAAVAAAQ----AL--GDP--------R----LLAVHAAMRSLAATL-DA-----A----GVQG---ADGMLFDLGVSSPQLDDELEEVSLMLPQAVARLAAGGRLAVISFHSLEDRIVKRFFA-------------GAARPE-----LPAD----L---PI----RASE--M----PAPLLR------LV-GRAQRP---SAAELAEN-PRARS----ALLRVAER K0MEV4/43-132_236-328 -------------------------Q-------HGIFVDGTFGRGGHSRALLARLGAQARLVVFDKDLQAIAVAR----ELAAGDG--------R----VEVVHGGFATMAEEL-TA-----R----GIEQ---VDGVMLDLGVSSPQIDDELEELARALASALDLLGPGGRLAVISFHSLEDRMVKQCIA-------------AAARPAA----AHAR----L---PL----RESE--L----PQPLVR------SL-GK-VVA---DDVEVAGN-ARARS----AILRVAER A0A1J0S617/12-114_218-312 ---VLLDECIEALAI----K-----P-------NGIYIDATFGRGGHSAHILDALGEKGRLIAFDRDPQAIKAAE----RF-ADDK--------R----FSIIHSPFGDMAEEI-EA-----L----GLTGK--IDGVLMDLGVSSPQLDDELEQLRVGLKAATQVLAKEGRLAVISFHSLEDRLVKRFIK-------------DQSKGKV----VPHN----L---PI----TQAE--ID---ADKVLK------AL-GKAIKP---SEQEIANN-VRSRS----SVLRVAEK W8X5N8/34-125_229-321 -------------------------P---PP--DGIYVDGTFGRGGHSRLLLSRLGPRARLLVFDKDPAAIAEAQ----ALRAADG--------R----VEVVHDGFATLDAQL-DR-----L----GIDR---VDGVLLDLGVSSPQIDEELAQLAHALPAALTRLRAGGRLAVISFHSLEDRMVKQCFA-------------AAAHPGR----DRAR----L---PI----PERD--M----PQPYVT------LL-GR-VLA---DEAEVADN-VRARS----AVLRVAER A0A1E4NP48/12-112_216-306 ---VMREAVLAGLAP----R-----P-------DGRYLDGTFGRGGHARAILDHLGDSGRLLLMDRDPEAIAHAR----REFGADP--------R----VTIRHANFSDMAEWD-------------EVRAG--LDGVLLDLGVSSPQLDDELGSLQRALPAAASVLKPGGRLAVISFHSLEDRIVKQFIRG------------EAATPAR--RGLPP-----L---PV---------------KVPPLR------AV-GRKQLP---DEAEVARN-PRARS----AVLRIAEK A0A1M3QS80/12-112_216-306 ---VMREAVLAGLAP----R-----P-------DGRYLDGTFGRGGHARAILDHLGDSGRLLLMDRDPEAIAHAR----REFGADP--------R----VTIRHANFSDMAEWD-------------EVRAG--LDGVLLDLGVSSPQLDDELGSLQRALPAAASVLKPGGRLAVISFHSLEDRIVKQFIRG------------EAATPAR--RGLPP-----L---PV---------------KVPPLR------AV-GRKQLP---DEAEVARN-PRARS----AVLRIAEK S3C6J1/9-109_215-307 ---VLSREAPEALVA----R-----P-------DGLYVDGTFGRGGHSRLILERLAPQGRLIAFDRDPEAVAAAA----AI--KDP--------R----FQIVHAPFSAMKERL-GD-----L----GIRQ---VDGIFLDIGVSSPQIDDELDELKTALESAGALLAPAGRLAVISFHSLEDRIVKRFFE-------------KRLHPDRD---LDPR----L---PM----PAGF--N----AQPWFS------DV-IRIL-P---TKSEAESN-PRARS----SVLRVGT- A0A0C5S103/12-115_219-313 ---VLLDEAVEALAL----R-----A-------DGCYLDGTFGRGGHSRLILSKLGPQGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGAEV-AE-----R----GLHGK--VSGVLLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLAVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----QHKA-------FEPKIK------LI-GKAQFA---SEAELKAN-PRSRS----AVMRVAEK B9CW30/11-112_218-312 ---VLLHEAVEGLAI----K-----P-------NGIYIDGTFGRGGHSRLILSKLNEQGRLIATDRDPRAIAEAH----TI--TDP--------R----FQIVHTAFSAIPQVC-ED-----L----GLIGK--IDGILLDLGVSSPQLDDELDELEKALNSALSVLAPEGRLSIISFHSLEDRMVKQFMK-------------KNSKGKE----VPRG----L---PI----LEAD--LN---KDIPLK------TI-GKAIMP---SEAEIEAN-PRSRS----AVLRVAEK A0A0N1C9R5/13-118_224-315 HIPVLLDEVVAALCP----N-----A-------GDLIVDATFGAGGYTRRLLETG-AI--VHAFDRDPDAIEAGM-----RW-PETGGAT---TT----LVLHPRRFSELAEGL-AE-----A----GIAG---VHGVVFDIGVSSMQLDQELDELIEGLAAAEKVLLPGGRIAVVSFHSLEDRIVKQFLR-------------DGAGALP---SGSRH----M---PQ---MQAKD--------LPVFE------KP-SGAIRP---TEAEEVRN-PRARS----ATLRWA-- F6CXD8/11-113_217-309 ---VMLNESVDMLVT----N-----D-------KGDYVDGTFGRGGHTRLVLSRLK-DGRMLGFDKDPVAIEFGR----ELAAEDA--------R----FNIVQDSFANMAERI-PQ-----VF---GDAK---VDGVMMDLGVSSPQLDDELGDLEKGLEAAVDALKIGGRLVVISFHSLEDRIVKRFMK-------------LKAKGPE----LPRH----L---PI----RNAH-------LDIKFK------TI-GKAIKP---SKNEVGDN-VRSRS----AVLRVLER A0A0F3IJE1/6-110_214-307 ---VMLDQVIESLSI----K-----P-------NGMYVDCTFGRGGHSSAILSRLSEQGCLLALDRDRSALDSEEA---VAFLSDQ--------R----TSLKHCSFSGLKEQL-AA-----I----NKWGQ--VDGVLFDLGVSSPQLDEELIQIETALQQASSALTAGGRLVVIAFHSLEDRLVKRYLK-------------AESGRKF----DPGK----L---PI----KQAD--I----PKGQLK------II-GKAVKA---SAQEISSN-PRARS----AIMRVAEK J3F6J2/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSKLGPDGRLIGFDKDPQAIATGQ----TLAAEDG--------R----FVVVQRSFAELGSVV-AE-----Q----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALECLEVGGRLVVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----RHVA-------FEPKIK------VH-GKAQTA---SDAELKAN-PRSRS----AVMRVAEK A0A077F8B6/12-115_219-313 ---VLLDEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSKLGPQGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGDEV-AQ-----R----GLAGK--VSGILMDLGVSSPQLDDELGDLEAGLEAALEALEVGGRLVVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----QHKH-------FEPKIK------LI-GKAQFA---SEAELKAN-PRSRS----AVMRVAEK A0A193LI48/11-113_217-309 ---VLLAPVLDGLNI----Q-----R-------NGSYVDGTFGRGGHSREILQQLGPDGRLLAIDRDPQAVSAAK----ALT-SDP--------R----FTMVKGDLADLEQIA-RE-----N----GILGQ--VDGLLFDLGVSSPQLDDELGQLDSALAAIPAVLRAGGRACIISFHSLEDRRVKRFFR-------------DMSREPE----QYRG----M---PT----IPEE-------FRPPMR------VI-GRAIKA---SEAEIAAN-VRARS----ARLRIAER A0A0G9I6H8/10-110_214-306 ---VMLDEAVEGLAL----R-----E-------NGRYLDGTFGRGGHARAILSRLSTDGRLFLMDRDPTAIAVAE----ADLATDP--------R----VALRHENFATMAEWP-------------ALEGG--LDGILLDLGVSSPQLDDELESVERGLDAALDLLKVGGRLAVISFHSLEDRTVKQFIR-------------SHEGRVQ---GNRRG----P---PP----PDA--------KQARLK------PV-GKAIFP---SDAEVAAN-PRSRS----AVLRIAEK A0A0G9HBA8/10-110_214-306 ---VMLDEAVEGLAL----R-----E-------NGRYLDGTFGRGGHARAILSRLSTDGRLFLMDRDPTAIAVAE----ADLATDP--------R----VALRHENFATMAEWP-------------ALEGG--LDGILLDLGVSSPQLDDELESVERGLDAALDLLKVGGRLAVISFHSLEDRTVKQFIR-------------SHEGRVQ---GNRRG----P---PP----PDA--------KQARLK------PV-GKAIFP---SDAEVAAN-PRSRS----AVLRIAEK A0A149PTY9/14-114_222-314 ---VLLKEAVDGLIT----R-----T-------DGIYIDGTFGRGGHSRAILQRLGEAGQLIAFDKDPLAIATAQ----QI--QDS--------R----FSIVHDSFAALRDAA-AE-----R----GVGR---VSGVLLDLGVSSPQVDDELAELQVVLESALALLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLR------VV-GR-VFP---SDAEVADN-PRARS----AVMRIAER C0N691/11-114_218-310 ---VLLNETIAALSV----K-----A-------DGKYLDATFGRGGHSRAILALLSDDGRLLGLDRDPQAVATGK----QLAQQDN--------R----FAIEYCAFSEMATAA-HA-----R----LWQNN--IDGILMDIGVSSPQLDDELEELTLALEQALDVLAVGGRLVVISFHSLEDRIVKRFFR-------------DEARGDD----FPAH----F---PV----TVEQ-------LNPRLK------II-GKAIKA---SETELADN-PRARS----AVLRVAEK A0A1C2JGF2/7-116_220-310 HITVLLQESVAMLQPAL-SE-----GS------ARRCVDVTGGRGGHSAALLEKLQHQDMLLILDRDPSAIAALQ----DRFADDE--------R----VLIRQARFSEIRSVL-ES-----L----GWES---VDAILADLGVSSPQLDEELEELELFLPEAMAVLRAGGRLAIISFHSLEDRMVKRFFR-------------ADAFRVS----------SDL---PL----RAAE------IPPLPWS------AV-GKAIHA---STEEIQMN-PRSRS----AVLRVAE- A0A0D7F9T2/10-113_217-311 ---VLLDEAVQALAI----Q-----P-------AGRYLDGTFGRGGHSRAVLRLLGGEGRLLGFDKDPQAIAAGQ----ALATEDS--------R----FEIVQRSFAELGDEL-VG-----R----GWSGQ--VDGVLLDLGVSSPQLDDELSDLEQGLQAAYEQLAVGGRLVVISFHSLEDRIVKQFMR-------------RLAKGEAD--QLPRD----L---PI----RATV-------FEPSLR------LL-GKPVYA---GEAELAAN-PRARS----AVMRVAEK A0A0E3Y8C5/14-114_222-314 ---VLLEEAVDALLW----R--D----------DGVYVDGTFGRGGHSRRLLERLGAQGRLIAFDKDPQAIAEAA----KI--ADP--------R----FSIEHESFATLREAL-AR-----R----GIDK---VSGVLLDLGVSSPQIDDELADLQIALDVAADVLETGGRLVAISFHSLEDRIVKRFMQ-------------ARSSAPA----VDRR----V---PL----RAHE------IPEPPFK------AS-RK-IKP---SAAEVEAN-ARSRS----AIMRVMER V5BVV7/7-111_215-308 ---VMLSEVLEQLAI----K-----E-------DGIYLDCTFGRGGHSQSILALLGTTGRLVALDRDVDAVASTTA---QEMLKDR--------R----FSLKHSRFSALESIV-AD-----E----GLVGQ--ISGILLDLGVSSPQLDDELAELKAVLQQSIKVLKQGGRLVVISFHSLEDRIVKQFIR-------------DESGAKY----DPGK----L---PV----KEAD--I----AKGILV------KR-GKPLKA---SKLEIDQN-PRARS----AIMRVAER A0A1B9VBR1/15-119_222-264_285-314 HKPVLLREVLDALSP----G-----A-------GEIMVDGTFGAGGYSRAILDHADCE--LYAIDRDPTAVATGK----AME-ADYAN------R----FHMLEGCFGDMGTLL-PA-----A----GVDQ---VDGIVLDIGVSSMQLDQELGELERAMQAAENLLKPGGRLVVVTFHSLEDRSVKTFMK-------------ERS-----------------------------------------FT------TITRKAVTA---QKDELRAN-PRARS----AKLRAV-- A0A1G3FN62/13-111_215-305 HVPVLLRPLLAACAP----I-----T-------G-AWLDGTFGAGGYSRGLLAAGADL--VIGVDRDPLALQMAQ----PWA-GEYGN------R----LQLVAGTFSQLDTYA---------------GA---LDGVVLDLGVSSMQLDQEFDELAEGLAAAERVLKPGGRLAVVTFHSLEDRIVKRFFQ-------------TRT-VAA---QGNRY----A---PS----QDGP--------VPSFT------PVTRRAVGP---DDDELAEN-PRSRS----AKLRVA-- A0A1G3FSF9/13-111_215-305 HVPVLLRPLLAACAP----I-----T-------G-AWLDGTFGAGGYSRGLLAAGADL--VIGVDRDPLALQMAQ----PWA-GEYGN------R----LQLVAGTFSQLDTYA---------------GA---LDGVVLDLGVSSMQLDQEFDELAEGLAAAERVLKPGGRLAVVTFHSLEDRIVKRFFQ-------------TRT-VAA---QGNRY----A---PS----QDGP--------VPSFT------PVTRRAVGP---DDDELAEN-PRSRS----AKLRVA-- A0A158E840/14-114_222-314 ---VLLKEAVDGLIT----R-----T-------DGIYIDGTFGRGGHSRAILQRLGEAGRLIAFDKDPLAIATAQ----KI--QDS--------R----FSIVHDSFAALRDAA-AE-----R----GVQK---VSGVLLDLGVSSPQVDDELAELQVVLESALALLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLR------VV-GR-VFP---SEAEVTGN-PRARS----AVMRIAER A0A0D9M5U3/11-113_217-310 ---VLLNEAVDALAV----R-----E-------DGIYVDGTFGRGGHSRLILSRLGSQGRLIVFDKDPQAIEAAQ----KLAEQDG--------R----VTVVHDGFSSFQTTL-DK-----L----GIEE---IDGALFDLGISSPQIDDELEEVGAVLPQVMSRLKQGGRLAVIAFHSLEDRIVKQFVK-------------KYSQHPP----LPRW----A---AV----KEAD--L----PLPPLK------AV-GKAIKP---GVEETASN-PRARS----AVLRVAER A0A0P9ELP7/11-114_217-309 ---VLAEAAVDAL------R-----P---GP--DRRLVDATYGRGGHARLILDRLGETGELLALDRDPEAVAHGR----AEFASDP--------R----FRILRHPFSRIGPAV-AE-----A----GWTEG--VDGILADLGVSSPQLDDELGELEAFLEAAVEVLRPGGRLVVIAFHSLEDRMVKRFIR-------------EEARDCV----CPPD----F---PV----CRCD-------KAARLR------PV-GKPLRP---GPEEREVN-PRARS----AIARVAER A0A0N1AVG7/11-114_215-305 HIPVLLDEVVAAIAP----R-----P-------GMTIVDATFGAGGYTAALLEAG-AQ--VHAFDRDPDAIEAGQ----VMV-ARYEG------R----LHLHPARFSQMRSEL-AA-----I----GVAS---VDAVVMDIGVSSMQLDQELGELEAGLAAAEALLGEGGVLAVVSFHSLEDRIVKHFLR-------------AASGAGR---AVSRH----L---PG---EIAGP--------PPVFS------QV-SKGIRP---SDAELDSN-PRARS----STLRH--- A0A0W0RJJ8/7-110_214-306 ---VLLHESIEGLAI----K-----S-------GGVYFDGTFGRGGHSREILQHLNDQGRLYAIDKDIEAIAYAT----DHFSHDK--------R----FHIFQGSFAQIEEFA-TE-----A----GVLGK--VDGILLDLGVSSPQLDNELNDLKSCLEQCLNVLAPKGRLAVISFHSLEDRIVKQFMR-------------DKEQGAK----PPPE----V---PI----RYEA-------LKTNFK------RI-GKAIMP---QEVEVKEN-VRSRS----AVLRIGEK A0A0G9MTG9/7-112_213-255_276-304 HIPVLLGEVVAALSP----Q-----P-------GDVVIDATFGAGGYTRAFLDAG-AT--VHAFDRDPDAIAAGR-----EW-PETRGES---PR----LVLHPRRFSEMVASM-AE-----A----GIAR---VDGIAMDIGVSSMQLDQELDELETGLSAAEALLKDGGRLAVVTFHSLEDRIVKQFFR-------------DAA-----------------------------------------FE------SV-TKAIRP---SAAEIERN-PRARS----STLRAA-- A9E2W9/11-109_213-304 HTPVLLRPILTAVAP----V-----E-------G-VWLDGTFGAGGYTRGFLEAGAAR--VIAVDRDPLAFEMAA----EWA-GDFGD------R----ITMQQGVFSRMDEYA---------------QD---LDGVVLDLGVSSMQLDQEYGELFQGLMAAERALKPGGKLAVVTFHSVEDRMVKRFLT-------------ARAGAGG---NANRF----A---PA----LEQE--------APQFT------LKSRKAIGP---DAQELDEN-PRSRS----AKLRVA-- A0A1B3PFF5/11-111_216-305 ---VLLDEAIDALLG----GAGP-RP-------AGTWVDATFGRGGHSRLILMRLGPEGRLVAFDKDPEAIAEAT----RI--TDA--------R----FSIRHEGFRNLSELP-AG-----S-----------AAGVLMDLGVSSPQIDSELEELQQALEASLSVLAPGGRLVVISFHSLEDRIVKQFIA-------------KHSK-EV----YDRR----A---P-----------FAAP-QAMKLV------AL-DR-IKP---GAAEVAGN-PRSRS----AIMRVAER A0A0U5L0L3/10-111_215-310 ---VLLDEAVNGLNI----K-----A-------DGIYIDGTFGRGGHSRLILSHLGEQGRLIAIDRDPEAIAAAA----LI--NDP--------R----FSIVHGPFSQLSDYV-DE-----R----GLRGN--IDGILLDLGVSSPQLDDELEEIERALKGALDVLAPQGRLSVISFHSLEDRIVKRFMR-------------EQSRGPQ----VPAG----L---PL----TEAQ--LQKM-GGRGLK------AL-GK-MMP---GESEVAEN-PRARS----SVLRIAER A0A0D8E422/10-110_218-310 ---VLLDEAVDSLVT----R-----P-------DGIYVDGTFGRGGHSRAVLARLAAAGRLIAFDKDPRAIETAQ----RI--EDA--------R----FSIVHDSFASMRDAL-AA-----R----GVEK---VSGVLLDLGVSSPQVDDELADLQVVLDAALSLLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLK------II-SR-QFP---SEAEVAAN-PRARS----AVMRIAER A0A0E9MNZ3/4-104_205-295 HVPVLLDEVIDALAI----R-----P-------GERHVDGTFGAGGYTRAMLAKG-AR--VYAFDRDPGAIAAGR----AIHDAE--------------LTLIERRFSEMEDAL-AD-----V----DALP---VDGVTLDIGVSSMQFDQELDELTGGLEAAERVLAPGGRLAVVTFHSLEDRIVKQFLR-------------DRSGQAP---AGSRH----L---PA----AKAR--------RPSFE------AV-GKAVRP---GARETAAN-PRARS----ATLRVA-- A0A0W0Z9M3/6-109_213-305 ---VLLQEAVEGLAI----R-----P-------DGIYVDGTFGRGGHSRAILKRLSPAGRLIAIDKDPAAVAYGR----ECFKDDN--------R----FSIIHGSFADLPHFA-KE-----A----DIYGN--INGILLDLGVSSPQLDDELSDLTRCLDQVLDTLTAGGRLVVISFHSLEDRIVKQFMR-------------RKEQGER----FPSG----V---PL----RASE-------ISSSFK------RI-GKAIKP---DDIEIKEN-IRARS----AVLRIGEK A0A1B5D9X4/12-115_219-313 ---VLLDEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGPNGKLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGAEV-AE-----R----GMAGK--VAGVLLDLGVSSPQLDDELGDLEAGLEAALEALEVGGRLVVISFHSLEDRIVKLFMR-------------RLVKGESD--NLPRN----L---PV----RFEA-------FVPKIK------IH-GKAQFA---SEAELKAN-PRSRS----AVMRVAEK A0A1B5DU00/12-115_219-313 ---VLLDEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGPNGKLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGAEV-AE-----R----GMAGK--VAGVLLDLGVSSPQLDDELGDLEAGLEAALEALEVGGRLVVISFHSLEDRIVKLFMR-------------RLVKGESD--NLPRN----L---PV----RFEA-------FVPKIK------IH-GKAQFA---SEAELKAN-PRSRS----AVMRVAEK A0A011NT70/10-113_217-310 ---VLLREAVEALRI----R-----S-------AGRYIDGTFGRGGHSLAILERLGPEGRLLAIDRDPQAVAAAS----AI--GDR--------R----LLVRHQRFGDLLATL-RQ-----E----EFAVDEGVDGVLLDVGVSSPQLDQELEQLALVLPQAMAVLKGGGRLVVISFHSLEDRIVKRFMR-------------SQAAPDD----APKS----L---PL----RAAE--L----PQPRLR------LL-GKPVRA---SAAEVASN-PRARS----AVMRVAEK A0A062TZF6/16-119_223-265_286-315 HKPVMLDEVLKWLAA----K-----D-------GDVIVDGTFGGGGYSRAILQSALCT--LIGIDRDLDAILRAE----KMA-EDME-------R----LVPLLGRFGEMDEIV-PE-----A----GFER---VDGVVLDIGVSSFQIDQELGELARALHAAERLLRPGGRLVIVTFHSLEDRMVKQWLR-------------DRS-----------------------------------------FE------LAVSKAVLP---SANEVEGN-PRARS----AKLRAA-- A0A0L7MJ76/10-110_215-304 ---VLLEEAVDALLG----GTAE-PP-------AGQWVDATFGRGGHSRLILQRLGPDGRLIAFDKDPDAIAEAA----RI--TDA--------R----FSIRHEGFRHLGELP-EG-----S-----------VQGVLMDLGVSSPQIDNELQELEQALEASLRVLAPGGRLAVISFHSLEDRIVKQFIA-------------KHSK-EV----YDRR----A---P-----------FAPP-TPMRLK------AL-ER-IKP---SAAEVAVN-PRSRS----AVMRVAER A0A126R8Z4/10-111_212-302 HIPVLLDEVLDALAI----T-----P-------GEVHVDGTFGAGGYSRAMAARG-AT--VFAFDRDPDAIREGQ----AL--ADENG-----------ITLITGEFSRMKELL-AE-----R----GVSH---VSGVTLDIGVSSMQLDRELEELERGLEVAEAMLEEGGRLAIVTFHSLEDRIVKQFLR-------------KRSGGEG---AGSRH----L---PE---RRAGD--------APTFR------KP-AKAVRP---GESELARN-PRARS----ATLRS--- A0A1E4FBU1/16-117_220-308 HVPVLLNEVLAALSP----V-----G-------GSRIVDGTFGAGGYSRALLEAG-AQ--VIGIDRDPGVASHVA----ALK-ADFPD------R----FTFVAGTFSELDSLV--------A----AHGP---IDGVVLDIGVSSMQLDQEFDQLVEGLFAAERLLPETGRLAVVSFHSLEDRIVKRFFD-------------PEKG-GP---TASRH----L---PQ-----------V---EMAPRR-----WHPVAKAVKS---GSAELARN-PRARS----AVLRS--- A0A1G3E1N0/12-115_219-313 ---VLLEEAVTALAV----R-----S-------DGCYLDGTFGRGGHSRLILQQLGEGGRLLGFDKDPLAIATGQ----TLAAEDG--------R----FVIVQRSFAELGDEL-AV-----R----GLAGK--VSGVLLDLGVSSPQLDDELGDLERGLDAAMDALEIGGRLAVISFHSLEDRIVKQFMR-------------RHVKGEAD--NLPRD----L---PV----RVVP-------FDPRLK------LL-GKPQFA---SDAEVKAN-PRSRS----AVLRVAEK A0A0L8END0/41-132_236-328 -------------------R----AE-------EGVFVDGTFGRGGHSRELLGRLGPRARLVVFDKDPQAIAAAR----ELAARDA--------R----VTVVHGGFATMAEEL-AQ-----R----GIER---IDGVMLDLGVSSPQIDDELEELARTLASALDLLAPGGRLAVISFHSLEDRMVKQCIA-------------AAARPAA----AHAR----L---PL----RESE--M----PQPVLR------SL-GR-VVA---DDAEVAGN-ARARS----AVLRAAER A0A158E841/13-113_221-313 ---VLLTEAVDALIT----R-----A-------DGIYIDGTFGRGGHSRAILQRLGDAGRLIAFDKDPLAIATAQ----QI--QDS--------R----FSIVHDSFAALRDAA-SE-----R----GVGR---VSGVLLDLGVSSPQVDDELAELQVVLESALALLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLR------VV-GR-VFP---SDAEVADN-PRARS----AVMRIAER Q2Y630/10-110_216-312 ---VLLQEAVEALAL----K-----P-------DGIYVDGTFGRGGHSRLILERLGKNGRLIAFDRDPVACAVGR----SF--GDE--------R----FCMVHSSYSRLQEVL-RQ-----L----NIGQ---IDGVLLDLGVSSPQLEEELERLSLALPQCVEMLKTGGRLVVISFHSLEDRIVKRFIR-------------EGANTDK----LPKH----L---PL----RADE--VRRF-SRASLQ------MV-GKAVRP---GVAEVECN-PRARS----AVMRVAER A0A1H5TW76/10-110_216-312 ---VLLQEAVEALAL----K-----P-------DGIYVDGTFGRGGHSRLILERLGKNGRLIAFDRDPVACAVGR----SF--GDE--------R----FCMVHSSYSRLQEVL-RQ-----L----NIGQ---IDGVLLDLGVSSPQLEEELERLSLALPQCVEMLKTGGRLVVISFHSLEDRIVKRFIR-------------EGANTDK----LPKH----L---PL----RADE--VRRF-SRASLQ------MV-GKAVRP---GVAEVECN-PRARS----AVMRVAER A0A0C5EAY1/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSKLGPDGQLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGSEV-AE-----R----GLDGK--VSGVLLDLGVSSPQLDDELGDLEAGLEAALESLEVGGRLVVISFHSLEDRIVKLFMR-------------KLVKGETD--NLPRN----L---PV----RFEA-------FVPKIK------IH-GKAQFA---SEAELKAN-PRARS----AVMRVAEK A0A0D5XUB3/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSKLGPDGQLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGSEV-AE-----R----GLDGK--VSGVLLDLGVSSPQLDDELGDLEAGLEAALESLEVGGRLVVISFHSLEDRIVKLFMR-------------KLVKGETD--NLPRN----L---PV----RFEA-------FVPKIK------IH-GKAQFA---SEAELKAN-PRARS----AVMRVAEK F9Y990/7-106_208-297 HVSVLIKPLVRAVAP----V-----Q-------G-VWVDGTFGAGGYTRDLLAAGADK--VIGIDRDPSVFPLSA----DWR-AAMPD------R----VDLRLGTFSEMDEIV-G-------------EM---VDGVVLDLGVSSMQID-QYRQLYDGLAAAERILKPGGYLAVVTFHSVEDRMVKRFMQ-------------LRAGAVG---GGSRY----A---PE----VQSA--------PPAFT------LVTRKAIQP---DDDEVAAN-PRSRS----ALLRV--- E3EZJ8/7-106_208-297 HVSVLIKPLVRAVAP----V-----Q-------G-VWVDGTFGAGGYTRDLLAAGADK--VIGIDRDPSVFPLSA----DWR-AAMPD------R----VDLRLGTFSEMDEIV-G-------------EM---VDGVVLDLGVSSMQID-QYRQLYDGLAAAERILKPGGYLAVVTFHSVEDRMVKRFMQ-------------LRAGAVG---GGSRY----A---PE----VQSA--------PPAFT------LVTRKAIQP---DDDEVAAN-PRSRS----ALLRV--- A0A1B1VP90/7-106_208-297 HVSVLIKPLVRAVAP----V-----Q-------G-VWVDGTFGAGGYTRDLLAAGADK--VIGIDRDPSVFPLSA----DWR-AAMPD------R----VDLRLGTFSEMDEIV-G-------------EM---VDGVVLDLGVSSMQID-QYRQLYDGLAAAERILKPGGYLAVVTFHSVEDRMVKRFMQ-------------LRAGAVG---GGSRY----A---PE----VQSA--------PPAFT------LVTRKAIQP---DDDEVAAN-PRSRS----ALLRV--- A0A0F4TDP4/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----TLAAEDG--------R----FVVVQRSFAELGSEV-AD-----R----GLAGK--VSGVLLDLGVSSPQLDDELGDLEAGLEAALECLEVGGRLVVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----RHVA-------FEPKIK------VH-GKAQTA---SDAELKAN-PRSRS----AVMRVAEK A0A078M186/11-114_218-312 ---VLLDEAVAALAV----R-----A-------NGRYLDGTFGRGGHSRLLLQQLGSDGQLLGFDKDPLAIATGQ----ALAADDG--------R----FVVVQRSFAELGDEV-AQ-----R----GWTGT--LDGILLDLGVSSPQLDDELGDLERGLEAALEALAVGGRLVVISFHSLEDRIVKQFMR-------------RHAKGEAD--TLPRD----L---PI----IPEK-------FIPRLK------LV-SKPQYA---SAEEVKAN-PRSRS----AVMRVAEK J3F1T7/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----TLAAEDG--------R----FVVVQRSFAELGSEV-AE-----R----GLAGK--VSGVLLDLGVSSPQLDDELGDLEAGLEAALECLEVGGRLVVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----RHVA-------FEPKIK------VH-GKAQTA---SDAELKAN-PRSRS----AVMRVAEK A0A1B8T3N3/15-116_226-320 ---VLLHEAVNGLAL----K-----E-------NGIYIDGTFGRGGHSRLILSQLSENGRLIAVDRDPRAIAEAE----KI--QDP--------R----FHIEHNSFSHIPDIC-QK-----L----DLVGR--IDGILLDLGVSSPQLDEELDELESVLNSALDMLAPEGRLSIISFHSLEDRMVKHFMR-------------KQSKGED----IPRG----L---PL----REDQ--IQ---RNQKLK------II-GKAIQP---SEVEISAN-PRSRS----AVLRIAER A0A0Q7BWR0/16-116_221-310 ---VLLNEAVDGVLA----R-----P-------DGVYVDGTFGRGGHSRALLAKLAPQGRLIGIDRDPEAVAAAA----AI--QDP--------R----FSICHSAFADMADQL-AG-----M----GVHQ---VDGVLLDLGVSSPQIDNELEELEQGLSAALRLLAPGGRLSIISFHSLEDRRVKQFIA-------------EHSK-AV----FDRR----A---P-----------FAPA-APLILN------AL-DR-IKP---SDAEVAAN-PRARS----AVLRIAER A0A0Q8HA47/16-116_221-310 ---VLLNEAVDGVLA----R-----P-------DGVYVDGTFGRGGHSRALLAKLAPQGRLIGIDRDPEAVAAAA----AI--QDP--------R----FSICHSAFADMADQL-AG-----M----GVHQ---VDGVLLDLGVSSPQIDNELEELEQGLSAALRLLAPGGRLSIISFHSLEDRRVKQFIA-------------EHSK-AV----FDRR----A---P-----------FAPA-APLILN------AL-DR-IKP---SDAEVAAN-PRARS----AVLRIAER W8KRR1/1-103_207-299 ----MLEEALAGLAV----Q-----E-------DGIYVDATFGRGGHSAAILERLGPEGRLIALDQDPQAQAVAS----RRFGDEP--------R----FQFLRGSFADLSALL-EG-----C----AVMGQ--VRGLLLDLGVSSPQLDDELESLDACLAQISRVLAPGGRLAVISFHSLEDRRVKRFIR-------------RQVEGEP----VPRD----L---PV----RDLP-------PGRTLR------HI-GKAQRA---GEAELAVN-PRARS----AVLRVAER A0A1J4Y6T6/7-112_218-310 HIPVLPSEFVCSFVD----N-----P-------DGQYVDATFGRGGHARLALEKLSPAGRLLALDRDPDAVAKGR----ELEMQDS--------R----FRILHLPFSSLGEAL----------INAGWQS---VDGIGFDLGVSSPQLDQEYDELKQALAQAADALKPGGKLAVISFHSGEDRRVRDQIE-------------AMVHPCT----CPPQ----F---PI--------C-VCG--KKPSMR------WLHKKPIRA---SDDELTVN-PRSRS----ALLRVAE- A0A1C3JT45/11-113_217-309 ---VMLNESVDMLVT----D-----T-------AGTYVDGTFGRGGHTRLVLSRLT-TGTMLGFDKDPVAIGHGK----ALEAEDE--------R----FTIVQDSFANMAEHI-QE-----VF---GTDK---VDGIMMDLGVSSPQLDDELGDLEEGLEAAAKALKVGGRLVVISFHSLEDRIVKQFMK-------------KMCKGPD----LPRH----L---PI----QNAH-------LKIHFK------TI-GKATKP---SKGEVDDN-VRSRS----AVLRVMER K2KBX4/11-113_217-311 ---VLLSEAVAALAI----K-----P-------DGCYLDATFGRGGHSRAVLEQLGKDGRLIALDRDPQAIAAAQ----AF-SHDP--------R----FAIFHRPFGELAKVI-DE-----Q----QLAGQ--FDGILFDLGVSSPQLDDELEQIEDALAASLTALKHDGRLVVISFHSLEDRIVKRFMR-------------QASQPKP----IPAG----L---PV----TDRE--LN---KDIQLQ------LL-SRAIKP---SDEEVEEN-PRARS----SVLRIARR Q2IYL6/8-112_215-303 HIPVLGPEAVTLLAP----R-----D-------GGIYLDGTFGAGGYSRLILEAAATR--VIAIDRDRSAIAGGF----DLV-QGAGG------R----LTLVEDRFSNLAEVC-AA-----Q----GAPA---VDGVVMDIGVSSMQVDQELDELYQALAAAERVLKPGGRLAVVTFHSLEDRIVKTFLA-------------ERSRVGG----GSRH----L---PE----LAQA--------APSFT------VLTKRPTTA---GDAEVAAN-PRARS----AKLR---- A0A148NBY1/9-113_217-308 ---VLLEEALTGLAI----Q-----E-------AGHYIDCTFGRGGHSRAILQRLGTEGRLLALDKDPQAVGSPQA---IALSSDP--------R----FILEQSDFSQLKEIV-SQ-----C----GWVGK--VQGILMDLGVSSPQLDDELESLEKGLAQAVEVLAPGGRLAVISFHSLEDRIVKQFFR-------------LESRGRP----LPKG----L---PV----PDSE-------TALRLK------LL-GK-KRP---DKTEVAAN-PRARS----AILRIAER A0A099KMW0/10-112_216-310 ---VLLNEAVDGLAI----E-----G-------DGCFIDCTFGRGGHSSLILSKLSADGRLIAIDRDLTAIEAAK----KF-KDDA--------R----FLIEHQGFAALADIV-EK-----H----QLTGK--VDGILLDLGVSSPQLDEELEQIEKVLAASLDVLAEGGRLVVISFHSLEDRLVKQFMK-------------KHSQGKK----VPRG----L---PI----SEAE--LN---KSKKLA------LI-GRKLKP---SKTEVEEN-VRSRS----SVLRIAER A0A154UE67/12-114_218-311 ---VLLHEAVDALAI----C-----E-------DGIYVDGTFGRGGHSRLILSRLGEQGRLVVFDKDPEAIAVAN----ELAAQDK--------R----VRVVHNGFETFQTAL-DE-----L----GIDK---IDGALFDLGISSPQIDDELEEVEAVLPQVAGHLKEGGRLAVIAFHSLEDRIVKQFIK-------------KYSQHAP----LPRW----A---VV----KEAD--L----PQPPLK------AV-GKAIKP---GSTETETN-PRARS----AVLRVAER A0A157ZRK6/10-110_218-310 ---VLLDEAVDALVT----R-----T-------DGIYIDGTFGRGGHSRAVLAKLADAGQLIAFDKDPLAIATAQ----QI--EDS--------R----FSIVHDSFAALRDAA-SE-----R----GVAR---VSGVLLDLGVSSPQVDDELAELQVVLEAALALLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----IDRR----L---PI----RAVD------LPSPPLR------IV-GR-VFA---SEAEVAAN-PRARS----AVMRVAER A0A1C7Z5R5/12-115_219-313 ---VLLEEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILQKLGPDGRLLGFDKDPQAIATGQ----SLAAEDG--------R----FVIVQRSFAELGSEA-QS-----R----GIEGK--VSGVLLDLGVSSPQLDDELGDLEAGLEAALDVLEIGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRD----L---PI----QFKA-------FDPKIK------IH-GKAQFA---SDVETKAN-PRSRS----AVMRVAEK A0A1J0AZ61/12-115_219-313 ---VLLEEAVSALAP----R-----E-------DGCYLDGTFGRGGHSRALLEKLGTGGRLLGFDKDPQAIQTGK----ALAAEDG--------R----FVIVQRSFAELGDEV-RA-----R----GLEGR--VDGVLLDLGVSSPQLDDELGDLERGLDAALESLAVGGRLVVISFHSLEDRIVKLFMR-------------KHAKGEAD--NLPRD----L---PI----RSKV-------FEPRLK------LL-GKPQYA---SEEELKAN-PRSRS----AVMRVAEK I3I4M6/9-112_216-308 ---VLLNEAVEALVT----D-----T-------SGFYVDGTFGRGGHSGLILQQLALDGRLLGIDKDLAAIATAN----ARFGSDA--------R----FAIAHGSFAELAALI-DE-----R----GMTGK--VTGVLLDLGVSSPQLDEELGDLESVLDQALTVLAPGGRLVVISFHSLEDRVVKRFIR-------------RQELGDP----VPKG----L---PI----RDDQ-------LNKRMR------SL-GKAIKA---SDAEVNAN-VRSRS----AVMRVAEK A0A1G0JDX6/11-114_218-310 ---VLLNEILQGLSI----R-----P-------DGCYVDCTFGRGGHSKAILKNLQERGRLIAFDKDPDAINAID----DLLLTDK--------R----FTLLHGSYSMLKEVA-AK-----N----NMLHQ--VDGILMDLGVSSPQLDNELDELKDTLAQTIDVLATGGKLVVISFHSLEDRIVKRFMR-------------DESRGDN----FPPE----L---PV----ATNL-------LKPRLK------LV-GKAIYP---SLQEIALN-ARARS----AVLRIAER A0A1F4FNB4/5-102_206-298 ---VLLAESITALAI----R-----P-------DGSYVDGTFGRGGHSRAILERLGPHGRLIALDRDPQAAEAAR----QW--ADA--------R----FSFFRVPFSRLSEAL-EG------------RK---ADGMLFDLGMSSPQLDDELEEVSLMLPHAVEHLAPGGRLAVISFHSLEDRIVKRFMY-------------GMARPE-----VPRR----L---PL----RASE--M----PEPVLK------LV-GRAQRP---SQEETTRN-PRARS----ATLRVAER A0A024HMU6/10-113_217-311 ---VLLEEAVEALNP----R-----A-------GGCYVDGTFGRGGHSRALLGKLDPGGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAEMGEEL-SE-----R----GLLGK--VDGVLLDLGVSSPQLDDELGDLEQGLDSALEALSVGGRLVVISFHSLEDRIVKQFMR-------------KHAKGEAD--NLPRD----L---PI----RAKV-------FEPRLK------LL-GKPQYA---SEAELKAN-PRSRS----AVMRVAEK D0I4Y1/10-111_218-314 ---VLLHESIDGLAL----K-----P-------DGIYVDGTFGRGGHTREILRRLGENGRLYSIDRDPQAIEEAG----KI--DDP--------R----FNIIHGPFSGIQQYM-EA-----R----GLSGK--IDGVLLDLGVSSPQLDDELEEIETAMQGALEVLAPGGRLSIISFHSLEDRLVKRFIR-------------KQSKGPD----VPHG----V---PL----TEEQ--IRAL-GQAKMK------PV-GKALKP---SDVEVSDN-TRSRS----SVLRVAEK A0A1K2HQ78/7-107_211-304 ---VLLTEAVDGLNL----Q-----P-------AGIYVDCTYGRGGHSRLILSRLGPTGRLIAFDRDPQAVADAK----TI--DDP--------R----FQIVHEGFSSFDSAL-DA-----L----GIAQ---VDGVLMDLGVSSPQIDEELEELALTLPQAFKRLRRGGRLSVIAFHSLEDRIVKRFMA-------------DAATADK----LPSR----L---PV----RAAD--I----GEAPLK------LV-GKPVRA---SKTEVDEN-PRARS----AILRIAER A0A127MGI2/9-109_210-301 HVPVLLAEVIDALAI----T-----P-------GETHVDGTFGAGGYSAAMLDAG-AI--VHAFDQDPAAIAAGQ----AMV-DASDG------K----LKLHHALYSEMADVL-ID------------ED---IDGVTLDIGVSSMQLDQELGELEDGLAAAEKLLQPGGRLAVVTFHSLEDRIVKNFLR-------------DRSGQKS---AGSRH----L---PQV--NETRP--------APTFH------KP-AKAVRP---AGAEQALN-PRARS----ATLRS--- Q604V0/1-104_208-298 ----MLSEVLEMLAV----R-----P-------DGIYVDCTFGRGGHSRAILERLGPEGRLLAIDRDLEAVAAAGA---TGLSADA--------R----FGIEHGRFSDVGRFV-GA-----R----GWTGR--VDGILMDLGVSSPQLDNELGQLQQGLNEAVEVLAAGGRLVVISFHSLEDRIVKRFMR-------------DEARGRE----MAGG----I---------FETR-------SCPRLA------VL-GKPLKA---GDDEIRIN-PRARS----ALLRAAEK Q21SW1/29-112_217-306 -------------------G-------------AQVYVDATFGRGGHSRLILSRMTPTDRLIAFDKDAEALVEAG----NI--HDS--------R----FSIRHQGFSHLDELP-PA-----S-----------VAGVLLDLGISSPQIDNELEELQQALAASLLVLAPGGRLVVISFHSLEDRIVKQFIA-------------QHSR-DV----YDRR----A---P-----------FAPP-KVMQLK------AL-AR-LRP---SAAEVSAN-PRARS----AIMRVAQR A0A072T5M2/10-110_215-304 ---VLLDEAVDALLD----GAAQ-PV-------AGQWVDATFGRGGHSRRILQRLGPGGTLLAFDKDPDAIEEAA----RI--TDA--------R----FSIRHEGFRHLGELP-AG-----S-----------VQGVLMDLGVSSPQIDNELEELEQALEASLRVLAPGGRLVVISFHSLEDRIVKQFIA-------------RHSK-EV----YDRR----A---P-----------FAAP-TPMRLE------AL-GR-IKP---SEAEVAAN-ARSRS----AVMRVARR S2XMK9/10-110_215-304 ---VLLDEAVDALLD----GAAQ-PV-------AGQWVDATFGRGGHSRRILQRLGPGGTLLAFDKDPDAIEEAA----RI--TDA--------R----FSIRHEGFRHLGELP-AG-----S-----------VQGVLMDLGVSSPQIDNELEELEQALEASLRVLAPGGRLVVISFHSLEDRIVKQFIA-------------RHSK-EV----YDRR----A---P-----------FAAP-TPMRLE------AL-GR-IKP---SEAEVAAN-ARSRS----AVMRVARR S2WI13/10-110_215-304 ---VLLDEAVDALLD----GAAQ-PV-------AGQWVDATFGRGGHSRRILQRLGPGGTLLAFDKDPDAIEEAA----RI--TDA--------R----FSIRHEGFRHLGELP-AG-----S-----------VQGVLMDLGVSSPQIDNELEELEQALEASLRVLAPGGRLVVISFHSLEDRIVKQFIA-------------RHSK-EV----YDRR----A---P-----------FAAP-TPMRLE------AL-GR-IKP---SEAEVAAN-ARSRS----AVMRVARR A0A151FXI8/6-110_213-304 HIPVLGREAVAHLAP----R-----E-------GGVYVDATFGAGGYSRAILEVPGTR--LIAIDRDRTAIAGGA----GLV-ERSAG------R----LMLVEGRFSDLAEVC-AA-----Q----GVEA---IDGVVMDVGVSSMQLDQELDELQAALAAAERMLKPGGRLVVVSFHSLEDRIVKNFLT-------------ERSRTGG----GSRH----L---PE----VAQV--------TPSFR------VLTRRPVVA---GEDEVAHN-PRARS----AKLRAAE- A4XQR6/11-114_218-312 ---VLLDEAVEGLAV----R-----A-------DGCYIDGTFGRGGHSRLILHKLGPGGRLLGFDKDPLAIATGE----ALAAEDG--------R----FVVVQRSFAELGDEA-VV-----R----GISGQ--VSGVLLDLGVSSPQLDDELGDLERGLDAALEALEVGGRLVVISFHSLEDRIVKQFMK-------------RQAKGEAD--KLPRD----L---PI----IPKA-------FEPRLK------LI-GKPVYA---GDAELKAN-PRSRS----AVMRIAEK M1L7I9/31-120_224-316 -------------------------D-------SGIFVDGTFGRGGHSMELLNNLDNNSKLFVFDKDPDAIKAAD----LLSLKDH--------R----VHVIHNSFVKMKEEL-LS-----R----NIDK---VDGIMLDLGVSSPQLDNELEELSLAFPSFIELLKPYGRLAVISFHSLEDRIVKRMIRS---------------------FESPSDFYSRL---PL----MENE--L----PKPIIR------SL-GR-IFP---ENSEILEN-KRSRS----ALLRIAER A0A0M1JB00/13-116_221-313 ---VMLSETIEHLKI----K-----K-------DGIYVDSTFGYGGHTKAILALLSAEGRVLAIDRDPDAINTGS----QLMHADS--------R----LELIHAEFSQLGELV-KS-----R----GITGK--VNGILFDLGVSSPQLDTELEELKLGLKFALDVLAMKGRLLTISFHSLEDRIVKQFFR-------------HSTRGDH----LPRS----V---PI----PFNQ-------TPPKLQ------LP-VSTVRP---SITEIKAN-PRARS----AVLRVAEK A0A0Q4KZ92/7-110_211-302 HIPVLIDEVIAGLSP----A-----P-------GEVHVDATFGAGGYTRAILATG-AT--VIAFDRDPDAVREGQ----DVV-SDANG------A----LTLVEAPFSAMVAEL-AS-----R----SFDA---VDGVTMDIGVSSMQLDRELDELADGLRAAEALLRPGGRLAVVSFHSLEDRIVKRFLR-------------ERSGGTP---AGSRH----L---PA---VQATN--------EPTFT------AL-SKAIRA---DEAELARN-PRARS----ATLRVA-- B7UZJ8/10-113_217-311 ---VLLEEAVSALAP----R-----E-------DGCYLDGTFGRGGHSRALLEKLGAGGRLLGFDKDPQAIQTGK----ALAAEDG--------R----FVIVQRSFAELGDEV-RA-----R----GLEGR--IDGVLLDLGVSSPQLDDELGDLERGLDAALESLAVGGRLVVISFHSLEDRIVKLFMR-------------KHAKGEAD--NLPRD----L---PI----RSKV-------FEPRLK------LL-GKPQYA---SEEELKAN-PRSRS----AVMRVAEK A0A0Q7AUR2/12-116_221-310 ---VLLNEAVDALVT----S-----P-------DGIYVDGTYGRGGHSRLLLSRLSPKGRLVAIDRDLDAIAAATSGETRV--TDP--------R----FSIHHTSFAHMVPTL-AA-----L----GIDK---VDGLLLDLGVSSPQIDDELEELEQGLSAAIDLLAPGGRLVVISFHSLEDRIVKTFIA-------------RESK-HV----FDRR----A---P-----------FAEP-KAMRLN------AL-GR-VKP---GDDEVRAN-PRARS----AVMRVAER A0A177J264/6-107_208-298 HIPVLLTEVLDALAI----T-----L-------GERHVDGTFGAGGYSSAMAAAG-AQ--VFAFDRDPDAIREGQ----AL--ADEKG-----------ITLIPGEFSRMEELL-AE-----R----GVSS---VSGITLDIGVSSMQLDRELEELERALEAAEALLEPGGRLAIVTFHSLEDRIVKQFLR-------------KRSGSEA---GGSRH----L---PE---RKAEV--------APAFE------KP-AKAVKP---GETELARN-PRARS----ATLRS--- Q2S9Y4/11-113_217-308 ---VLLAEAVEALGV----K-----A-------DGLYIDGTFGRGGHSAEILKALGPQGRLLGIDKDPRARRTAM----ERFSGDD--------R----FLFRQGSFADMASFV-SE-----L----QWPG---VDGVLLDLGVSSPQLDEELDDLAQGLEQAFGVLKPGGRLTVISFHSLEDRMVKQYMR-------------DIVRGPK----TPKW----L---PV----VDDA--------PPKAK------LV-GKKIRA---GETEVVAN-VRARS----AVMRVLEK A9KET2/7-110_214-305 ---VLFDEVMEGLAI----R-----P-------DGIYVDGTFGRGGHSFGILQRLGPNGRLMAMDKDPDAVAVAN----KALFEDA--------R----FSIVHETFANLQKAV-RD-----R----GWEGK--VNGILLDIGVSSPQLEDELDELRECLPQCLETLAVGGRLCVISFHSLEDRLVKRFIQ-------------KESRDH-----LPRE----I---PI----LAKD-------IKHRLK------PL-GSLIRP---TEAEIKKN-PRARS----ARLRIVEK C6DEV1/10-111_215-311 ---VLLDEAVNGLNI----R-----S-------GGIYIDGTFGRGGHSRLILSQLGPEGRLLAIDRDPQAIEAAK----AI--DDP--------R----FSIIHGPFSAMAEYV-AE-----L----GLTGQ--IDGVLLDLGVSSPQLDDELEEIERALEGALSVLAPQGRLSVISFHSLEDRIVKRFIR-------------HQSRGPQ----VPAG----L---PL----TEEQ--LRSQ-GGQTLK------AV-GKKLMP---SEAEVAEN-PRARS----SVLRFAER A0A0Q0BSP6/10-113_217-311 ---VLLEEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSET-QE-----R----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QYKP-------FEPKIK------IH-GKAQFA---SDVETKAN-PRSRS----AVMRVAEK A0A0Q0FXR6/10-113_217-311 ---VLLEEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGSET-QE-----R----GLAGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------KLAKGEAD--NMPRN----L---PI----QYKP-------FEPKIK------IH-GKAQFA---SDVETKAN-PRSRS----AVMRVAEK S2KTI4/18-119_223-316 ---VLLDGAVEALVH----D-----P-------AGAYLDGTFGRGGHSRAILERLAPKGRLLAVDRDPQALAEAR----TI--EDP--------R----FTIEQGEFARLGALA-ER-----H----GLHGR--LSGILLDIGVSSPQLDDELEQLDAALDAALEALAPGGHLVVISFHSLEDRRVKRFIR-------------DHVRGDM---HLPRG----I---PV----RDDQ-------IVRRLE------PM-GKAQRP---GSEEIDAN-PRARS----AVMRVARK A0A0B5CKP9/11-113_217-310 ---VLLHEAVDGLNV----V-----S-------DGVYVDGTFGRGGHSRLILSRLGEKGRLVVFDKDPQAIAVAH----ELAARDG--------R----VSVIHDGFSSFQTAL-DG-----L----GIGQ---IDGTLFDLGISSPQIDDELEEIAAVLPQAAGRLKSGGRLAVIAFHSLEDRIVKQFIK-------------RYSTHAP----LPKW----A---AV----READ--L----PQPPLK------SI-GKAIKA---SADEVAAN-PRARS----AVLRIAER M4WSC9/10-113_217-311 ---VLLEEAVDALAP----R-----D-------DGRYVDGTFGRGGHSRALLGRLGPGGQLLGFDKDPQAIATGK----ALAAEDG--------R----FVIVQRSFAEMADEF-TA-----R----GLQGS--VNGVLLDLGVSSPQLDDELGDLERGLDAALEGLAVGGRLVVISFHSLEDRIVKQFMR-------------KQVKGEAD--NLPRN----L---PI----QVKP-------FEPRLK------LL-GKPVYA---SEAELKAN-PRSRS----AVMRIAEK A0A0N2CWH4/15-116_226-320 ---VLLHETVDGLAL----K-----E-------NGIYIDGTFGRGGHSRLILSKLSANGKLIAIDRDPKAVAEAQ----KI--QDP--------R----FQIEHNTFSEILSIC-EK-----R----GLVGK--IDGILLDLGVSSPQLDDELDELEKVLQSALTVLAPAGRLSVISFHSLEDRMVKHFMR-------------KQSQGRE----IPKG----L---PL----REDQ--IQ---RNQTLK------VI-GKAIMP---TDAEIAQN-PRARS----AVLRVAER C6AKG2/15-116_226-320 ---VLLHETVDGLAL----K-----E-------NGIYIDGTFGRGGHSRLILSKLSANGKLIAIDRDPKAVAEAQ----KI--QDP--------R----FQIEHNTFSEILSIC-EK-----R----GLVGK--IDGILLDLGVSSPQLDDELDELEKVLQSALTVLAPAGRLSVISFHSLEDRMVKHFMR-------------KQSQGRE----IPKG----L---PL----REDQ--IQ---RNQTLK------VI-GKAIMP---TDAEIAQN-PRARS----AVLRVAER A0A062VBG2/15-118_222-264_285-314 HLPVMLAEVLTALAP----A-----D-------GDVIIDGTFGGGGYTTAILQAARCT--VLGIDRDLDAIVRAE----KMA-EVNP-------R----LVPLLGCFGDLDTLA-EQ-----A----GHSA---VDGVVLDIGVSSFQIDQELGELARGLRAAEHILKPGGRLVVVTFHSLEDRLVKQWMK-------------QKA-----------------------------------------FE------LQENKAVQP---SEKEVETN-PRARS----AKLRAA-- A0A090IHD8/10-113_218-312 ---VLLNETVAGLDL----K-----P-------DGIYIDGTFGRGGHSRFILSQLGENGRLIAIDRDPEAIAVGE----ALKLEDP--------R----FDIVHGPFSGIAEYM-EN-----K----ELTEQ--IDGVLLDLGVSSPQLDDELEEIERALAGALKCLKSGGRLSVISFHSLEDRIVKQFIR-------------KQARGKE----VPYG----L---PI----MQEE--ID---KTRTMK------AV-GKMLKP---SEQELEFN-PRARS----SVLRVAEK A0A1J6KM97/10-111_217-311 ---VLLHEAVDGLAI----K-----S-------NGIYIDGTFGRGGHSRLILSKLGEQGRLIAIDRDPRAIAEAN----TI--TDP--------R----FQIVHSAFSSIPDIC-DE-----L----NLVGK--IDGILLDLGVSSPQLDEELDELEKALNSALTVLAPEGRLSIISFHSLEDRMVKQFMR-------------KQSKGET----VPKG----L---PI----LESE--LN---KNIPLK------TV-GKAIMP---SEAEIEAN-PRSRS----AVLRVAEK A0A1E4IH80/9-109_214-303 ---VLLAEAVQALVT----Q-----P-------GGLYVDGTFGRGGHARALLARLSPAGRLIAFDRDPEAVAAAR----AI--DDP--------R----FVIVHASFAEMAQEL-SS-----R----GVLR---VHGVLLDLGVSSPQLDTELEALEQGLNAALALLAPGGRLVVISFHSLEDRIVKRFIA-------------RESR-EE----VDRR----V---P-----------MAPP-RALRLR------AL-AR-VRP---SDAERAAN-PRARS----AVMRVAER A0A1H2JVV3/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILQKLGPEGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAEMGSEI-AE-----R----GLAGK--VDGVLLDLGVSSPQLDDELGDLEAGLEAALESLAIGGRLVVISFHSLEDRIVKLFMR-------------KLVKGEPD--NLPRG----L---PV----QHVA-------FVPKIK------IH-GKAQTA---SEAELKAN-PRSRS----AVMRVAEK A0A177JSC0/12-115_219-313 ---VLLDEAVEALAL----R-----A-------DGCYLDGTFGRGGHSRLILSKLGPQGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGAEV-AE-----R----GLHGK--VSGVLLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLAVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----QHKA-------FEPKIK------LI-GKAQFA---SEAELKAN-PRSRS----AVMRVAEK A0A0N8HFD8/12-115_219-313 ---VLLDEAVEALAL----R-----A-------DGCYLDGTFGRGGHSRLILSKLGPQGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGAEV-AE-----R----GLHGK--VSGVLLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLAVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----QHKA-------FEPKIK------LI-GKAQFA---SEAELKAN-PRSRS----AVMRVAEK A0A1A9JKM9/12-115_219-313 ---VLLDEAVQALAV----R-----P-------DGCYLDGTFGRGGHSRLILSQLGPDGRLIGFDKDPQAIATGQ----TLAAEDG--------R----FVVVQRSFAELGSEV-AE-----R----GLAGK--VSGILLDLGVSSPQLDDELGDLETGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----RHVA-------FEPKIK------VH-GKAQTA---SDAELKAN-PRSRS----AVMRVAEK A0A0U3B3L3/10-112_216-310 ---VLLQESLQALAV----K-----P-------DGIYLDATFGRGGHSRALLQCLGEQGRLIALDRDPAAIEAAA----SL-ADDP--------R----FEIIHSPFSRLLSVT-DS-----L----EVTGK--LDGVLLDLGVSSPQLDDELDEVKQVLKAALAALRPGGRLAVISFHSLEDRLVKRFMR-------------EQSRGKQ----VPAG----F---PI----TEAE--LN---ASKAMK------LV-GKAIMP---SAAELEIN-NRARS----SVLRVAEK A0A073IHS7/9-107_211-302 HIPVLLRPILSAVAP----V-----E-------G-VWLDGTFGAGGYTRGFLDAGAER--VIAVDRDPLAFEMAK----PWA-GEYGD------R----LVMQHGVFSKMDEYA---------------QD---LDGVVLDLGVSSMQLDLEYGELWAGLMAAERALKPGGKLAVVTFHSVEDRMVKRFLT-------------ARAGAGG---NANRF----A---PQ----VEQE--------APQFV------IKSRKAIGP---DAQELEEN-PRSRS----AKLRVA-- V6F2M2/15-119_222-264_285-314 HIPVLLAEVVQALAP----Q-----D-------GDVMVDGTFGAGGYSLALLDRARIH--VFGIDRDPSAIAAGR----RLP-QAADG------R----LNVIEGRYGDMDLLL-PQ-----A----GITR---VDGIALDIGVSSMQIDQELGELERGLEAAERLLAPGGRLAVVTFHSLEDRVVKTFLK-------------KRS-----------------------------------------FS------LISRKATAP---SDAECRAN-PRARS----AKLRAA-- V5UD03/14-114_222-314 ---VLLEEAVDALLW----R--D----------DGVYVDGTFGRGGHSRRVLERLGAKGRLIAFDKDPQAIAEAA----KI--ADP--------R----FSIEHESFATLREAL-AR-----R----GIDK---VSGVLLDLGVSSPQIDDELADLQIALDVAADVLETGGRLVAISFHSLEDRIVKRFMQ-------------ARASAPA----VDRR----V---PL----RAHE------IPEPPFK------AS-RK-IKP---SAAEVEAN-PRARS----AIMRVMER A0A0T6URD4/12-115_219-313 ---VLLDEAVAALAV----R-----P-------DGRYLDGTFGRGGHSRLLLRQLGPEGCLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGEEV-AQ-----R----GWSGT--LSGILLDLGVSSPQLDDELGDLETGLEAALEALEVGGRLVVISFHSLEDRIVKQFMR-------------RHAKGEAD--TLPRD----L---PI----IPKA-------FVPRLK------LL-GKPQYA---SAEELKAN-PRSRS----AVMRVAEK S5XQH0/8-107_209-298 HIPVLLNPILRAVAP----V-----H-------G-IWADGTFGAGGYSRGLLDAGAAQ--VVGIDRDPSVFRMAE----SWS-GQYGD------R----LKLVEGTFSDLDRLA-G-------------EP---LDGVVLDLGVSSMQLD-QFGQLVAGLAAAERGLKEGGQLAVVTFHSLEDRIVKRFMQ-------------QRSNSAG---GGSRY----A---PV----AETA--------AAAFT------LPFRRAIGP---DDSELDVN-PRARS----ALLRV--- W0DXU0/10-112_216-308 ---VLLSESLVGLAI----K-----P-------DGFYVDGTFGRGGHSRALLAQLGPMGRLVAFDQDPEAVAYAKA---SI--DDP--------R----FEIVYSSFADLLSVA-DR-----A----GWTGK--VDGILLDLGVSSPQLDEELDALKQVLDASLAVLAPQGRLSVISFHSLEDRIVKQFMR-------------DQSQVKD----LFPD----L---PV----LVAT-------TEARLK------RI-GKAIFP---SEQECSQN-VRSRS----AVLRVAEK Q47VQ1/10-112_216-310 ---VLLNEAVDGLAI----T-----D-------DGCYIDCTFGRGGHSSVILSKLSDNGRLIAIDRDPTAITAAE----KF-KDDK--------R----FLIEHQGFAALAEIA-EK-----H----ELTGK--VDGILLDLGVSSPQLDEELDQIEKALVASLDVLAEGGRLVVISFHSLEDRLVKQFMK-------------KHSQGKK----VPRG----L---PI----SEIE--LN---KGKKLS------LV-GRRLKP---SQTEVEEN-VRSRS----SVLRVAER A0A0P7YXU9/7-110_211-301 HIPVLLDEVVAAIAP----R-----P-------GMTIIDATFGAGGYSAALLEAG-AS--VHAFDRDPDAIAAGQ----AMV-ARYDG------R----LALHPARFSQMRAEL-AA-----I----GVHQ---VDAVVMDIGVSSMQLDQELGELEAGLAAAEALLGEGGVLAVVAFHSLEDRIVKHFLR-------------TASGAGR---AVSRH----L---PG---EIPGP--------AATFT------RV-SKGIRP---SEAEIAGN-PRARS----STLRH--- A0A0W0VQM4/7-110_214-306 ---VLLQESLEALAI----E-----A-------SGIYVDGTFGRGGHSRAILGQLGQAGRLIAIDKDHDAVSYAK----ELFGQDP--------R----FAIHQGSFAEIGSIA-KQ-----E----DVVGK--VNGILLDLGVSSPQLDNELADLKRCLAQCIDILAPRGRLAVISFHSLEDRVVKQFMR-------------EKEQGGY----LPPD----V---PV----KSSE-------IKARFK------RV-GKAIKP---KYDEVMQN-VRARS----AVLRIGEK J2V7A1/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSQLGTDGRLIGFDKDPQAIATGQ----TLAAEDG--------R----FVVVQRSFAELGSVV-AE-----Q----GLSGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----RHVA-------FEPKIK------VH-GKAQTA---SDAELKAN-PRSRS----AVMRVAEK A0A0P6RYX6/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSQLGTDGRLIGFDKDPQAIATGQ----TLAAEDG--------R----FVVVQRSFAELGSVV-AE-----Q----GLSGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----RHVA-------FEPKIK------VH-GKAQTA---SDAELKAN-PRSRS----AVMRVAEK A0A0A6DGK2/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSQLGTDGRLIGFDKDPQAIATGQ----TLAAEDG--------R----FVVVQRSFAELGSVV-AE-----Q----GLSGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----RHVA-------FEPKIK------VH-GKAQTA---SDAELKAN-PRSRS----AVMRVAEK J2YXJ7/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSQLGTDGRLIGFDKDPQAIATGQ----TLAAEDG--------R----FVVVQRSFAELGSVV-AE-----Q----GLSGK--VSGILLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----RHVA-------FEPKIK------VH-GKAQTA---SDAELKAN-PRSRS----AVMRVAEK A0A0M1JG14/1-103_208-298 ----MVHEIIQHLNL----K-----N-------DGYYIDATFGRGGHTKAILQHLGTDGRVLALDRDPDAIAAGY----KLAQTDL--------R----FKLIHAEFSQLKTVV-KQ-----Y----NWMGK--IKGIIFDLGVSSPQLNTELEELKLGLEAALDILSIGGRLLVLSFHSLEDRIVKRFFR-------------NKTRGDN----LPRN----I---PI----QAAA---------PQLQ------LP-VSLLRP---SMTEIKMN-PRSRS----AILRVAEK A0A129BPR4/7-110_214-306 ---VLLHESIKGLAI----K-----A-------DGIYFDGTFGRGGHSREILNHLSDKGRLFAIDKDLDAVQYAK----DYFGLDK--------R----FQIFHGSFAQIKEFA-SQ-----A----GVIGA--VDGILLDLGVSSPQLDNELTDLSNCLEECLDVLGPRGRLAVISFHSLEDRIVKQFMR-------------DKEQGNR----PPVE----V---PI----KYEE-------LKTNFK------RV-GKAVKP---QSSEIKEN-VRSRS----AVLRIGEK A0A0H6D3V9/10-111_229-325 ---VLLNESIEGLAI----K-----P-------DGIYIDGTFGRGGHSRTILAQLGPEGRLYSIDRDPQAIAEAQ----KI--DDP--------R----FTIVHGPFSGIAEYA-QR-----Y----DLVGK--VDGVLFDLGVSSPQLDDELEEIDTALRGASDILAPQGRLSVISFHSLEDRMVKRFMR-------------KESQGPE----VPHG----L---PL----TQEQ--IRAL-GSAKMK------TV-GKALKP---SDQEVELN-PRSRS----SVLRVAEK A0A0W0LXL5/12-115_219-313 ---VLLDEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGPDGKLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGAEV-AE-----R----GMAGK--VAGVLLDLGVSSPQLDDELGDLEAGLEAALEALEVGGRLVVISFHSLEDRIVKLFMR-------------RLVKGESD--NLPRN----L---PV----RFEA-------FVPKIK------IH-GKAQFA---SEAELKAN-PRSRS----AVMRVAEK J8SFC5/2-107_213-302 ----LLEEVVAALNP----R-----G-------GDLIVDATLGAGGYTRRLLDEG-AT--VHAFDRDPDAIAAVQNN-PGKW-PELASNP---PR----LVLHARRFSEMVEGL-GD-----V----GVDK---VDGVVMDIGVSSMQLDQELDELDAALEASETLLQGGGRLAVVTFHSLEDRKVKRFLR-------------DASSAGQ---STSRH----L---PQ---TATAP--------AP-FE------KV-SKGVRP---GEAELEVN-PRSRS----ATLRS--- A8FQ92/11-113_217-311 ---VLLTETVAGLNI----K-----E-------DGIYIDGTFGRGGHSREVLKHLGENGRLIAIDRDPQAIAAAE----QF-ADDA--------R----FSIVHGGFGQLATYV-ED-----L----GLKGK--IDGVLLDFGVSSPQLDDELEQIDQALEGALSVLAPHGRLSVISFHSLEDRMVKRFIR-------------RHCQGES----VPHG----L---PI----TEAE--IN---KSRLLK------GI-GKAIKP---SEEEVERN-TRARS----SVLRIAER A0A1B8QXR4/15-116_226-320 ---VLLHEAVNGLVL----K-----E-------NGIYIDGTFGRGGHSRLILSQLSKNGRLIAVDRDPRAIAEAE----KI--QDP--------R----FHIEHNSFSHIPGIC-QK-----L----DLVGK--IDGILLDLGVSSPQLDEELDELESVLNSALDMLAPEGRLSIISFHSLEDRMVKHFMR-------------KQSKGED----IPRG----L---PL----REDQ--IQ---RNQKLK------II-GKAIQP---SEAEISAN-PRSRS----AVLRIAER A0A0S3EYF4/10-111_212-302 HIPVLIHEVLDALAI----N-----P-------GEQHVDGTFGAGGYSAAMAGKG-AQ--VFAFDRDPDAIREGQ----AL--ASEKG-----------IALIEGEFSRMEALL-AE-----R----GVTS---VSGITLDIGVSSMQLDRELEELERGLEAAEALLEEGGRLAVVTFHSLEDRIVKQFLR-------------QRSGSES---GGSRH----M---PE---RQVNE--------RPTFE------RP-AKAVRP---GQAELTRN-PRARS----ATLRS--- A0A176NQ71/12-115_219-313 ---VLLDEAVEALAV----R-----P-------DGCYLDGTFGRGGHSRLILSQLGPDGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGAEV-AE-----R----GLAGK--VSGVLLDLGVSSPQLDDELGDLEVGLEAALEALEIGGRLVVISFHSLEDRIVKLFMR-------------KLTKGEAD--NLPRN----L---PV----RFEA-------FVPKIK------IH-GKAQFA---SEAELKAN-PRARS----AVMRVAEK D2YMG4/10-111_219-315 ---VLLNESIEGLAI----K-----P-------DGIYIDGTFGRGGHSRTILAQLGPQGRLYSIDRDPQAIAEAQ----NI--DDP--------R----FTIIHGPFSGIAEYA-QR-----Y----DLVGK--VDGVLFDLGVSSPQLDDELEEIDTALRGASDILAPQGRLSVISFHSLEDRMVKRFMR-------------KESQGPE----VPHG----I---PL----TQDQ--IRAL-GSAKMK------TV-GKALKP---SDQEVELN-PRSRS----SVLRVAEK A0A085TM92/10-111_219-315 ---VLLNESIEGLAI----K-----P-------DGIYIDGTFGRGGHSRTILAQLGPQGRLYSIDRDPQAIAEAQ----NI--DDP--------R----FTIIHGPFSGIAEYA-QR-----Y----DLVGK--VDGVLFDLGVSSPQLDDELEEIDTALRGASDILAPQGRLSVISFHSLEDRMVKRFMR-------------KESQGPE----VPHG----I---PL----TQDQ--IRAL-GSAKMK------TV-GKALKP---SDQEVELN-PRSRS----SVLRVAEK A0A103BBT1/10-110_218-310 ---VLLDEAVESLVT----R-----P-------DGVYVDGTFGRGGHSRAVLARLAPAGRLIAFDKDPRAIETAQ----GI--EDA--------R----FSIVHDSFASMRDAL-AA-----R----GVEK---VSGVLLDLGVSSPQVDDELADLQVVLDAALSLLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLK------II-SR-QFP---SEAEVAAN-PRARS----AVMRIAER A0A1B4DLP3/10-110_218-310 ---VLLDEAVESLVT----R-----P-------DGVYVDGTFGRGGHSRAVLARLAPAGRLIAFDKDPRAIETAQ----GI--EDA--------R----FSIVHDSFASMRDAL-AA-----R----GVEK---VSGVLLDLGVSSPQVDDELADLQVVLDAALSLLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLK------II-SR-QFP---SEAEVAAN-PRARS----AVMRIAER A0A095E199/10-110_218-310 ---VLLDEAVESLVT----R-----P-------DGVYVDGTFGRGGHSRAVLARLAPAGRLIAFDKDPRAIETAQ----GI--EDA--------R----FSIVHDSFASMRDAL-AA-----R----GVEK---VSGVLLDLGVSSPQVDDELADLQVVLDAALSLLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLK------II-SR-QFP---SEAEVAAN-PRARS----AVMRIAER W1N6A9/18-119_223-316 ---VLLDGAVDTLIH----D-----A-------SGCYLDGTFGRGGHSRAILSQLAPQGRLIALDRDPEAIAEAQ----RI--DDA--------R----FSIIRAEFARLAEVA-RE-----Q----GVHGQ--LSGVLLDIGVSSPQLDDELDQLDAALDAALEALAPGGRLVVISFHSLEDRRVKRFIR-------------DHVRGDT---NVPRG----I---PL----RDDQ-------LQRRLE------PL-GKAMRA---SDAEVADN-PRARS----AVMRMARK W0SHJ5/9-109_213-306 ---VLLAEAVAGLAI----Q-----P-------AGTYVDATFGRGGHSRAILAALGPKGRLIALDRDPAAIAAGA----SI--SDP--------R----FTLVHAAFSEFDSVL-DK-----L----GVTQ---VDGVLLDIGVSSPQLNTELEELSLTLPRAVARLAPGGRLAVICFHSLEDRIVKRFMR-------------DAAHPPQ----PPKG----V---PV----RAAD--L----PQPVLK------LV-GKAMFP---SDAEIATN-PRCRS----AVLRVAQK S6EI82/15-116_226-320 ---VLLTEAVDGLAL----K-----E-------KGIYIDGTFGRGGHSRLILSRLAQDGRLIAIDRDPRAIAAAQ----QI--QDP--------R----FHIEHNSFSAIPEIC-EK-----L----GLVGK--IDGILLDLGVSSPQLDEELDELERALEGALQVLAPQGRLSIISFHSLEDRMVKHFMR-------------KQSKGES----LPKG----L---PL----REDQ--IQ---RSQTLK------TI-GKAIMP---TEQEIAQN-ARSRS----AVLRVAEK G8AFL6/19-123_227-269_291-321 HISVLLNEVVDALSP----R-----D-------GGVYVDGTFGAGGYSRAILDRADCR--VWGIDRDPEAIERGR----QLA-LAYPG------R----LEIVEGRFGDMDRLL-AG-----H----GVES---VDGVALDIGVSSPQIDEELGELRRGLAAAESLLKPGGRLAVVSFHSLEDREVKTFLK-------------ERS-----------------------------------------FR------LLSRKPIVP---TDQEAHSN-PRARS----ARLRAAE- A0A1D8S0Y3/10-112_216-310 ---VLLDEAVTGLAI----N-----P-------DGTYIDCTFGRGGHSALILSQLSENGRLIAIDRDLTAIKAAE----KF-ADDA--------R----FTIEHEGFADLQNIA-EK-----H----QLLGK--VDGILLDLGVSSPQLDEELEQIEKVLAASLSVLAENGRLVVISFHSLEDRLVKQFMK-------------KHSQGKK----VPRG----L---PI----SEAE--LN---KGKKLE------LV-GRRLKP---SESEVEEN-KRSRS----SVMRVAMR B0KFT4/12-115_219-313 ---VLLDEAVEALAL----R-----A-------DGCYLDGTFGRGGHSRLILSKLGPQGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGAEV-AE-----R----GLHGK--VSGVLLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLAVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----QHKV-------FEPKIK------LI-GKAQFA---SEAELKAN-PRSRS----AVMRVAEK A0A0Q4MVT2/12-115_219-313 ---VLLDEAVEALAL----R-----A-------DGCYLDGTFGRGGHSRLILSKLGPQGRLLGFDKDPQAIATGQ----ALAAEDG--------R----FVIVQRSFAELGAEV-AE-----R----GLHGK--VSGVLLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLAVISFHSLEDRIVKLFMR-------------KLVKGEAD--NLPRN----L---PV----QHKV-------FEPKIK------LI-GKAQFA---SEAELKAN-PRSRS----AVMRVAEK V7IES7/11-113_217-310 ---VLLREAVDALAV----K-----P-------DGVYVDGTFGRGGHSRLILSKLGANGRLVVFDKDPQAIAVAR----QLAETDK--------R----VQVVHGGFAGFQVAL-KE-----L----GIEA---VDGALFDLGVSSPQIDDELEEISAVLPQAAGYLKTGGRLAVIAFHSLEDRIVKQFIR-------------RHSRPAP----LPKW----V---MV----RESE--R----PEPPLR------EI-GKAQRA---SAAETAAN-PRARS----AVLRVAER D0WAV3/12-114_218-311 ---VLPYEAVDALAV----R-----E-------DGVYVDGTFGRGGHSRLILSRLGDAGRLVVFDKDPRAVAAAE----ELARSDK--------R----VSVVHGGFASFQTAL-DD-----L----GIGD---VDGALFDLGVSSPQIDDELEEVEAVLPQVMCRLKQGGRLAVIAFHSLEDRIVKQFVG-------------KYSRHAP----LPRW----A---AV----READ--L----PEPPLK------IV-GKALKP---GGAEVAAN-PRARS----AVLRVAER A0A104NSS3/10-110_218-310 ---VLLDEAVDALVT----R-----P-------DGTYVDGTFGRGGHSRAVLARLGAAGRLIAFDKDPRAIETAQ----GI--EDA--------R----FSIVHDSFASMQGAL-AA-----R----GVEK---VSGVLLDLGVSSPQVDDELADLQVVLDAALSLLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----IDRR----L---PI----RAVD------LPSPPLK------VI-GR-KFP---SDAEVAAN-PRARS----AVMRIAER A0A099RXI7/12-115_219-313 ---VLLDEAVAALAV----R-----P-------DGRYLDGTFGRGGHSRLLLEQLGSEGRLLGFDKDPIAIATGQ----ALAAEDG--------R----FVVVQRSFAELGDEV-AQ-----R----GWTGT--LSGILLDLGVSSPQLDDELGDLETGLDAALEALEVGGRLVVISFHSLEDRIVKQFMR-------------RHAKGEAD--QLPRG----L---PV----MPKP-------FEPRLK------LI-GKAQFA---SETEVRAN-PRSRS----AVMRVAEK Q3SMI1/8-108_212-305 ---VLAQEAVAALAI----K-----P-------EGVYVDATFGRGGHSRMILARLGTLGRLVALDRDPAAIAAGA----AL--DDP--------R----LTLRQSEFSRLGKVL-DA-----L----GIAR---VDGILLDIGVSSPQLDDELEELKAVLPQCVERLRAGGRLAVISFHSLEDRIVKRFLR-------------TESLGEQ----APPR----L---PI----PAAM--L----KAGRLR------LV-GRAQHA---SDAEVAAN-PRARS----AVLRVAER A0A103ZVG4/10-110_218-310 ---VLLDEAVESLVT----R-----P-------DGVYVDGTFGRGGHSRAVLARLAPAGRLIAFDKDPRAIETAQ----GI--EDA--------R----FSIVHDSFASMRDAL-AA-----R----GVEK---VSGVLLDLGVSSPQVDDELADLQVVLDAALSLLEQGGRLVVISFHSLEDRIVKRFMQ-------------AHASAPA----VDRR----L---PI----RAVD------LPSPPLR------II-SR-QFP---SEAEVAAN-PRARS----AVMRIAER F9ZQV9/11-120_225-314 HQPVLLAEVLAACTPLL-GQ-----PG------PRLWVDATGGRGGHSAALAHLLGAQDRLLVLDRDPGAIAFLR----TRFAEDE--------R----VSVRQAEFSRVAQVL-AE-----M----GTGQ---AQFILADLGVSSPQLDRELAEIRAFLPAAMDSLGPDGRLAVISFHSLEDRLVKRFFR-------------ADTRQPD----------PDL---PL----RNWE------IPEAPWF------PL-GRASRA---STEEVAHN-PRARS----ATLRVA-- A0A060A2L9/11-120_225-314 HQPVLLAEVLAACTPLL-GQ-----PG------PRLWVDATGGRGGHSAALAHLLGAQDRLLVLDRDPGAIAFLR----TRFAEDE--------R----VSVRQAEFSRVAQVL-AE-----M----GTGQ---AQFILADLGVSSPQLDRELAEIRAFLPAAMDSLGPDGRLAVISFHSLEDRLVKRFFR-------------ADTRQPD----------PDL---PL----RNWE------IPEAPWF------PL-GRASRA---STEEVAHN-PRARS----ATLRVA-- A0A096E1F2/10-110_215-304 ---VLLDEAVDALLG----GAAE-PP-------AGQWVDATFGRGGHSRLILQRLGPDGRLIAFDKDPDAIAEAA----RI--TDA--------R----FSIRHEGFRHLGELP-EG-----S-----------VQGVLMDLGVSSPQIDNELQELEQALEASLRVLAPGGRLAVISFHSLEDRIVKQFIA-------------KHSK-EV----YDRR----A---P-----------FAPP-TPMRLK------AL-ER-IKP---SAAEVDAN-PRSRS----AVMRVAER A0A0F3KIK3/11-113_217-310 ---VLLAEAVEALAI----K-----P-------DGVYVDCTFGRGGHSRLILSRLGPEGRLIAFDKDPEAIAEAE----RLAAEDS--------R----FTIVHNGFETLGQEL-AR-----L----GVAT---VNGVLMDLGVSSPQIDDELDELKAVLPQAARHLAEDGRLAIISFHSLEDRIVKQYLR-------------DASSVEK----LPSW----V---MV----RAED--M----AQPPLN------SV-GKAVRA---SEEEIREN-PRSRS----AIMRVAQR A0A1E4X485/12-115_219-313 ---VLLDEAVEALAV----R-----A-------DGCYLDGTFGRGGHSRLILSQLGPGGKLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGAEV-AE-----R----GMAGK--VAGVLLDLGVSSPQLDDELGDLEAGLEAALEALEVGGRLVVISFHSLEDRIVKLFMR-------------RLVKGESD--NLPRN----L---PV----RFEA-------FVPKIK------IH-GKAQFA---SEAELKAN-PRARS----AVMRVAEK A0A0X7K6I1/12-115_219-313 ---VLLDEAVEALAV----R-----A-------DGCYVDGTFGRGGHSRLILSQLGSDGKLLGFDKDPQAIATGQ----ALAAEDG--------R----FVVVQRSFAELGAEV-TE-----R----GMAGK--VAGVLLDLGVSSPQLDDELGDLEAGLEAALDALEVGGRLVVISFHSLEDRIVKLFMR-------------RLVKGETD--NLPRN----L---PV----RFEA-------FVPKIK------IH-GKAQFA---SEAELKAN-PRARS----AVMRVAEK A0A142LI20/9-113_217-310 ---VLLDEAVSALCI----R-----ESESRE--NGTYVDCTFGRGGHSRRILESLGGKGRLIAIDRDVAAIEACDI-------NDP--------R----FTLHHAPMSEISQVL-DE-----S----GVEK---VDGVLADLGVSSPQLDDELEEVETMLPQAVSRLAVGGRLVVISFHSLEDRIVKRFMQ-------------SASRKDS----LPSD----F---PI----RANE--I----DEATLV------PV-GRVVKA---SDAEVAAN-PRARS----AVMRVAER A8LSB5/12-111_215-305 HIPVLLEPILTRCAP----I-----T-------G-TWLDGTFGAGGYARGLLEAGADR--VIGVDQDPLALEMAA----DWA-GDYGD------R----LRLVAGNFEALDAHA-G-------------GP---LDGVVLDLGVSSMQLDRELGALVRGLEAAEGALEPGGWLAVVTFHSIEDRIVKRFFT-------------QASGGAG---RANRY----A---PE----TEDT--------PARFR------LEPRKAIAP---TEAEVAAN-PRARS----ARLRI--- U4RZC1/10-111_217-311 ---VLLHEAVDGLAI----K-----P-------NGIYVDGTFGRGGHSRLILSKLGEQGRLIAIDRDPRAIAEAN----TI--SDP--------R----FQIVHSAFSSIPDIC-DE-----L----NLVGK--IDGILLDLGVSSPQLDEELDELEKALNSALTVLAPEGRLSIISFHSLEDRMVKQFMR-------------KQSKGET----VPKG----L---PI----LESE--LN---KNIPLK------TV-GKAIMP---SEAEIEAN-PRSRS----AVLRVAEK A0A196QI34/14-112_216-307 HTPVLLRPILEAVAP----V-----E-------G-VWLDGTFGAGGYTRGFLDAGADK--VIAVDRDPLAFEMAA----DWA-GEYGD------R----LVMQRGVFSKMDEYA---------------SD---LDGVVLDLGVSSMQLDLEYGELFQGLMAAERALKPGGQLAVVTFHSVEDRMVKRFLT-------------ARSGGGG---NANRF----A---PE----MAQD--------APQFT------VKKRKAIGP---DAQELEEN-PRSRS----AKLRVA-- #=GC scorecons 000876475645743000040000040000000563668688868876746844543343655586873865364000034104630000000080000635454485363434033000003000053231006586669798885868588467434835733484478785877899899868848550000000000000434333200002342000030005200002222000000012325400000034056443600054484448078688000075685643 #=GC scorecons_70 ___***_*____*_________________________*****_*****_**________*___****_**_____________*_________*____*______*___________________________*_**********_***_**_**___*__*___*__****_*************_*_______________________________________________________________________*___*______*___*_*****____*_**_*__ #=GC scorecons_80 ___**__*____*_________________________*_***_***_*__*____________*_**_*________________________*___________*_____________________________*___*_****_*_*_**__*___*______*___***_**_*******_**_*__________________________________________________________________________________*___*_**_**____*__*____ #=GC scorecons_90 ___*__________________________________*_***_**_____*____________*_*__*____________________________________*_____________________________*___*_****_*_*_**______*______*___*_*_*__*******_**_*__________________________________________________________________________________*___*__*_**_______*____ //