S100 Family: 3.40.50.80.7.1.1.1

Molscript image for 1f20A01
Representative domain: 1f20A01
PDB coordinates for domain 1f20A01

Classification Lineage (3.40.50.80.7.1.1.1)

CATH CodeLevel DescriptionLinks
3 Alpha Beta
3.40 3-Layer(aba) Sandwich
3.40.50 Rossmann fold
3.40.50.80 Nucleotide-binding domain of ferredoxin-NADP reductase (FNR) module Gene3D
3.40.50.80.7
3.40.50.80.7.1
3.40.50.80.7.1.1
3.40.50.80.7.1.1.1

Summary of Non-Redundant Representatives

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S100 Count Entries in S100 Family 3.40.50.80.7.1.1.1 (3)

CATH Level CATH code Domain ID Keywords Thumbnail
3.40.50.80.7.1.1.1.1 1f20A01 flavin adenine dinucleotide binding, regulation of sensory perception of pain, response to ethanol, response to vitamin E, mitochondrial outer membrane, cytosol, response to organic nitrogen, positive regulation of vasodilation, aging, response to hypoxia, perinuclear region of cytoplasm, Nitric-oxide synthase., response to estrogen stimulus, response to heat, synapse, negative regulation of blood pressure, heme binding, Nitric oxide synthase, brain, Rattus norvegicus, sarcolemma, nitric-oxide synthase activity, arginine catabolic process, negative regulation of insulin secretion, azurophil granule, enzyme binding, nuclear membrane, response to organic cyclic substance, negative regulation of heart contraction, nitric oxide biosynthetic process, FMN binding, protein homodimerization activity, calmodulin binding, photoreceptor inner segment, cadmium ion binding, amino acid binding, NADP or NADPH binding Molscript image for 1f20A01
3.40.50.80.7.1.1.1.2 1tllA04 response to hypoxia, aging, perinuclear region of cytoplasm, flavin adenine dinucleotide binding, regulation of sensory perception of pain, response to ethanol, response to vitamin E, mitochondrial outer membrane, response to organic nitrogen, cytosol, positive regulation of vasodilation, heme binding, Nitric oxide synthase, brain, Rattus norvegicus, sarcolemma, response to estrogen stimulus, response to heat, Nitric-oxide synthase., synapse, negative regulation of blood pressure, azurophil granule, nitric-oxide synthase activity, arginine catabolic process, negative regulation of insulin secretion, photoreceptor inner segment, NADP or NADPH binding, amino acid binding, cadmium ion binding, enzyme binding, nuclear membrane, response to organic cyclic substance, negative regulation of heart contraction, FMN binding, nitric oxide biosynthetic process, calmodulin binding, protein homodimerization activity Molscript image for 1tllA04
3.40.50.80.7.1.1.1.3 1tllB04 synapse, negative regulation of blood pressure, Nitric-oxide synthase., response to estrogen stimulus, response to heat, Nitric oxide synthase, brain, Rattus norvegicus, sarcolemma, heme binding, mitochondrial outer membrane, response to vitamin E, cytosol, positive regulation of vasodilation, response to organic nitrogen, regulation of sensory perception of pain, flavin adenine dinucleotide binding, response to ethanol, perinuclear region of cytoplasm, aging, response to hypoxia, nitric oxide biosynthetic process, FMN binding, protein homodimerization activity, calmodulin binding, response to organic cyclic substance, nuclear membrane, enzyme binding, negative regulation of heart contraction, photoreceptor inner segment, cadmium ion binding, NADP or NADPH binding, amino acid binding, arginine catabolic process, negative regulation of insulin secretion, nitric-oxide synthase activity, azurophil granule Molscript image for 1tllB04

The information on Functional Families (FunFams) is currently being updated and will be released by the end of March 2012. The pages will include the following features:
  • Multiple alignments for each functional family
  • Representative structure for each functional with known catalytic and interface residues highlighted, along with conserved residues predicted by scorecons
  • Detailed functional information on diversity and conservation within Functional families
  • Multi-domain architectures
In the meantime, please find a summary of information on the FunFams and protein networks within this superfamily on the Gene3D pages: