The name of this superfamily has been modified since the most recent official CATH+ release (v4_2_0). At the point of the last release, this superfamily was named:

"
Ribonucleotide Reductase, subunit A
".

Functional Families

Overview of the Structural Clusters (SC) and Functional Families within this CATH Superfamily. Clusters with a representative structure are represented by a filled circle.
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FunFam 103: Phenol hydroxylase subunit P3

There are 2 EC terms in this cluster

Please note: EC annotations are assigned to the full protein sequence rather than individual protein domains. Since a given protein can contain multiple domains, it is possible that some of the annotations below come from additional domains that occur in the same protein, but have been classified elsewhere in CATH.

Note: The search results have been sorted with the annotations that are found most frequently at the top of the list. The results can be filtered by typing text into the search box at the top of the table.

EC Term Annotations Evidence
Phenol 2-monooxygenase (NADPH). [EC: 1.14.13.7]
Phenol + NADPH + O(2) = catechol + NADP(+) + H(2)O.
  • The enzyme from the fungus Trichosporon cutaneum has a broad substrate specificity, and has been reported to catalyze the hydroxylation of a variety of substituted phenols, such as fluoro-, chloro-, amino- and methyl-phenols and also dihydroxybenzenes.
  • Cf. EC 1.14.14.20.
48 A0A022GPZ7 A0A024HF44 A0A063BI05 A0A063Y8J7 A0A069PHD0 A0A077KB45 A0A081G3K0 A0A090BAH2 A0A095VU31 A0A0A8TKI6
(38 more...)
Methane monooxygenase (soluble). [EC: 1.14.13.25]
Methane + NAD(P)H + O(2) = methanol + NAD(P)(+) + H(2)O.
  • The enzyme is soluble, in contrast to the particulate enzyme, EC 1.14.18.3.
  • Broad specificity; many alkanes can be hydroxylated, and alkenes are converted into the corresponding epoxides; CO is oxidized to CO(2), ammonia is oxidized to hydroxylamine, and some aromatic compounds and cyclic alkanes can also be hydroxylated, but more slowly.
4 A0A0P7Z4V5 A0A132HMK5 L2EJR5 Q1LMG3
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