All terms in GO
| Label | Id | Description |
|---|---|---|
| toluene dioxygenase activity | GO_0018624 | [Catalysis of the reaction: H(+) + NADH + O(2) + toluene = (1S,2R)-3-methylcyclohexa-3,5-diene-1,2-diol + NAD(+).] |
| naphthalene 1,2-dioxygenase activity | GO_0018625 | [Catalysis of the reaction: naphthalene + NADH + H+ + O2 = (1R,2S)-1,2-dihydronaphthalene-1,2-diol + NAD+.] |
| 2-chlorobenzoate 1,2-dioxygenase activity | GO_0018626 | [Catalysis of the reaction: 2-chlorobenzoate + NADH + H+ + O2 = catechol + chloride + NAD+ + CO2.] |
| 2-aminobenzenesulfonate 2,3-dioxygenase activity | GO_0018627 | [Catalysis of the reaction: 2-aminobenzenesulfonate + 2 H(+) + NADH + O(2) = 2,3-dihydroxybenzenesulfonate + NAD(+) + NH(4)(+). 2,3-dihydroxybenzenesulfonate is also known as 3-sulfocatechol.] |
| terephthalate 1,2-dioxygenase activity | GO_0018628 | [Catalysis of the reaction: H(+) + NADH + O(2) + terephthalate = (3S,4R)-3,4-dihydroxycyclohexa-1,5-diene-1,4-dicarboxylate + NAD(+).] |
| 2-hydroxyquinoline 5,6-dioxygenase activity | GO_0018629 | [Catalysis of the reaction: quinolin-2-ol + NADH + H+ + O2 = 2,5,6-trihydroxy-5,6-dihydroquinoline + NAD+.] |
| 3,5-xylenol methylhydroxylase activity | GO_0018630 | [Catalysis of the reaction: 3-hydroxytoluene + NADH + O2 = NAD+ + OH- + 3-hydroxybenzyl alcohol.] |
| phenylacetate hydroxylase activity | GO_0018631 | [Catalysis of the reaction: phenylacetate + NADH + O2 = NAD+ + OH- + 2-hydroxyphenylacetate.] |
| 4-nitrophenol 4-monooxygenase activity | GO_0018632 | [Catalysis of the reaction: p-nitrophenol + O2 + NADPH = H2O + NADP+ + nitrite + p-benzoquinone.] |
| dimethyl sulfide monooxygenase activity | GO_0018633 | [Catalysis of the reaction: dimethyl sulfide + NADH + O2 = NAD+ + OH- + methanethiol + formaldehyde.] |
| alpha-pinene monooxygenase [NADH] activity | GO_0018634 | [Catalysis of the reaction: alpha-pinene + NADH + H+ + O2 = NAD+ + H2O + alpha-pinene oxide.] |
| (R)-limonene 1,2-monooxygenase activity | GO_0018635 | [Catalysis of the reaction: (4R)-limonene + NAD(P)H + H+ + O2 = NAD(P)+ + H2O + (4R)-limonene-1,2-epoxide.] |
| phenanthrene 9,10-monooxygenase activity | GO_0018636 | [Catalysis of the reaction: phenanthrene + O2 + NADH + H+ = H2O + NAD+ + phenanthrene-9,10-oxide.] |
| 1-hydroxy-2-naphthoate hydroxylase activity | GO_0018637 | [Catalysis of the reaction: 1-hydroxy-2-naphthoate + O2 + NADPH + 2 H+ = NADP+ + H2O + CO2 + 1,2-dihydroxynaphthalene.] |
| toluene 4-monooxygenase activity | GO_0018638 | [Catalysis of the reaction: toluene + 1/2 O2 = 4-hydroxytoluene.] |
| xylene monooxygenase activity | GO_0018639 | [Catalysis of the reactions: toluene + 1/2 O2 = benzyl alcohol, and xylene + 1/2 O2 = methylbenzyl alcohol.] |
| formamide catabolic process | GO_0043608 | [The chemical reactions and pathways resulting in the breakdown of formamide, the simplest amide, HCONH2, derived from formic acid.] |
| regulation of carbon utilization | GO_0043609 | [Any process that modulates the frequency, rate, or extent of carbon utilization.] |
| carbon utilization | GO_0015976 | [A series of processes that forms an integrated mechanism by which a cell or an organism detects the depletion of primary carbon sources and then activates genes to scavenge the last traces of the primary carbon source and to transport and metabolize alternative carbon sources such as carbon dioxide or carbonic acid. The utilization process begins when the cell or organism detects carbon levels, includes the activation of genes whose products detect, transport or metabolize carbon-containing substances, and ends when carbon is incorporated into the cell or organism's metabolism.] |
| adenosine deaminase activity | GO_0004000 | [Catalysis of the reaction: adenosine + H2O = inosine + NH3.] |