All terms in GO
| Label | Id | Description |
|---|---|---|
| photoreceptor cell fate commitment | GO_0046552 | [The process in which the developmental fate of a cell becomes restricted such that it will develop into a photoreceptor cell. A photoreceptor cell is a cell that responds to incident electromagnetic radiation. Different classes of photoreceptor have different spectral sensitivities and express different photosensitive pigments.] |
| chorismate synthase activity | GO_0004107 | [Catalysis of the reaction: 5-O-(1-carboxyvinyl)-3-phosphoshikimate = chorismate + phosphate.] |
| photoreceptor cell fate specification | GO_0043704 | [The process in which a cell becomes capable of differentiating autonomously into a photoreceptor cell in an environment that is neutral with respect to the developmental pathway. Upon specification, the cell fate can be reversed.] |
| citrate (Si)-synthase activity | GO_0004108 | [Catalysis of the reaction: acetyl-CoA + H2O + oxaloacetate = citrate + CoA, where the acetyl group is added to the si-face of oxaloacetate; acetyl-CoA thus provides the two carbon atoms of the pro-S carboxymethyl group.] |
| citrate synthase activity | GO_0036440 | [Catalysis of the reaction: acetyl-CoA + H2O + oxaloacetate = citrate + CoA.] |
| cyanophycin metabolic process | GO_0043705 | [The chemical reactions and pathways involving cyanophycin, a non-protein, non-ribosomally produced amino acid polymer composed of an aspartic acid backbone and arginine side groups.] |
| coproporphyrinogen oxidase activity | GO_0004109 | [Catalysis of the reaction: coproporphyrinogen III + 2 H(+) + O(2) = 2 CO(2) + 2 H(2)O + protoporphyrinogen IX.] |
| heterophilic cell adhesion involved in cytoadherence to microvasculature, mediated by parasite protein | GO_0043706 | [The attachment of an erythrocyte to the microvasculature via a parasite cell adhesion molecule. This may be via attachment to host endothelial cell ECM or to endothelial cell adhesion molecules. An example of this occurs during infection with the malaria parasite.] |
| 2'-hydroxybiphenyl-2-sulfinate desulfinase activity | GO_0018740 | [Catalysis of the reaction: 2'-hydroxybiphenyl-2-sulfinate + H(2)O = biphenyl-2-ol + sulfite.] |
| alkyl sulfatase activity | GO_0018741 | [Catalysis of the reaction: dodecyl sulfate + H2O = sulfate + H+ + 1-dodecanol.] |
| epoxide hydrolase B activity | GO_0018742 | [Catalysis of the hydrolysis of the ether in chloro- or hydroxyepoxypropane to produce chloropropane diol or glycerol. Acts on R enantiomers.] |
| phenanthrene-9,10-epoxide hydrolase (9R,10R-forming) activity | GO_0018743 | [Catalysis of the reaction: phenanthrene-9,10-oxide + H2O = trans-9R,10R-dihydrodiolphenanthrene.] |
| limonene-1,2-epoxide hydrolase activity | GO_0018744 | [Catalysis of the reaction: limonene-1,2-epoxide + H2O = limonene-1,2-diol. Other substrates include alicyclic and 1-methyl-substituted epoxides, such as 1-methylcyclohexene oxide, indene oxide and cyclohexene oxide.] |
| epoxide hydrolase A activity | GO_0018745 | [Catalysis of the hydrolysis of the ether in chloro-, bromo- or hydroxyepoxypropane to produce a chloro- or bromopropane diol or glycerol.] |
| phenanthrene-3,4-epoxide hydrolase activity | GO_0018746 | [Catalysis of the reaction: phenanthrene-3,4-oxide + H2O = trans-3,4-dihydrodiolphenanthrene.] |
| phenanthrene-1,2-epoxide hydrolase activity | GO_0018747 | [Catalysis of the reaction: phenanthrene-1,2-oxide + H2O = trans-1,2-dihydrodiolphenanthrene.] |
| iprodione amidohydrolase activity | GO_0018748 | [Catalysis of the reaction: iprodione + OH- = 3,5-dichlorophenylcarboximide + N-isopropylcarbamate.] |
| (3,5-dichlorophenylurea)acetate amidohydrolase activity | GO_0018749 | [Catalysis of the reaction: (3,5-dichlorophenylurea)acetate + OH- = 3,5-dichloroaniline + N-carboxyglycine.] |
| corticosteroid side-chain-isomerase activity | GO_0004110 | [Catalysis of the reaction: 11-deoxycorticosterone = 20-hydroxy-3-oxopregn-4-en-21-al.] |
| creatine kinase activity | GO_0004111 | [Catalysis of the reaction: ATP + creatine = N-phosphocreatine + ADP + 2 H(+).] |