All terms in GO

Label Id Description
4'-methoxyisoflavone 2'-hydroxylase activity GO_0047957 [Catalysis of the reaction: formononetin + NADPH + O2 = 2'-hydroxyformononetin + NADP+ + H2O.]
glycerol dehydrogenase (NADP+) activity GO_0047956 [Catalysis of the reaction: glycerol + NADP+ = D-glyceraldehyde + NADPH.]
glycine dehydrogenase (cytochrome) activity GO_0047959 [Catalysis of the reaction: glycine + H2O + 2 ferricytochrome c = glyoxylate + NH3 + 2 ferrocytochrome c.]
glycine:2-oxoglutarate aminotransferase activity GO_0047958 [Catalysis of the reaction: glycine + 2-oxoglutarate = glyoxylate + L-glutamate.]
glutathione thiolesterase activity GO_0047951 [Catalysis of the reaction: S-acylglutathione + H2O = a carboxylate + glutathione + H+.]
glutathione oxidase activity GO_0047950 [Catalysis of the reaction: 2 glutathione + O2 = glutathione disulfide + H2O2.]
glycerol 2-dehydrogenase (NADP+) activity GO_0047953 [Catalysis of the reaction: glycerol + NADP+ = glycerone + H+ + NADPH.]
glycerol-3-phosphate dehydrogenase [NAD(P)+] activity GO_0047952 [Catalysis of the reaction: sn-glycerol 3-phosphate + NAD(P)+ = glycerone phosphate + NAD(P)H + H+.]
glycerol dehydrogenase (acceptor) activity GO_0047955 [Catalysis of the reaction: A + glycerol = AH(2) + glycerone.]
glycerol-2-phosphatase activity GO_0047954 [Catalysis of the reaction: glycerol 2-phosphate + H2O = glycerol + phosphate.]
meiotic G2/MI DNA replication checkpoint signaling GO_0033315 [A signal transduction process that controls the G2/M1 transition of the meiotic cell cycle and prevents the initiation of nuclear division until DNA replication is complete.]
GO_0033318 GO_0033318
GO_0033317 GO_0033317
GO_0008383 GO_0008383
GO_0008382 GO_0008382
IkappaB kinase complex GO_0008385 [A trimeric protein complex that phosphorylates inhibitory-kappaB (I-kappaB) proteins. The complex is composed of two kinase subunits (alpha and beta) and a regulatory gamma subunit (also called NEMO). In a resting state, NF-kappaB dimers are bound to inhibitory IKB proteins, sequestering NF-kappaB in the cytoplasm. Phosphorylation of I-kappaB targets I-kappaB for ubiquitination and proteasomal degradation, thus releasing the NF-kappaB dimers, which can translocate to the nucleus to bind DNA and regulate transcription.]
regulation of collagen binding GO_0033341 [Any process that modulates the frequency, rate or extent of collagen binding.]
IkappaB kinase activity GO_0008384 [Catalysis of the reaction: ATP + IkappaB protein = ADP + IkappaB phosphoprotein.]
pelvic fin development GO_0033340 [The process whose specific outcome is the progression of the pelvic fin over time, from its formation to the mature structure.]
fin development GO_0033333 [The process whose specific outcome is the progression of a fin over time, from its formation to the mature structure.]