All terms in GO

Label Id Description
phenanthrene catabolic process via trans-9(R),10(R)-dihydrodiolphenanthrene GO_0018956 [The chemical reactions and pathways resulting in the breakdown of phenanthrene, a tricyclic aromatic hydrocarbon, where trans-9(R),10(R)-dihydrodiolphenanthrene is the principal intermediate metabolite.]
phenanthrene catabolic process GO_0042216 [The chemical reactions and pathways resulting in the breakdown of phenanthrene, a tricyclic aromatic hydrocarbon.]
obsolete UDP-alpha-D-glucose:glucosyl-glycogenin alpha-D-glucosyltransferase activity GO_0102751 [OBSOLETE. Catalysis of the reaction: UDP-alpha-D-glucose + a glucosyl-glycogenin = (1,4-alpha-D-glucosyl)n-glucosyl glucogenin + UDP + H+.]
phenanthrene catabolic process via trans-9(S),10(S)-dihydrodiolphenanthrene GO_0018957 [The chemical reactions and pathways resulting in the breakdown of phenanthrene, a tricyclic aromatic hydrocarbon, where trans-9(S),10(S)-dihydrodiolphenanthrene is the principal intermediate metabolite.]
obsolete 1,4-alpha-glucan branching enzyme activity (using a glucosylated glycogenin as primer for glycogen synthesis) GO_0102752 [OBSOLETE. Catalysis of the reaction: a glucosylated glycogenin = a glycogen.]
obsolete chlorophyllide b:geranyl-geranyl diphosphate geranyl-geranyltransferase activity GO_0102753 [OBSOLETE. Catalysis of the reaction: H+ + chlorophyllide b(1-) + 2-trans,6-trans,10-trans-geranylgeranyl diphosphate = geranylgeranyl-chlorophyll b + diphosphoric acid.]
obsolete aerobic phenol-containing compound metabolic process GO_0018959 [OBSOLETE. The chemical reactions and pathways involving a phenol, any compound containing one or more hydroxyl groups directly attached to an aromatic carbon ring, in the presence of oxygen.]
obsolete exonucleolytic nuclear-transcribed mRNA catabolic process involved in endonucleolytic cleavage-dependent decay GO_0043927 [OBSOLETE. The chemical reactions and pathways resulting in the breakdown of the transcript body of a nuclear-transcribed mRNA that occurs when the ends are not protected by the 5'-cap.]
obsolete exonucleolytic catabolism of deadenylated mRNA GO_0043928 [OBSOLETE. The chemical reactions and pathways resulting in the breakdown of the transcript body of a nuclear-transcribed mRNA that occurs when the ends are not protected by the 3'-poly(A) tail.]
primary ovarian follicle growth involved in double layer follicle stage GO_0043929 [Increase in size of primary follicles including oocyte growth and granulosa and/or theca cell proliferation until more than one layer of granulosa cells is present (preantral follicle), as part of the double layer follicle stage of oogenesis.]
primary ovarian follicle growth GO_0001545 [Increase in size of primary follicles including oocyte growth and granulosa and/or theca cell proliferation until more than one layer of granulosa cells is present (preantral follicle).]
obsolete oleoyl-[acyl-carrier-protein] hydrolase activity GO_0004320 [OBSOLETE. Catalysis of the reaction: (9Z)-octadecenoyl-[ACP] + H2O = (9Z)-octadecenoate + H+ + holo-[ACP].]
fatty-acyl-CoA synthase activity GO_0004321 [Catalysis of the reaction: acetyl-CoA + n malonyl-CoA + 2n NADH + 2n NADPH + 4n H+ = a long-chain acyl-CoA + n CoA + n CO2 + 2n NAD+ + 2n NADP+.]
C-acyltransferase activity GO_0016408 [Catalysis of the transfer of an acyl group to a carbon atom on the acceptor molecule.]
ferroxidase activity GO_0004322 [Catalysis of the reaction: 4 Fe2+ + 4 H+ + O2 = 4 Fe3+ + 2 H2O.]
oxidoreductase activity, acting on metal ions, oxygen as acceptor GO_0016724 [Catalysis of an oxidation-reduction in which the oxidation state of metal ion is altered and oxygen acts as an electron acceptor.]
aminopropylagmatine ureohydrolase activity GO_0043920 [Catalysis of the reaction: N1-aminopropylagmatine + H2O = spermidine + urea.]
obsolete multicopper ferroxidase iron transport mediator activity GO_0004323 [OBSOLETE. Catalysis of the reaction: 4 Fe2+ + 4 H+ + O2 = 4 Fe3+ + 2 H2O.]
host-mediated perturbation of viral transcription GO_0043921 [A process in which a host organism alters or subverts viral transcription.]
ferredoxin-NADP+ reductase activity GO_0004324 [Catalysis of the reaction: 2 reduced [2Fe-2S]-[ferredoxin] + NADP+ + H+ = 2 oxidized [2Fe-2S]-[ferredoxin] + NADPH.]