All terms in GO

Label Id Description
obsolete plasma kallikrein activity GO_0003807 [OBSOLETE. Catalysis of the selective cleavage of Arg-Xaa and Lys-Xaa bonds, including Lys-Arg and Arg-Ser bonds in (human) kininogen to release bradykinin.]
obsolete coagulation factor XIIa activity GO_0003806 [OBSOLETE. Catalysis of the selective cleavage of Arg-Ile bonds in factor VII to form factor VIIa and factor XI to form factor XIa.]
obsolete coagulation factor XIa activity GO_0003805 [OBSOLETE. Catalysis of the selective cleavage of Arg-Ala and Arg-Val bonds in factor IX to form factor IXa.]
obsolete coagulation factor Xa activity GO_0003804 [OBSOLETE. Catalysis of the preferential cleavage of Arg-Thr and then Arg-Ile bonds in prothrombin to form thrombin, and on factor VII, which it converts to a two-chain form (factor VIIa).]
obsolete coagulation factor IXa activity GO_0003803 [OBSOLETE. Catalysis of the selective cleavage of the Arg-Ile bond in factor X to form factor Xa.]
obsolete coagulation factor VIIa activity GO_0003802 [OBSOLETE. Catalysis of the selective cleavage of one Arg-Ile bond in factor X to form factor Xa, and on factor IX to form factor IXa beta.]
obsolete blood coagulation factor activity GO_0003801 [OBSOLETE. (Was not defined before being made obsolete).]
modified histidine catabolic process GO_0052702 [The chemical reactions and pathways resulting in the breakdown of compounds derived from histidine, 2-amino-3-(1H-imidazol-4-yl)propanoic acid.]
obsolete antiviral response protein activity GO_0003800 [OBSOLETE. A protein involved in an antiviral response.]
obsolete modified histidine metabolic process GO_0052701 [OBSOLETE. The chemical reactions and pathways involving compounds derived from histidine, 2-amino-3-(1H-imidazol-4-yl)propanoic acid.]
ergothioneine biosynthesis from histidine via gamma-glutamyl-hercynylcysteine sulfoxide GO_0052704 [The pathway resulting in the formation of ergothioneine from histidine via a set of steps in which gamma-glutamyl-hercynylcysteine sulfoxide is formed as an intermediate.]
ergothioneine catabolic process GO_0052700 [The chemical reactions and pathways resulting in the breakdown of ergothioneine, a naturally occurring metabolite of histidine with antioxidant properties.]
ergothioneine metabolic process GO_0052698 [The chemical reactions and pathways involving ergothioneine, a naturally occurring metabolite of histidine with antioxidant properties.]
obsolete N-alpha,N-alpha,N-alpha-trimethyl-L-histidine biosynthetic process GO_0052709 [OBSOLETE. The chemical reactions and pathways resulting in the formation of N-alpha,N-alpha,N-alpha-trimethyl-L-histidine, also known as histidine betaine or hercynine, a trimethylated derivative of histidine.]
L-histidine N(alpha)-methyltransferase activity GO_0052706 [Catalysis of the reaction: L-histidine + 3 S-adenosyl-L-methionine <=> 3 H(+) + hercynine + 3 S-adenosyl-L-homocysteine. This reaction is the addition of three methyl groups to L-histidine to form N-alpha,N-alpha,N-alpha-trimethyl-L-histidine (also known as hercynine).]
obsolete methylhistidine N-methyltransferase activity GO_0052705 [OBSOLETE. Catalysis of the reaction: S-adenosyl-L-methionine + N-alpha-methyl-L-histidine = S-adenosyl-L-homocysteine + N-alpha,N-alpha-dimethyl-L-histidine.]
obsolete N-alpha,N-alpha,N-alpha-trimethyl-L-histidine metabolic process GO_0052708 [OBSOLETE. The chemical reactions and pathways involving N-alpha,N-alpha,N-alpha-trimethyl-L-histidine, also known as histidine betaine or hercynine, a trimethylated derivative of histidine.]
obsolete N-alpha,N-alpha,N-alpha-trimethyl-L-histidine biosynthesis from histidine GO_0052707 [OBSOLETE. The pathway resulting in the formation of N-alpha,N-alpha,N-alpha-trimethyl-L-histidine from histidine. Histidine undergoes three methylations by a histidine-alpha-N-methyltransferase (EC:2.1.1.44) to form N-alpha,N-alpha,N-alpha-trimethyl-L-histidine (also known as hercynine or histidine betaine).]
inositol phosphorylceramide phospholipase activity GO_0052713 [Catalysis of the reaction: inositol phosphorylceramide + H2O = C26-phytoceramide + phosphorylinositol.]
inositol phosphosphingolipid phospholipase activity GO_0052712 [Catalysis of the reaction: inositol phosphosphingolipid + H2O = sphingolipid + phosphorylinositol.]