All terms in GO

Label Id Description
GO_0102077 GO_0102077
beta,beta-carotene-9',10'-cleaving oxygenase activity GO_0102076 [Catalysis of the reaction: beta-carotene + O2 = 10'-apo-beta-carotenal + beta-ionone.]
obsolete OPC4-trans-2-enoyl-CoA hydratase activity GO_0102075 [OBSOLETE. Catalysis of the reaction: OPC4-3-hydroxyacyl-CoA = OPC4-trans-2-enoyl-CoA + H2O.]
ribonuclease U2 activity GO_0033899 [Catalysis of the two-stage endonucleolytic cleavage to nucleoside 3'-phosphates and 3'-phosphooligonucleotides ending in Ap or Gp with 2',3'-cyclic phosphate intermediates.]
ABC-type bacteriocin transporter activity GO_0043214 [Enables the transfer of a bacteriocin from one side of a membrane to the other according to the reaction: ATP + H2O = ADP + phosphate.]
ABC-type xenobiotic transporter activity GO_0008559 [Catalysis of the reaction: ATP + H2O + xenobiotic(in) = ADP + phosphate + xenobiotic(out).]
bacteriocin transport GO_0043213 [The directed movement of a bacteriocin into, out of or within a cell, or between cells, by means of some agent such as a transporter or pore. Bacteriocins are a group of antibiotics produced by bacteria and are encoded by a group of naturally occurring plasmids, e.g. Col E1. Bacteriocins are toxic to bacteria closely related to the bacteriocin producing strain.]
obsolete Bacillus subtilis ribonuclease activity GO_0033898 [OBSOLETE. Catalysis of the endonucleolytic cleavage to 2',3'-cyclic nucleotides.]
obsolete carbohydrate-exporting ABC transporter activity GO_0043212 [OBSOLETE. Enables the transfer of a solute or solutes from one side of a membrane to the other according to the reaction: ATP + H2O + carbohydrate(in) -> ADP + phosphate + carbohydrate(out).]
molybdenum incorporation into metallo-sulfur cluster GO_0018289 [The incorporation of molybdenum into a metallo-sulfur cluster.]
obsolete iron incorporation into iron-sulfur cluster via tetrakis-L-cysteinyl tetrairon tetrasulfide GO_0018288 [OBSOLETE. The incorporation of iron into a 4Fe-4S iron-sulfur cluster via tetrakis-L-cysteinyl tetrairon tetrasulfide.]
obsolete iron incorporation into iron-sulfur cluster via tris-L-cysteinyl triiron tetrasulfide GO_0018287 [OBSOLETE. The incorporation of iron into a 3Fe-4S iron-sulfur cluster via tris-L-cysteinyl triiron tetrasulfide.]
obsolete iron incorporation into iron-sulfur cluster via hexakis-L-cysteinyl triiron trisulfide GO_0018286 [OBSOLETE. The incorporation of iron into a 3Fe-3S iron-sulfur cluster via hexakis-L-cysteinyl triiron trisulfide. The three-iron three-sulfur cluster probably does not exist except as an intermediate form.]
obsolete iron incorporation into iron-sulfur cluster via tetrakis-L-cysteinyl diiron disulfide GO_0018285 [OBSOLETE. The incorporation of iron into a 2Fe-2S iron-sulfur cluster via tetrakis-L-cysteinyl diiron disulfide.]
obsolete iron incorporation into protein via tetrakis-L-cysteinyl iron GO_0018284 [OBSOLETE. The incorporation of iron into a protein via tetrakis-L-cysteinyl iron (there is no exogenous sulfur, so this modification by itself does not produce an iron-sulfur protein).]
obsolete protein-FAD linkage via S-(8alpha-FAD)-L-cysteine GO_0018294 [OBSOLETE. The formation of a protein-FAD linkage via S-(8-alpha-FAD)-L-cysteine.]
protein-FAD linkage GO_0018293 [The formation of a linkage between a protein amino acid and flavin-adenine dinucleotide (FAD).]
obsolete molybdenum incorporation via L-cysteinyl molybdopterin GO_0018292 [OBSOLETE. The incorporation of molybdenum into a protein via L-cysteinyl molybdopterin.]
molybdenum incorporation into iron-sulfur cluster GO_0018291 [The incorporation of molybdenum into an iron-sulfur cluster.]
obsolete iron and molybdenum incorporation into iron-molybdenum-sulfur cluster via L-cysteinyl homocitryl molybdenum-heptairon-nonasulfide GO_0018290 [OBSOLETE. The incorporation of iron and molybdenum into a Mo-7Fe-8S iron-molybdenum-sulfur cluster via L-cysteinyl homocitryl molybdenum-heptairon-nonasulfide, found in nitrogenase.]