All terms in GO

Label Id Description
diacetylchitobiose catabolic process to glucosamine and acetate GO_0052776 [The pathway resulting in the breakdown of diacetylchitobiose into simpler products, including glucosamine and glucosamine. The catabolism proceeds by the deacetylation of diacetylchitobiose, producing acetate and GlcN-GlcNAc; the latter is cleaved to produce glucosamine (GlcN) and N-acetylglucosamine (GlcNAc). The N-acetylglucosamine (GlcNAc) is then deacetylated to produce glucosamine (GlcN) and acetate.]
regulation of stress granule assembly GO_0062028 [Any process that modulates the rate, frequency or extent of stress granule assembly, the aggregation, arrangement and bonding together of proteins and RNA molecules to form a stress granule.]
positive regulation of SCF-dependent proteasomal ubiquitin-dependent catabolic process GO_0062027 [Any process that starts or increases the rate, frequency or extent of SCF-dependent proteasomal ubiquitin-dependent protein catabolic process, the chemical reactions and pathways resulting in the breakdown of a protein or peptide by hydrolysis of its peptide bonds, initiated by the covalent attachment of ubiquitin, with ubiquitin-protein ligation catalyzed by an SCF (Skp1/Cul1/F-box protein) complex, and mediated by the proteasome.]
regulation of SCF-dependent proteasomal ubiquitin-dependent protein catabolic process GO_0062025 [Any process that modualtes the rate, frequency or extent of SCF-dependent proteasomal ubiquitin-dependent protein catabolic process, the chemical reactions and pathways resulting in the breakdown of a protein or peptide by hydrolysis of its peptide bonds, initiated by the covalent attachment of ubiquitin, with ubiquitin-protein ligation catalyzed by an SCF (Skp1/Cul1/F-box protein) complex, and mediated by the proteasome.]
negative regulation of SCF-dependent proteasomal ubiquitin-dependent catabolic process GO_0062026 [Any process that stops or decreases the rate, frequency or extent of SCF-dependent proteasomal ubiquitin-dependent protein catabolic process, the chemical reactions and pathways resulting in the breakdown of a protein or peptide by hydrolysis of its peptide bonds, initiated by the covalent attachment of ubiquitin, with ubiquitin-protein ligation catalyzed by an SCF (Skp1/Cul1/F-box protein) complex, and mediated by the proteasome.]
positive regulation of stress granule assembly GO_0062029 [Any process that starts or increases the rate, frequency or extent of stress-granule assembly, the aggregation, arrangement and bonding together of proteins and RNA molecules to form a stress granule.]
obsolete mitotic cohesin ssDNA (lagging strand) loading GO_0062022 [OBSOLETE. The ATP-dependent protein localization to chromatin by which a cohesin ring complex is topologically linked to ssDNA (lagging strand) which is already linked to a dsDNA (leading strand) molecule as part of the mitotic cell cycle.]
obsolete mitotic cohesin dsDNA (leading strand) loading GO_0062021 [OBSOLETE. The protein localization to chromatin by which a cohesin ring complex is topologically linked to dsDNA (leading strand) as part of the mitotic cell cycle.]
positive regulation of pheromone response MAPK cascade GO_0062038 [Any process that activates or increases the frequency, rate or extent of a pheromone response MAPK cascade.]
sensory perception of hot stimulus GO_0062036 [The series of events required for an organism to receive a hot temperature stimulus, convert it to a molecular signal, and recognize and characterize the signal.]
filamentous growth MAPK cascade GO_0062031 [A MAPK cascade containing at least the Kss1 MAP kinase. It starts with the activation of Ste20, a MAP4K, which activates Ste11, a MAP3K, which in turn activate Ste7, a MAP2K, which activates Kss1. The kinases in each tier phosphorylate and activate the kinases in the downstream tier. The filamentous growth MAPK cascade is activated as a result of partial nutrient deprivation and results in filamentous growth.]
negative regulation of stress granule assembly GO_0062030 [Any process that stops or decreases the rate, frequency or extent of stress-granule assembly, the aggregation, arrangement and bonding together of proteins and RNA molecules to form a stress granule.]
sensory perception of cold stimulus GO_0062035 [The series of events required for an organism to receive a cold temperature stimulus, convert it to a molecular signal, and recognize and characterize the signal.]
L-pipecolic acid biosynthetic process GO_0062034 [The chemical reactions and pathways resulting in the formation of L-pipecolic acid, a metabolite of lysine.]
cichorine biosynthetic process GO_0062032 [The chemical reactions and pathways resulting in the formation of cichorine, a secondary metabolite found in some species of fungi.]
negative regulation of all-trans-retinyl-ester hydrolase, 11-cis retinol forming activity GO_0062003 [Any process that decreases the frequency or rate of all-trans-retinyl-ester hydrolase, 11-cis retinol forming activity.]
regulation of all-trans-retinyl-ester hydrolase, 11-cis retinol forming activity GO_0062002 [Any process that modulates the frequency or rate of all-trans-retinyl-ester hydrolase, 11-cis retinol forming activity.]
secondary palate development GO_0062009 [The biological process whose specific outcome is the progression of the secondary palate from an initial condition to its mature state. This process begins with the formation of the structure and ends with the mature structure. The secondary palate is the part of the palate formed from the fusion of the two palatine shelves, extensions of the maxillary prominences.]
(Z)-gamma-bisabolene synthase activity GO_0052683 [Catalysis of the reaction: 2-trans,6-trans-farnesyl diphosphate = (Z)-gamma-bisabolene + diphosphate.]
epi-cedrol synthase activity GO_0052682 [Catalysis of the reaction: 2-trans,6-trans-farnesyl diphosphate + H2O = epi-cedrol + diphosphate.]