All terms in GO

Label Id Description
NAD-dependent protein demyristoylase activity GO_0140773 [Catalysis of the reaction: N6-tetradecanoyl-L-lysyl-[protein] + NAD+ + H2O = tetradecanoyl-ADP-D-ribose + L-lysyl-[protein] + nicotinamide.]
CoA-dependent peptidyl-lysine N6-palmitoyltransferase activity GO_0140772 [Catalysis of the reaction: L-lysyl-[protein] + hexadecanoyl-CoA = CoA + H+ + N(6)-hexadecanoyl-L-lysyl-[protein].]
ACP-dependent peptidyl-lysine N6-palmitoyltransferase activity GO_0140771 [Catalysis of the reaction: hexadecanoyl-[ACP] + L-lysyl-[protein] = H+ + holo-[ACP] + N(6)-hexadecanoyl-L-lysyl-[protein].]
CoA-dependent peptidyl-lysine N6-myristoyltransferase activity GO_0140770 [Catalysis of the reaction: L-lysyl-[protein] + tetradecanoyl-CoA = CoA + H+ + N(6)-tetradecanoyl-L-lysyl-[protein].]
protein-containing complex stabilizing activity GO_0140777 [A molecular function that involves direct binding to one of the subunits of a protein-containing complex, thus preventing an interaction with a factor that would promote dissociation of the complex.]
actin filament debranching activity GO_0140775 [Binding to an actin filament and promoting the dissociation of an actin filament branch.]
NAD-dependent protein depalmitoylase activity GO_0140774 [Catalysis of the reaction: N6-octadecanoyl-L-lysyl-[protein] + NAD+ + H2O = octadecanoyl-ADP-D-ribose + L-lysyl-[protein] + nicotinamide.]
XCL1 production GO_0140779 [The appearance of XCL1 due to biosynthesis or secretion following a cellular stimulus, resulting in an increase in its intracellular or extracellular levels.]
microtubule stabilizing activity GO_0140778 [A protein-containing complex stabilizing activity that prevents dissociation of microtubules.]
glucose dehydrogenase (FAD, quinone) activity GO_0140762 [Catalysis of the reaction: a quinone + D-glucose = a quinol + D-glucono-1,5-lactone.]
calmodulin-activated 3',5'-cyclic-AMP phosphodiesterase activity GO_0140761 [Catalysis of the reactions: nucleoside 3',5'-cyclic AMP + H2O = AMP + H+; this activity is activated by binding to calcium-bound calmodulin.]
histone H3K56me2/H3K56me3 demethylase activity GO_0140760 [Catalysis of the removal of a methyl group from a tri or a dimethyl-lysine residue at position 56 of the histone H3 protein.]
histone H3K56 deacetylase activity, NAD-dependent GO_0140765 [Catalysis of the reaction: histone H3 N6-acetyl-L-lysine (position 56) + NAD+ + H2O = histone H3 L-lysine (position 56) + 2''-O-acetyl-ADP-D-ribose + nicotinamide. This reaction transfers an acetyl group attached to a lysine residue in H3K56 to NAD, producing nicotinamide.]
small RNA binding translational repressor activity GO_0140764 [A translational repressor activity that binds to a single-stranded small regulatory RNA (either a miRNA or a siRNA) to guide it to its target mRNA.]
programmed DNA elimination by elimination of internal DNA segments GO_0140763 [A programmed DNA elimination mechanism in which specific sequences, namely, internal eliminated sequences (IES) and breakage eliminated sequences (BES) are removed from the genome. This process is known to occur in ciliates.]
ACP-dependent peptidyl-lysine N6-myristoyltransferase activity GO_0140769 [Catalysis of the reaction: L-lysyl-[protein] + tetradecanoyl-[ACP] = H+ + holo-[ACP] + N(6)-tetradecanoyl-L-lysyl-[protein].]
protein ADP-ribosyltransferase-substrate adaptor activity GO_0140768 [An enzyme-substrate adaptor that bings together a protein ADP-ribosyl transferase and its substrate.]
histone octamer slider activity GO_0140751 [A chromatin remodeler activity that slides core histone octamers along chromosomal DNA.]
nucleosome array spacer activity GO_0140750 [A histone octamer slider activity that spaces nucleosomes along chromosomal DNA. This activity is involved in assembling chromatin in uniform nucleosome arrays to regulate transcription by RNA polymerases I, II, and III, as well as DNA replication, recombination and repair.]
reorganization of host cellular membranes to establish sites of replication GO_0140755 [A process in which a virus triggers host intracellular membranes to be reorganized, forming membranous webs, which are thought to be the site of replication or certain viruses, for example the HPV virus.]