All terms in GO

Label Id Description
obsolete perillic acid-CoA ligase (ADP-forming) activity GO_0052685 [OBSOLETE. Catalysis of the reaction: perillic acid + CoA-SH + ATP = H2O + ADP + phosphate + perillyl-CoA.]
L-serine hydro-lyase (adding indole, L-tryptophan-forming) activity GO_0052684 [Catalysis of the reaction: indole + L-serine = L-tryptophan + H2O.]
alpha-bisabolene synthase activity GO_0052681 [Catalysis of the reaction: 2-trans,6-trans-farnesyl diphosphate = (E,R)-alpha-bisabolene + diphosphate.]
epi-isozizaene synthase activity GO_0052680 [Catalysis of the reaction: 2-trans,6-trans-farnesyl diphosphate = (+)-epi-isozizaene + diphosphate.]
(3R)-3-isopropenyl-6-oxoheptanoate:CoA ligase (ADP-forming) activity GO_0052687 [Catalysis of the reaction: (3R)-3-isopropenyl-6-oxoheptanoate + CoA-SH + ATP = H2O + ADP + phosphate + (3R)-3-isopropenyl-6-oxoheptanoyl-CoA.]
perillic acid-CoA ligase (AMP-forming) activity GO_0052686 [Catalysis of the reaction: perillic acid + CoA-SH + ATP = H2O + AMP + diphosphate + perillyl-CoA.]
(3R)-3-isopropenyl-6-oxoheptanoate:CoA ligase (AMP-forming) activity GO_0052688 [Catalysis of the reaction: (3R)-3-isopropenyl-6-oxoheptanoate + CoA-SH + ATP = H2O + AMP + diphosphate + (3R)-3-isopropenyl-6-oxoheptanoyl-CoA.]
negative regulation of cardiac endothelial to mesenchymal transition GO_0062001 [Any process that stops, prevents, or reduces the frequency, rate or extent of cardiac endothelial to mesenchymal transition.]
positive regulation of cardiac endothelial to mesenchymal transition GO_0062000 [Any process that activates or increases the frequency, rate or extent of cardiac endothelial to mesenchymal trnasition.]
jasmonoyl-isoleucine-12-hydroxylase activity GO_0052694 [Catalysis of the reaction: jasmonoyl-isoleucine + NADPH + H+ + O2 = 12-hydroxy-jasmonoyl-isoleucine + NADP+ + H2O.]
epoxyqueuosine reductase activity GO_0052693 [Catalysis of the reaction: epoxyqueuosine in tRNA + reductant = queuosine in tRNA + oxidised reductant.]
flavonoid glucuronidation GO_0052696 [The modification of a flavonoid by the conjugation of glucuronic acid. The resultant flavonoid glucuronosides are often much more water-soluble than the precursor.]
trichloro-p-hydroquinone reductive dehalogenase activity GO_0052690 [Catalysis of the reaction: 2,3,6-trichlorohydroquinone + 2 glutathione = 2,6-dichlorohydroquinone + glutathione disulfide + HCl.]
raffinose alpha-galactosidase activity GO_0052692 [Catalysis of the reaction: raffinose + H2O = alpha-D-galactose + sucrose.]
UDP-arabinopyranose mutase activity GO_0052691 [Catalysis of the reaction: UDP-beta-L-arabinofuranose = UDP-beta-L-arabinopyranose.]
xenobiotic glucuronidation GO_0052697 [The modification of a xenobiotic substance by the conjugation of glucuronic acid. The resultant glucuronosides are often much more water-soluble than the xenobiotic precursor, enabling efficient excretion.]
mitochondrial respiratory chain complex IV pre-assembly complex GO_0062011 [A protein complex that contributes to and regulates mitochondrial respiratory chain complex IV (COX) formation. It acts by regulating mitochondrial COX1 translation and by promoting the assembly of COX components.]
primitive palate development GO_0062010 [The biological process whose specific outcome is the progression of the primitive palate from an initial condition to its mature state. This process begins with the formation of the structure and ends with the mature structure.]
P-type calcium transporter activity involved in regulation of cardiac muscle cell membrane potential GO_0086039 [A calcium-transporting P-type ATPase activity involved in regulation of the plasma membrane potential.]
calcium:sodium antiporter activity involved in regulation of cardiac muscle cell membrane potential GO_0086038 [Enables the transfer of a solute or solutes from one side of a membrane to the other according to the reaction: Ca2+(in) + Na+(out) = Ca2+(out) + Na+(in), which contributes to regulating the membrane potential of a cardiac muscle cell.]