All terms in GO

Label Id Description
neuromuscular junction of somatic muscle myotube GO_0098524 [A neuromuscular junction in which the target muscle cell is a somatic muscle myotube, such as an arthropod somatic muscle cell.]
neuromuscular junction of somatic muscle GO_0098527 [A neuromuscular junction in which the target muscle cell is a somatic muscle cell, such as those found in nematodes and arthropods.]
4-hydroxyphenylpyruvate decarboxylase activity GO_0050546 [Catalysis of the reaction: (4-hydroxyphenyl)pyruvate + H+ = (4-hydroxyphenyl)acetaldehyde + CO2.]
excitatory neuromuscular junction of somatic myotube GO_0098525 [A neuromuscular junction that functions in the excitation of somatic muscle myotubes, such as an arthropod somatic muscle cells.]
feruloyl-CoA hydratase/lyase activity GO_0050547 [Catalysis of the reaction: (E)-feruloyl-CoA + H2O = acetyl-CoA + vanillin.]
inhibitory neuromuscular junction of somatic myotube GO_0098526 [A neuromuscular junction that functions in the inhibition of somatic muscle myotube contraction. Examples of somatic muscle myotubes include the somatic muscle cells of arthropods.]
obsolete trans-feruloyl-CoA hydratase activity GO_0050548 [OBSOLETE. Catalysis of the reaction: trans-feruloyl-CoA + H2O = 4-hydroxy-3-methoxyphenyl-beta-hydroxypropionyl-CoA.]
beta,beta-carotene-9',10'-dioxygenase activity GO_0050541 [Catalysis of the reaction: beta-carotene + O2 = beta-apo-10'-carotenal + beta-ionone.]
neuromuscular junction development, skeletal muscle fiber GO_0098529 [A process that is carried out at the cellular level which results in the assembly, arrangement of constituent parts, or disassembly of a neuromuscular junction that targets a skeletal muscle fiber.]
neuromuscular junction development GO_0007528 [A process that is carried out at the cellular level which results in the assembly, arrangement of constituent parts, or disassembly of a neuromuscular junction.]
icosatetraenoic acid binding GO_0050543 [Binding to icosatetraenoic acid, any straight-chain fatty acid with twenty carbon atoms and four double bonds per molecule.]
arachidonate binding GO_0050544 [Binding to arachidonic acid, a straight chain fatty acid with 20 carbon atoms and four double bonds per molecule. Arachidonic acid is the all-Z-(5,8,11,14)-isomer.]
cyclohexyl-isocyanide hydratase activity GO_0050549 [Catalysis of the reaction: N-cyclohexylformamide + H+ = cyclohexyl isocyanide + H2O.]
pinene synthase activity GO_0050550 [Catalysis of the reaction: geranyl diphosphate = pinene + diphosphate. This reaction can produce (1R,5R)-alpha-pinene, (1S,5S)-alpha-pinene, (1R,5R)-beta-pinene and (1S,5S)-beta-pinene.]
myrcene synthase activity GO_0050551 [Catalysis of the reaction: geranyl diphosphate = diphosphate + myrcene.]
positive regulation of strand invasion GO_0098530 [Any process that increases the rate, frequency or extent of strand invasion. Strand invasion is the process in which the nucleoprotein complex (composed of the broken single-strand DNA and the recombinase) searches and identifies a region of homology in intact duplex DNA. The broken single-strand DNA displaces the like strand and forms Watson-Crick base pairs with its complement, forming a duplex in which each strand is from one of the two recombining DNA molecules.]
obsolete histone H3-K27 trimethylation GO_0098532 [OBSOLETE. The modification of histone H3 by addition of three methyl groups to lysine at position 27 of the histone.]
ATPase dependent transmembrane transport complex GO_0098533 [A transmembrane protein complex that functions in ATPase dependent active transport across a membrane.]
deacetylisoipecoside synthase activity GO_0050556 [Catalysis of the reaction: deacetylisoipecoside + H2O = dopamine + secologanin.]
de novo centriole assembly involved in multi-ciliated epithelial cell differentiation GO_0098535 [Centriole assembly in which a centriole arises de novo by a process involving an electron-dense structure known as a deuterosome, rather than by duplication of an existing centriole, and occurring as part of multi-ciliated epithelial cell differentiation.]