All terms in GO

Label Id Description
magnesium-dependent protein serine/threonine phosphatase complex GO_0005963 [An intracellular enzyme complex that catalyzes the removal of serine- or threonine-bound phosphate groups from a wide range of phosphoproteins, including a number of enzymes that have been phosphorylated under the action of a kinase.]
phosphorylase kinase complex GO_0005964 [An enzyme complex that catalyzes the phosphorylation of phosphorylase b to form phosphorylase a.]
protein farnesyltransferase complex GO_0005965 [A protein complex that possesses protein farnesyltransferase activity.]
obsolete cyclic-nucleotide phosphodiesterase complex GO_0005966 [OBSOLETE. An enzyme complex that catalyzes the hydrolysis of bonds in a cyclic nucleotide.]
obsolete mitochondrial pyruvate dehydrogenase complex GO_0005967 [OBSOLETE. A mitochondrial complex that carries out the oxidative decarboxylation of pyruvate to form acetyl-CoA in eukaryotes; includes subunits possessing three catalytic activities: pyruvate dehydrogenase (E1), dihydrolipoamide S-acetyltransferase (E2), and dihydrolipoamide dehydrogenase (E3). The This Eukaryotic form usually contains more subunits than its bacterial counterpart; for example, one known complex contains 30 E1 dimers, 60 E2 monomers, and 6 E3 dimers as well as a few copies of pyruvate dehydrogenase kinase and pyruvate dehydrogenase phosphatase.]
Rab-protein geranylgeranyltransferase complex GO_0005968 [An protein-containing complex which catalyzes of the transfer of a geranyl-geranyl group from geranylgeranyl pyrophosphate to a Rab protein. In mammals it is composed of an alpha and a beta subunit, and associates with an accessory protein Rep (Rab escort protein).]
serine-pyruvate aminotransferase complex GO_0005969 [A protein homodimeric complex that catalyzes the formation of hydroxypyruvate and alanine from serine and pyruvate.]
notochord development GO_0030903 [The process whose specific outcome is the progression of the notochord over time, from its formation to the mature structure. The notochord is a mesoderm-derived structure located ventral of the developing nerve cord. In vertebrates, the notochord serves as a core around which other mesodermal cells form the vertebrae. In the most primitive chordates, which lack vertebrae, the notochord persists as a substitute for a vertebral column.]
retromer complex GO_0030904 [A conserved hetero-pentameric membrane-associated complex involved in retrograde transport from endosomes to the Golgi apparatus. The budding yeast retromer comprises Vps35p, Vps29p, Vps26p, Vps5p, and Vps17p. The mammalian complex shows slight variation in composition compared to yeast, and comprises SNX1 or SNX2, SNX5 or SNX6, VPS26A or VPS26B, VPS29, and VPS35.]
retromer, tubulation complex GO_0030905 [The dimeric subcomplex of the retromer, believed to be peripherally associated with the membrane. This dimeric complex is responsible for remodeling endosomal membranes to form a tube-structure to which cargo molecules are selected for recycling. The budding yeast complex comprises Vps5p and Vps17p, and may contain multiple copies of a Vps5p/Vps17p dimer. The mammalian complex contains SNX1 or SNX2 dimerized with SNX5 or SNX6.]
retromer, cargo-selective complex GO_0030906 [The trimeric subcomplex of the retromer, believed to be closely associated with the membrane. This trimeric complex is responsible for recognizing and binding to cargo molecules. The complex comprises three Vps proteins in both yeast and mammalian cells: Vps35p, Vps29p, and Vps26p in yeast, and VPS35, VPS29 and VPS26A or VPS26B in mammals.]
MBF transcription complex GO_0030907 [A protein complex that binds to the Mlu1 cell cycle box (MCB) promoter element, consensus sequence ACGCGN, and is involved in regulation of transcription during the G1/S transition of the cell cycle. In Saccharomyces, the complex contains a heterodimer of the DNA binding protein Mbp1p and the activator Swi6p, and is associated with additional proteins known as Nrm1p, Msa1p, and Msa2p; in Schizosaccharomyces the complex contains Res1p, Res2p, and Cdc10p.]
protein splicing GO_0030908 [The post-translational removal of peptide sequences from within a protein sequence.]
non-intein-mediated protein splicing GO_0030909 [The post-translational removal of peptide sequences from within a protein sequence, by a process not involving inteins.]
forebrain development GO_0030900 [The process whose specific outcome is the progression of the forebrain over time, from its formation to the mature structure. The forebrain is the anterior of the three primary divisions of the developing chordate brain or the corresponding part of the adult brain (in vertebrates, includes especially the cerebral hemispheres, the thalamus, and the hypothalamus and especially in higher vertebrates is the main control center for sensory and associative information processing, visceral functions, and voluntary motor functions).]
midbrain development GO_0030901 [The process whose specific outcome is the progression of the midbrain over time, from its formation to the mature structure. The midbrain is the middle division of the three primary divisions of the developing chordate brain or the corresponding part of the adult brain (in vertebrates, includes a ventral part containing the cerebral peduncles and a dorsal tectum containing the corpora quadrigemina and that surrounds the aqueduct of Sylvius connecting the third and fourth ventricles).]
hindbrain development GO_0030902 [The process whose specific outcome is the progression of the hindbrain over time, from its formation to the mature structure. The hindbrain is the posterior of the three primary divisions of the developing chordate brain, or the corresponding part of the adult brain (in vertebrates, includes the cerebellum, pons, and medulla oblongata and controls the autonomic functions and equilibrium).]
obsolete shamixanthone metabolic process GO_1900791 [OBSOLETE. The chemical reactions and pathways involving shamixanthone.]
shamixanthone catabolic process GO_1900792 [The chemical reactions and pathways resulting in the breakdown of shamixanthone.]
shamixanthone biosynthetic process GO_1900793 [The chemical reactions and pathways resulting in the formation of shamixanthone.]