All terms in GO

Label Id Description
formaldehyde assimilation via ribulose monophosphate cycle GO_0019647 [The pathway in which formaldehyde is used as a carbon source in the ribulose monophosphate cycle. Methanotrophic bacteria produce formaldehyde from the oxidation of methane and methanol, and then assimilate it via the ribulose monophosphate cycle to form intermediates of the central metabolic routes that are subsequently used for biosynthesis of cell material. Three molecules of formaldehyde are assimilated, forming a three-carbon intermediate of central metabolism; in this pathway, all cellular carbon is assimilated at the oxidation level of formaldehyde.]
formaldehyde assimilation GO_0019649 [The pathways in which formaldehyde is processed and used as a carbon source for the cell.]
formaldehyde assimilation via xylulose monophosphate cycle GO_0019648 [The pathway in which formaldehyde is used as a carbon source in the xylulose monophosphate cycle. Methylotrophic yeasts, but not bacteria, utilize the xylulose monophosphate cycle to fix formaldehyde and convert it into metabolically useful organic compounds.]
formaldehyde metabolic process GO_0046292 [The chemical reactions and pathways involving formaldehyde (methanal, H2C=O), a colorless liquid or gas with a pungent odor, commonly used as a fixative or an antibacterial agent.]
insulin-like growth factor receptor activity GO_0005010 [Combining with insulin-like growth factor receptor ligand and transmitting the signal across the plasma membrane to initiate a change in cell activity.]
macrophage colony-stimulating factor receptor activity GO_0005011 [Combining with macrophage colony-stimulating factor (M-CSF) receptor ligand and transmitting the signal from one side of the membrane to the other to initiate a change in cell activity by catalysis of the reaction: ATP + a protein-L-tyrosine = ADP + a protein-L-tyrosine phosphate.]
obsolete Neu/ErbB-2 receptor activity GO_0005012 [OBSOLETE. (Was not defined before being made obsolete).]
obsolete neurotrophin TRK receptor activity GO_0005013 [OBSOLETE. (Was not defined before being made obsolete).]
obsolete neurotrophin TRKA receptor activity GO_0005014 [OBSOLETE. (Was not defined before being made obsolete).]
obsolete neurotrophin TRKB receptor activity GO_0005015 [OBSOLETE. (Was not defined before being made obsolete).]
nuclear pore linkers GO_0044612 [A substructure of the nuclear pore complex (NPC) that serves to connect members of the central transport channel (composed of FG-nucleoporins) to the core scaffold (composed of the inner and outer NPC rings). In S. cerevisiae, the linkers are Nic96p and Nup82p. In vertebrates, they are Nup93 and Nup88. Components are arranged in 8-fold symmetrical 'spokes' around the central transport channel. Both linkers can be isolated in association with specific FG-nucleoporins, complexes that are sometimes referred to as the Nic96 complex (Nic96p-Nsp1p-Nup49p-Nup57p) and the Nup82 complex (Nup82p-Nup116p-Nup159p-Gle2p).]
obsolete neurotrophin TRKC receptor activity GO_0005016 [OBSOLETE. (Was not defined before being made obsolete).]
nuclear pore central transport channel GO_0044613 [The central substructure of the nuclear pore complex (NPC), through which nucleocytoplasmic transport of RNAs, proteins and small molecules occurs. The central transport channel is filled with FG-nucleoporins, which form a selective barrier and provide a series of binding sites for transporter proteins. Characterized S. cerevisiae FG-nucleoporins include Nup159p, Nup145Np, Nup116p, Nup100p, Nsp1p, Nup57p, Nup49p, Nup42p, Nup53p, Nup59p/Asm4p, Nup60p and Nup1. Characterized vertebrate FG-nucleoporins include Nup214, Nup98, Nup62, Nup54, Nup58/45, NLP1, and Nup153.]
platelet-derived growth factor receptor activity GO_0005017 [Combining with platelet-derived growth factor receptor ligand and transmitting the signal across the plasma membrane to initiate a change in cell activity.]
nuclear pore cytoplasmic filaments GO_0044614 [Filamentous extensions on cytoplasmic face of the nuclear pore complex (NPC). In S. cerevisiae, Nup159p, Nup82p, and Nup42p contribute to the cytoplasmic filaments. In vertebrates, Nup358 is a major component.]
platelet-derived growth factor alpha-receptor activity GO_0005018 [Combining with platelet-derived growth factor isoform PDGF-AA, PDGF-BB or PDGF-AB to initiate a change in cell activity.]
nuclear pore nuclear basket GO_0044615 [A filamentous, cage-like assembly on the nuclear face of the nuclear pore complex (NPC). In S. cerevisiae, Mlp1p and Mlp2p are two major components of the NPC nuclear basket. In vertebrates, Tpr is a major component.]
platelet-derived growth factor beta-receptor activity GO_0005019 [Combining with platelet-derived growth factor isoform PDGF-BB or PDGF-AB to initiate a change in cell activity.]
venom-mediated paralysis GO_0044616 [A process in which an organism induces paralysis in another organism via the action of a venom. Paralysis is the loss of the ability to voluntarily control muscles. This can occur by blocking nerve signals at the neuromuscular junction or by directly interfering with muscle contraction.]
venom-mediated smooth muscle relaxation GO_0044617 [A process in which an organism initiates, promotes, or enhances the relaxation of smooth muscle in another organism via the action of a venom.]