All terms in GO
| Label | Id | Description |
|---|---|---|
| large latent transforming growth factor-beta complex | GO_0038045 | [A protein complex containing latency-associated proteins (LAPs), mature disulphide-linked dimeric TGF-beta, and latent TGF-beta binding proteins (LTBPs). TGF-beta is mostly secreted as part of the large latent complex, and must be subsequently released from the LLC in order to bind to cell surface receptors.] |
| enkephalin receptor activity | GO_0038046 | [Combining with an enkephalin, and transmitting the signal across the membrane by activating an associated G-protein. A enkephalin is a pentapeptide (Tyr-Gly-Gly-Phe-Met or Tyr-Gly-Gly-Phe-Leu) involved in regulating nociception in the body.] |
| morphine receptor activity | GO_0038047 | [Combining with morphine (17-methyl-7,8-didehydro-4,5alpha-epoxymorphinan-3,6alpha-diol), and transmitting the signal across the membrane by activating an associated G-protein.] |
| cellular response to morphine | GO_0071315 | [Any process that results in a change in state or activity of a cell (in terms of movement, secretion, enzyme production, gene expression, etc.) as a result of a morphine stimulus. Morphine is an opioid alkaloid, isolated from opium, with a complex ring structure.] |
| obsolete cross-receptor activation within G-protein coupled receptor heterodimer | GO_0038040 | [OBSOLETE. Activation of one protomer of a consequence of a G protein-coupled (GPCR) heterodimer by the associated subunit. For example, agonist occupancy in one protomer of a GPCR dimer may activate the associated promoter.] |
| cross-receptor inhibition within G protein-coupled receptor heterodimer | GO_0038041 | [Inhibition of one protomer of a G protein-coupled receptor (GPCR) heterodimer by the associated subunit. For example, agonist activation of one cytokine receptor can prevent activation of its associated cytokine receptor subunit.] |
| GO_0038042 | GO_0038042 | |
| GO_0038050 | GO_0038050 | |
| obsolete MAP kinase kinase kinase activity involved in innate immune response | GO_0038077 | [OBSOLETE. Catalysis of the phosphorylation and activation of a MAP kinase kinase (MAPKK), as part of a MAPK signaling cascade that contributes to an innate immune response.] |
| MAP kinase phosphatase activity involved in regulation of innate immune response | GO_0038078 | [Catalysis of the reaction: a phosphorylated MAP kinase + H2O = a MAP kinase + phosphate, where the MAP kinase (MAPK) is part of a MAPK signaling cascade that contributes to an innate immune response.] |
| inactivation of MAPK activity involved in innate immune response | GO_0035423 | [Any process that terminates the activity of the active enzyme MAP kinase in the context of an innate immune response, a defense response mediated by germline encoded components that directly recognize components of potential pathogens.] |
| obsolete MAP kinase activity involved in osmosensory signaling pathway | GO_0038079 | [OBSOLETE. Catalysis of the reaction: protein + ATP = protein phosphate + ADP by a mitogen-activated protein kinase, as part of a MAPK signaling cascade that passes on a signal within an osmosensory signaling pathway.] |
| obsolete MAP kinase kinase kinase activity involved in conjugation with cellular fusion | GO_0038073 | [OBSOLETE. Catalysis of the phosphorylation and activation of a MAP kinase kinase (MAPKK), as part of a MAPK signaling cascade that contributes to cell wall biogenesis.] |
| obsolete MAP kinase phosphatase activity involved in regulation of conjugation with cellular fusion | GO_0038074 | [OBSOLETE. Catalysis of the reaction: a phosphorylated MAP kinase + H2O = a MAP kinase + phosphate, where the MAP kinase (MAPK) is part of a MAPK signaling cascade that contributes to conjugation with cellular fusion.] |
| obsolete MAP kinase activity involved in innate immune response | GO_0038075 | [OBSOLETE. Catalysis of the reaction: protein + ATP = protein phosphate + ADP by a mitogen-activated protein kinase, as part of a MAPK signaling cascade that contributes to an innate immune response.] |
| obsolete MAP kinase kinase activity involved in innate immune response | GO_0038076 | [OBSOLETE. Catalysis of the concomitant phosphorylation of threonine (T) and tyrosine (Y) residues in a Thr-Glu-Tyr (TEY) thiolester sequence in a MAP kinase (MAPK) substrate, as part of a MAPK signaling cascade that contributes to an innate immune response.] |
| obsolete MAP kinase kinase activity involved in osmosensory signaling pathway | GO_0038080 | [OBSOLETE. Catalysis of the concomitant phosphorylation of threonine (T) and tyrosine (Y) residues in a Thr-Glu-Tyr (TEY) thiolester sequence in a MAP kinase (MAPK) substrate, as part of a MAPK signaling cascade that passes on a signal within an osmosensory signaling pathway.] |
| obsolete MAP kinase kinase kinase activity involved in osmosensory signaling pathway | GO_0038081 | [OBSOLETE. Catalysis of the phosphorylation and activation of a MAP kinase kinase (MAPKK), as part of a MAPK signaling cascade that passes on a signal within an osmosensory signaling pathway.] |
| obsolete MAP kinase phosphatase activity involved in regulation of osmosensory signaling pathway | GO_0038082 | [OBSOLETE. Catalysis of the reaction: a phosphorylated MAP kinase + H2O = a MAP kinase + phosphate, where the MAP kinase (MAPK) is part of a MAPK signaling cascade that passes on a signal within an osmosensory signaling pathway.] |
| peptidyl-tyrosine autophosphorylation | GO_0038083 | [The phosphorylation by a protein of one or more of its own tyrosine amino acid residues, or a tyrosine residue on an identical protein.] |