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Ryanodine receptor 1
go.drugbank.com/bio_entities/BE0000739TargetTransporterHumansCytosolic calcium-activated calcium channel that mediates the release of Ca(2+) from the sarcoplasmic reticulum into the cytosol and thereby plays a key role in triggering muscle contraction following depolarization of T-tubules (PubMed:...
Polypeptides: Ryanodine receptor 1Synonyms: Type 1 ryanodine receptor, Skeletal muscle ryanodine receptorThromboxane A2 receptor
go.drugbank.com/bio_entities/BE0000759TargetHumansReceptor for thromboxane A2 (TXA2), a potent stimulator of platelet aggregation. … The activity of this receptor is mediated by a G-protein that activates a phosphatidylinositol-calcium second messenger system.
Polypeptides: Thromboxane A2 receptorSynonyms: Prostanoid TP receptorVasopressin V1b receptor
go.drugbank.com/bio_entities/BE0000773TargetHumansReceptor for arginine vasopressin. The activity of this receptor is mediated by G proteins which activate a phosphatidyl-inositol-calcium second messenger system
Polypeptides: Vasopressin V1b receptorSynonyms: Vasopressin V3 receptor, Antidiuretic hormone receptor 1bNeuropeptide S receptor
go.drugbank.com/bio_entities/BE0000948TargetHumansG protein-coupled receptor for neuropeptide S (NPS) (PubMed:15947423, PubMed:16720571, PubMed:16790440). … In addition to this pathway, NPS binding to its receptor activates cAMP/PKA signal transduction (PubMed:26865629).
Polypeptides: Neuropeptide S receptorSynonyms: G protein-coupled receptor 154, G protein-coupled receptor PGR14Histamine H3 receptor
go.drugbank.com/bio_entities/BE0000968TargetHumansThe H3 subclass of histamine receptors could mediate the histamine signals in CNS and peripheral nervous system. Signals through the inhibition of adenylate cyclase and displays high constitutive activity (spontaneous activity in the abs...
Polypeptides: Histamine H3 receptorSynonyms: G protein-coupled receptor 97Bile acid receptor
go.drugbank.com/bio_entities/BE0001777TargetHumansReceptor for bile acids (BAs) such as chenodeoxycholic acid (CDCA), lithocholic acid, deoxycholic acid (DCA) and allocholic acid (ACA). … 1 nucleotide (IR-1) but also to tandem repeat DR1 sites with lower affinity, and can be activated by either FXR or RXR-specific ligands.
Polypeptides: Bile acid receptorSynonyms: Farnesol receptor HRR-1, Farnesoid X-activated receptorAsialoglycoprotein receptor 2
go.drugbank.com/bio_entities/BE0002118TargetHumansThe receptor then returns to the cell membrane surface … After ligand binding to the receptor, the resulting complex is internalized and transported to a sorting organelle, where receptor and ligand are disassociated.
Polypeptides: Asialoglycoprotein receptor 2Function: asialoglycoprotein receptor activityAngiopoietin-1 receptor
go.drugbank.com/bio_entities/BE0003379TargetHumansThe soluble extracellular domain modulates signaling by functioning as decoy receptor for angiopoietins. TEK phosphorylates DOK2, GRB7, GRB14, PIK3R1; SHC1 and TIE1 … ANGPT1 signaling triggers receptor dimerization and autophosphorylation at specific tyrosine residues that then serve as binding sites for scaffold proteins and effectors.
Polypeptides: Angiopoietin-1 receptorSynonyms: Tyrosine-protein kinase receptor TEK, Tyrosine-protein kinase receptor TIE-2Folate receptor alpha
go.drugbank.com/bio_entities/BE0003405TargetTransporterHumansExposure to slightly acidic pH after receptor endocytosis triggers a conformation change that strongly reduces its affinity for folates and mediates their release (PubMed:8567728).
Polypeptides: Folate receptor alphaSynonyms: Folate receptor 1, Folate receptor, adultBeta adrenergic receptor
go.drugbank.com/bio_entities/BE0004872TargetHumansMediates the activation of Ras via binding with cAMP-dependent RAPGEF2 (PubMed:12391161). … G protein-coupled receptor for catecholamines that couples to both G(s) and G(i) proteins, activating bifurcated signaling pathways (PubMed:2831218, PubMed:7915137).
Polypeptides: Beta-1 adrenergic receptor, Beta-2 adrenergic receptorFunction: alpha-2A adrenergic receptor binding, beta-adrenergic receptor activity