Protein Domain : IPR003053

Type:  Family Name:  GPCR, family 2, corticotropin releasing factor receptor, type 2
Description:  G protein-coupled receptors (GPCRs) constitute a vast protein family that encompasses a wide range of functions, including various autocrine, paracrine and endocrine processes. They show considerable diversity at the sequence level, on the basis of which they can be separated into distinct groups []. The term clan can be used to describe the GPCRs, as they embrace a group of families for which there are indications of evolutionary relationship, but between which there is no statistically significant similarity in sequence []. The currently known clan members include rhodopsin-like GPCRs (Class A, GPCRA), secretin-like GPCRs (Class B, GPCRB), metabotropic glutamate receptor family (Class C, GPCRC), fungal mating pheromone receptors (Class D, GPCRD), cAMP receptors (Class E, GPCRE) and frizzled/smoothened (Class F, GPCRF) [, , , , ]. GPCRs are major drug targets, and are consequently the subject of considerable research interest. It has been reported that the repertoire of GPCRs for endogenous ligands consists of approximately 400 receptors in humans and mice []. Most GPCRs are identified on the basis of their DNA sequences, rather than the ligand they bind, those that are unmatched to known natural ligands are designated by as orphan GPCRs, or unclassified GPCRs [].The secretin-like GPCRs include secretin [], calcitonin [], parathyroid hormone/parathyroid hormone-related peptides [] and vasoactive intestinal peptide [], all of which activate adenylyl cyclase and the phosphatidyl-inositol-calcium pathway. These receptors contain seven transmembrane regions, in a manner reminiscent of the rhodopsins and other receptors believed to interact with G-proteins (however there is no significant sequence identity between these families, the secretin-like receptors thus bear their own unique '7TM' signature). Their N terminus is probably located on the extracellular side of the membrane and potentially glycosylated. This N-terminal region contains a long conserved region which allow the binding of large peptidic ligand such as glucagon, secretin, VIP and PACAP; this region contains five conserved cysteines residues which could be involved in disulphide bond. The C-terminal region of these receptor is probably cytoplasmic. Every receptor gene in this family is encoded on multiple exons, and several of these genes are alternatively spliced to yield functionally distinct products. Corticotropin-releasing factor (CRF) is the principal neuroregulator of the hypothalamic-pituitary-adrenocortical axis, playing an important role incoordinating the endocrine, autonomic and behavioral responses to stress and immune challenge []. The CRF receptor has been found in human cortex tissue, pituitary, brainstem and testis []. The protein comprises 415 amino acid residues with the characterstic 7TM architecture of thesecretin-like GPCR superfamily. Three isoforms (designated CRF-R1, CRF-R2 and CRF-R3) are produced as a result of alternative splicing of the samegene: CRF-R1 appears to be the predominant form; CRF-R3 does not bind to CRF with a high affinity [].For the CRF-R2 receptor, at least 2 splice forms with different 5'-coding sequences (CRF2 alpha and CRF2 beta) have been identified in rat []. The sequence of the CRF-R is highly conserved between species, the majority of the sequence divergence occuring in the putative signal peptide and extracellular N-terminal domain. The relative abundance of CRF-R2 messenger RNA appears to be lower in humans than in rats for the heart and skeletal tissues studied to date []. CRF-R2 stimulates cAMP production in response to CRF and known CRF-like agonists []. CRF and the non-mammalian CRF-related peptides sauvagine and urotensin I stimulate adenylate cyclaseactivity in a dose-dependent manner, with a rank order of potency that differs from that of the CRF1 receptor (sauvagine>urotensin>=rat/human CRF>ovine CRF). The differences in the pharmacological profiles and tissue distributions of CRF-R1 and CRF-R2 suggests important functionaldifferences between the two receptors []. Short Name:  GPCR_2_CRF2_rcpt

0 Child Features

3 Contains

DB identifier Type Name
IPR017981 Domain GPCR, family 2-like
IPR001879 Domain GPCR, family 2, extracellular hormone receptor domain
IPR017983 Conserved_site GPCR, family 2, secretin-like, conserved site

1 Cross References

Identifier
PR01281

0 Found In

2 GO Annotations

GO Term Gene Name
GO:0004930 IPR003053
GO:0016020 IPR003053

2 Ontology Annotations

GO Term Gene Name
GO:0004930 IPR003053
GO:0016020 IPR003053

1 Parent Features

DB identifier Type Name
IPR003051 Family GPCR, family 2, corticotropin releasing factor receptor

0 Proteins

15 Publications

First Author Title Year Journal Volume Pages PubMed ID
            8170923
            16753280
            23020293
            12679517
            8081729
            15914470
            18948278
            1646711
            1314625
            1658940
            1658941
            7692441
            8243652
            7846062
            8536644