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  • Source: Relaxin/insulin-like family peptide receptor 3
  • 3/?s=relaxin" target="_blank">Relaxin/3/?s=insulin" target="_blank">insulin-3/?s=like" target="_blank">like 3/?s=family" target="_blank">family 3/?s=peptide" target="_blank">peptide 3/?s=receptor" target="_blank">receptor 3, also known as RXFP3, is a human G-protein coupled 3/?s=receptor" target="_blank">receptor.


    See also


    3/?s=relaxin" target="_blank">Relaxin 3/?s=receptor" target="_blank">receptor


    References




    Further reading




    External links


    "3/?s=relaxin" target="_blank">Relaxin 3/?s=family" target="_blank">Family 3/?s=peptide" target="_blank">Peptide Receptors: RXFP3". IUPHAR Database of Receptors and Ion Channels. International Union of Basic and Clinical Pharmacology. Archived from the original on 2016-03-03. Retrieved 2008-12-09.
    This article incorporates text from the United States National Library of Medicine, which is in the public domain.

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Artikel Terkait "relaxin insulin like family peptide receptor 3"

Diverse Functions of Insulin-Like 3 Peptide - PMC - PubMed …

Insulin-like 3 peptide (INSL3) is a member of the insulin-like peptide superfamily and is the only known physiological ligand of relaxin family peptide receptor 2 (RXFP2), a G protein-coupled receptor (GPCR).

Relaxin family peptides and their receptors - PubMed

Insulin-like peptide-3 (INSL3) has clearly defined specialist roles in male and female reproduction, relaxin-3 is primarily a neuropeptide involved in stress and metabolic control, and INSL5 is widely distributed particularly in the gastrointestinal tract.

Relaxin/insulin-like family peptide receptor 3 - Wikipedia

Relaxin/insulin-like family peptide receptor 3, also known as RXFP3, is a human G-protein coupled receptor. [5]

Relaxin family peptides: structure–activity relationship studies

This review summarizes the current knowledge of the SAR of human relaxin 2 (H2 relaxin), human relaxin 3 (H3 relaxin), human insulin‐like peptide 3 (INSL3) and human insulin‐like peptide 5 (INSL5).

Ligand recognition mechanism of the human relaxin family peptide ...

30 Jan 2023 · The human relaxin family peptide (RXFP) receptors (RXFP1, RXFP2, RXFP3 and RXFP4) play physiological roles through peptide hormones relaxin, insulin-like peptide 3 (INSL3), relaxin-3, and insulin...

Relaxin Family Peptides and Their Receptors | SpringerLink

01 Jan 2022 · The relaxin family peptides relaxin, insulin-like peptide (INSL)3, relaxin-3, and INSL5 mediate hormonal and neuropeptide actions by acting on a group of four relaxin family peptide (RXFP) receptors (Bathgate et al. 2013; Halls et al. 2015; Alexander et al. 2019; Valkovic et al. 2019). The receptor systems have roles in the cardiovascular ...

Membrane receptors: Structure and function of the relaxin family ...

14 Mei 2010 · The receptors for members of the relaxin peptide family have only recently been discovered and are G-protein-coupled receptors (GPCRs). Relaxin and insulin-like peptide 3 (INSL3) interact with the leucine-rich-repeat-containing GPCRs …

Relaxin family peptide receptors - ScienceDirect

01 Agu 2008 · Over this time a group of structurally related insulin-like peptides have been defined and four of them, relaxin, relaxin-3, INSL3 and INSL5 have been shown to be the cognate ligands for the four relaxin family peptide receptors (RXFP1-4).

Diverse functions of insulin-like 3 peptide - PubMed

01 Okt 2020 · Insulin-like 3 peptide (INSL3) is a member of the insulin-like peptide superfamily and is the only known physiological ligand of relaxin family peptide receptor 2 (RXFP2), a G protein-coupled receptor (GPCR). In mammals, INSL3 is primarily produced both in testicular Leydig cells and in ovarian thec …

Relaxin family peptide receptors | Introduction | BPS/IUPHAR …

The relaxin family peptide (RXFP) receptors are a group of 4 receptors, that mediate the hormonal and neuropeptide actions of the relaxin family peptides relaxin (human gene 2 relaxin or other mammalian equivalents), insulin-like peptide (INSL) 3, relaxin-3 and INSL5 (Table 1). These peptide receptor systems have roles in the cardiovascular ...