CDB20:0002888 RLN2 — RXFP3

Experimentally validated in Human; Orthology-inferred in Frog, Zebrafish, Chicken, Macaque, Pig, Dog, Chimp, Horse, Marmoset

Title

Journal:; Year Published:

Abstract

Relaxin-3: improved synthesis strategy and demonstration of its high-affinity interaction with the relaxin receptor LGR7 both in vitro and in vivo.

Biochemistry, 2006; PubMed, Homo sapiens RLN2 — Homo sapiens RXFP3
ABSTRACT: Relaxin-3 is a member of the human relaxin peptide family, the gene for which, RLN3, is predominantly expressed in the brain. Mapping studies in the rodent indicate a highly developed network of RLN3, RLN1, and relaxin receptor-expressing cells in the brain, suggesting that relaxin peptides have important functional roles in the central nervous system. A regioselective disulfide-bond synthesis protocol was developed and used for the chemical synthesis of human (H3) relaxin-3. The selectively S-protected A and B chains were combined by stepwise formation of each of the three insulin-like disulfides via aeration, thioloysis, and iodolysis. Judicious positioning of the three sets of S-protecting groups was crucial for acquisition of synthetic H3 relaxin in a good overall yield. The activity of the peptide was tested against relaxin family peptide receptors. Although the highest activity was demonstrated on the human relaxin-3 receptor (GPCR135), the peptide also showed high activity on relaxin receptors (LGR7) from various species and variable activity on the INSL3 receptor (LGR8). Recombinant mouse prorelaxin-3 demonstrated similar activity to H3 relaxin, suggesting that the presence of the C peptide did not influence the conformation of the active site. H3 relaxin was also able to activate native LGR7 receptors. It stimulated increased MMP-2 expression in LGR7-expressing rat ventricular fibroblasts in a dose-dependent manner and, following infusion into the lateral ventricle of the brain, stimulated water drinking in rats, activating LGR7 receptors located in the subfornical organ. Thus, H3 relaxin is able to interact with the relaxin receptor LGR7 both in vitro and in vivo.

Signalling profiles of H3 relaxin, H2 relaxin and R3(BΔ23-27)R/I5 acting at the relaxin family peptide receptor 3 (RXFP3).

British journal of pharmacology, 2014; PubMed, Homo sapiens RLN2 — Homo sapiens RXFP3
ABSTRACT: Relaxin family peptide receptor 3 (RXFP3) is expressed in brain areas important for processing sensory information and feeding, suggesting that it may be a target for anti-anxiety and anti-obesity drugs. We examined the effects of H3 relaxin, the biased agonist H2 relaxin and the antagonist, R3(BΔ23-27)R/I5, on RXFP3 signalling to establish their suitability as tools to assess the physiological roles of RXFP3.
Basic Information on RLN2
Ligand Name: relaxin 2
Other Symbols: H2, RLXH2, bA12D24.1.1, bA12D24.1.2
Ligand Location: secreted based on perplexity, uniprot
HGNC Gene Symbol Report: RLN2
GeneCards: RLN2
Interactions with other Receptors for RLN2
Basic Information on RXFP3
Receptor Name: relaxin family peptide receptor 3
Other Symbols: RLN3R1, SALPR, GPCR135, RXFPR3
Receptor Location: cell membrane based on perplexity, uniprot
HGNC Gene Symbol Report: RXFP3
GeneCards: RXFP3
HGNC Gene Group: 7TM proteins
Interactions with other Ligands for RXFP3