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H2 松弛素相对于 H3 松弛素在松弛素家族肽受体 3(RXFP3)上是一种偏向性配体。

H2 relaxin is a biased ligand relative to H3 relaxin at the relaxin family peptide receptor 3 (RXFP3).

机构信息

Drug Discovery Biology, Monash Institute of Pharmaceutical Sciences, Parkville, Victoria, Australia.

出版信息

Mol Pharmacol. 2010 May;77(5):759-72. doi: 10.1124/mol.109.061432. Epub 2010 Feb 16.

DOI:10.1124/mol.109.061432
PMID:20159943
Abstract

Relaxin family peptide 3 receptors (RXFP3) are activated by H3-relaxin to inhibit forskolin-stimulated cAMP accumulation and stimulate extracellular signal-regulated kinase (ERK) 1/2 phosphorylation. In this study, we sought to identify novel signaling pathways coupled to RXFP3 and to investigate whether other members of the relaxin peptide family activated these pathways. Two patterns of signaling were observed in RXFP3-expressing Chinese hamster ovary (CHO)-K1 and human embryonic kidney (HEK)-293 cells (CHO-RXFP3 and HEK-RXFP3) and murine septal neuron SN56 cell lines: 1) strong inhibition of forskolin-stimulated cAMP accumulation, ERK1/2 activation and nuclear factor (NF)-kappaB reporter gene activation in cells stimulated with H3 relaxin, with weaker activity observed for H2 relaxin, porcine relaxin, or insulin-like peptide (INSL) 3 and 2) strong stimulation of activator protein (AP)-1 reporter genes by H2 relaxin, with weaker activation observed with H3 or porcine relaxin. Two distinct ligand binding sites were identified on RXFP3-expressing cells using two different radioligands. (125)I-INSL5 A-chain/relaxin-3 B-chain chimera bound with high affinity to the RXFP3-expressing cells with competition by H3 relaxin or a H3 relaxin B-chain dimeric peptide, consistent with previous reports. Binding studies with (125)I-H2 relaxin revealed a distinct binding site with potent competition observed with H2 relaxin, H3 relaxin, or INSL3 and weaker competition with porcine relaxin. Thus H3 relaxin potently activates all signaling pathways coupled to RXFP3, whereas H2 relaxin is an AP-1-biased ligand relative to H3 relaxin.

摘要

松弛素家族肽 3 型受体 (RXFP3) 可被 H3-松弛素激活,抑制 forskolin 刺激的 cAMP 积累并刺激细胞外信号调节激酶 (ERK)1/2 磷酸化。在这项研究中,我们试图确定与 RXFP3 偶联的新信号通路,并研究松弛素肽家族的其他成员是否激活这些通路。在表达 RXFP3 的中国仓鼠卵巢 (CHO)-K1 和人胚肾 (HEK)-293 细胞 (CHO-RXFP3 和 HEK-RXFP3) 和小鼠隔神经元 SN56 细胞系中观察到两种信号模式:1) H3-松弛素刺激时,强烈抑制 forskolin 刺激的 cAMP 积累、ERK1/2 激活和核因子 (NF)-kappaB 报告基因激活,而 H2-松弛素、猪松弛素或胰岛素样肽 (INSL)3 的活性较弱,2) H2-松弛素强烈刺激激活蛋白 (AP)-1 报告基因,而 H3 或猪松弛素的激活较弱。使用两种不同的放射性配体在表达 RXFP3 的细胞上鉴定出两个不同的配体结合位点。(125)I-INSL5 A 链/松弛素-3 B 链嵌合体与表达 RXFP3 的细胞高亲和力结合,H3 松弛素或 H3 松弛素 B 链二聚肽竞争结合,与先前的报道一致。用(125)I-H2 松弛素进行的结合研究显示,存在一个独特的结合位点,H2 松弛素、H3 松弛素或 INSL3 观察到强烈竞争,而猪松弛素竞争较弱。因此,H3 松弛素强烈激活与 RXFP3 偶联的所有信号通路,而 H2 松弛素相对于 H3 松弛素是 AP-1 偏向性配体。

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