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Chimeric relaxin peptides highlight the role of the A-chain in the function of H2 relaxin

机译:嵌合松弛素肽突出了A链在H2松弛素功能中的作用

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Human gene-2 (H2) relaxin is a member of the insulin-relaxin peptide superfamily. Because of the potential clinical applications of H2 relaxin, there is a need for novel analogs that have improved biological activity and receptor specificity. In this respect, we have chemically assembled chimeric peptides consisting of the B-chain of H2 relaxin in combination with A-chains from other insulin/relaxin family members. The peptides were prepared using solid phase peptide synthesis together with regioselective disulfide bond formation and characterized by RP-HPLC, MALDI-TOF MS and amino acid analysis. Their in vitro activity was assessed in RXFP1 or RXFP2 expressing cells. Replacement of the H2 relaxin A-chain resulted in parallel losses of binding affinity and activity on RXFP1. Not surprisingly H1A-H2B demonstrated the highest activity as the H1 A-chain shares high homology with H2 relaxin whereas INSLA-H2B, which shows low homology, had very poor activity. Importantly A-chain replacements had a dramatic effect on RXFP2 activity similar to previous results demonstrating different modes of activation of A-chain variants on RXFP1 and RXFP2. H3A-H2B is particularly interesting as it displays moderate activity at RXFP1 but poor activity at RXFP2 indicating that it may be a template for specific RXFP1 agonist development. Our study confirms that the activity of H2 relaxin at both RXFP1 and RXFP2 relies on interactions with both the B- and A-chains, and also provide new biochemical insights into the mechanism of relaxin action that the A-chain needs to be in native or near-native form for strong RXFP1 or RXFP2 agonist activity.
机译:人基因2(H2)松弛素是胰岛素松弛素肽超家族的成员。由于H2松弛素的潜在临床应用,需要具有改善的生物学活性和受体特异性的新型类似物。在这方面,我们已经化学组装了由H2松弛素的B链与其他胰岛素/松弛素家族成员的A链组成的嵌合肽。使用固相肽合成以及区域选择性二硫键形成来制备肽,并通过RP-HPLC,MALDI-TOF MS和氨基酸分析对其进行表征。在表达RXFP1或RXFP2的细胞中评估了它们的体外活性。 H2松弛素A链的替换导致RXFP1的结合亲和力和活性平行丧失。毫不奇怪,H1A-H2B表现出最高的活性,因为H1 A链与H2松弛素具有高度同源性,而INSLA-H2B显示出低同源性,却具有非常低的活性。重要的是,A链置换对RXFP2的活性具有戏剧性的影响,类似于先前的结果,表明在RXFP1和RXFP2上激活A链变异体的方式不同。 H3A-H2B特别令人感兴趣,因为它在RXFP1处显示中等活性,但在RXFP2处显示差的活性,表明它可能是特定RXFP1激动剂发育的模板。我们的研究证实,在RXFP1和RXFP2处H2松弛素的活性依赖于与B链和A链的相互作用,并且还提供了新的生化见解,了解A链需要在天然链中还是在天然链中。强烈的RXFP1或RXFP2激动剂活性的近自然形式。

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