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The Roles of the A- and B-Chains of Human Relaxin-2 and -3 on Their Biological Activity

机译:人类松弛素2和-3的A链和B链对其生物学活性的作用

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Two members of the human lnsulm/relaxm superfarmly, relaxins-2 and 3 (H2 and H3 respectively), are separated by nearly 75 years in terms of chronological identification but are both the subject of intense recent biological study. The physiological effects of H2 relaxin include vasodilatory, anti-inflammatory, extracellular matrix remodeling, and angiogenic and anti-ischemic. Because of its potent systemic and renal vasodilatory effects, it is currently undergoing phase III clinical trial for the treatment of acute heart failure. In contrast, H3 relaxin is a highly conserved neuropeptide that has rapidly emerged as an important regulator of homeostatic physiology and complex behaviors. Because of their immense clinical potential, an understanding of the structural features that control their functions is critical for rational drug design and development. The native receptor for H2 relaxin is RXFP1. It also strongly binds to the related receptor, RXFP2. The native receptor for H3 relaxin is the unrelated receptor, RXFP3; however, it also has high affinity for another related receptor, RXFP4. Interestingly, H3 relaxin also has a high affinity for RXFP1 and can interact with RXFP2 with a significantly lower affinity. H3 relaxin thus interacts with all four of the relaxin family receptors. Previous studies have shown that H2 and H3 relaxins interact with their receptors primarily using their B-chain specific residues. However, more recent studies suggest that the role of the respective A and B chains for their activity is both peptide- and receptor-dependent. This mini-review summarizes these recent findings on the structure-activity relationships of H2 and H3 relaxins.
机译:就时间序列识别而言,人类lnsulm / relaxm的两个超农场成员relaxins-2和3(分别为H2和H3)相隔将近75年,但它们都是近期生物学研究的热点。 H2松弛素的生理作用包括血管舒张,抗炎,细胞外基质重塑以及血管生成和抗缺血。由于其有效的全身和肾脏血管舒张作用,它目前正在接受III期临床试验以治疗急性心力衰竭。相比之下,H3松弛素是一种高度保守的神经肽,已迅速成为体内稳态生理和复杂行为的重要调节剂。由于其巨大的临床潜力,对控制其功能的结构特征的理解对于合理的药物设计和开发至关重要。 H2松弛素的天然受体是RXFP1。它还与相关受体RXFP2牢固结合。 H3松弛素的天然受体是不相关的受体RXFP3。但是,它对另一种相关受体RXFP4也具有很高的亲和力。有趣的是,H3松弛素对RXFP1的亲和力也很高,并且可以与RXFP2的亲和力大大降低。因此,H3松弛素与所有四个松弛素家族受体相互作用。先前的研究表明,H2和H3松弛素主要利用其B链特异性残基与其受体相互作用。但是,最近的研究表明,各自的A和B链对其活性的作用是肽和受体依赖性的。这份小型综述总结了有关H2和H3松弛素的构效关系的最新发现。

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