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Structure?Activity Relationship Studies toward the Discovery of Selective Apelin Receptor Agonists

机译:发现选择性Apelin受体激动剂的结构-活性关系研究

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摘要

Apelin is the endogenous ligand for the previously orphaned G protein-coupled receptor APJ. Apelin and its receptor are widely distributed in the brain, heart, and vasculature, and are emerging as an important regulator of body fluid homeostasis and cardiovascular functions. To further progress in the pharmacology and the physiological role of the apelin receptor, the development of small, bioavailable agonists and antagonists of the apelin receptor, is crucial. In this context, E339?3D6 (1) was described as the first nonpeptidic apelin receptor agonist. We show here that 1 is actually a mixture of polymethylated species, and we describe an alternative and versatile solid-phase approach that allows access to highly pure 27, the major component of 1. This approach was also applied to prepare a series of derivatives in order to identify the crucial structural determinants required for the ligand to maintain its affinity for the apelin receptor as well as its capacity to promote apelin receptor signaling and internalization. The study of the structure?activity relationships led to the identification of ligands 19, 21, and 38, which display an increased affinity compared to that of 27. The latter and 19 behave as full agonists with regard to cAMP production and apelin receptor internalization, whereas 21 is a biased agonist toward cAMP production. Interestingly, the three ligands display a much higher stability in mouse plasma (T1/2 > 10 h) than the endogenous apelin-17 peptide 2 (T_(1/2) < 4 min).
机译:Apelin是先前孤立的G蛋白偶联受体APJ的内源性配体。 Apelin及其受体广泛分布于大脑,心脏和脉管系统中,并且正在成为体液稳态和心血管功能的重要调节剂。为了进一步发展apelin受体的药理作用和生理作用,至关重要的是开发小,可生物利用的apelin受体激动剂和拮抗剂。在这种情况下,E339β3D6(1)被描述为第一个非肽Apelin受体激动剂。我们在这里表明1实际上是多甲基化物质的混合物,并且我们描述了一种替代的,通用的固相方法,该方法可获取高度纯的27(1的主要成分)。该方法还用于制备一系列为了鉴定配体维持其对apelin受体的亲和力以及促进apelin受体信号传导和内在化的能力所需的关键结构决定因素。对结构活性关系的研究导致鉴定了配体19、21和38,与27相比,它们显示出更高的亲和力。后者和19在cAMP产生和apelin受体内在化方面表现为完全激动剂,而21是产生cAMP的偏向激动剂。有趣的是,这三种配体在小鼠血浆中的稳定性(T1 / 2> 10 h)比内源性apelin-17肽2高(T_(1/2)<4 min)。

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