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人及大鼠尿紧张素II受体分析中尿紧张素II相关肽的功能及结合特性

Functional and binding characterizations of urotensin II-related peptides in human and rat urotensin II-receptor assay.

作者信息

Brkovic Alexandre, Hattenberger Almut, Kostenis Evi, Klabunde Thomas, Flohr Stefanie, Kurz Michael, Bourgault Steve, Fournier Alain

机构信息

Institut national de la recherche scientifique, Université du Québec, INRS, Institut Armand-Frappier, Pointe-Claire, Montréal, Quebec, Canada.

出版信息

J Pharmacol Exp Ther. 2003 Sep;306(3):1200-9. doi: 10.1124/jpet.103.052415. Epub 2003 Jun 13.

Abstract

Urotensin II (U-II; cyclo5-10[H-Glu-Thr-Pro-Asp-Cys-Phe-Trp-Lys-Tyr-Cys-Val-OH]) is a potent vasoconstrictor in mammals, and it is postulated that it plays a central role in cardiovascular homeostasis. Thus, we initiated a structure-to-function analysis of this peptide characterized by a N-terminal tail and a cyclic core formed through a disulfide bridging. A total of 41 analogs focusing on these characteristics were developed and evaluated using a binding assay on membranes from a stable HEK-293 cell line containing the human or rat U-II receptor, a functional assay for Ca2+ mobilization on transiently transfected CHO-K1 cells with the human or rat U-II receptor, and a rat thoracic aorta bioassay. At first, the focus was applied on peptide compounds containing exocyclic modifications. From this series, it appeared that only valine-11 played a significant role although it is not an essential amino acid. Similarly, endocyclic and ring transformations of hU-II were also studied. In most cases, a detrimental effect on affinity and biological activity was observed. However, two compounds, [Tyr6]hU-II and [Phe9]hU-II, retained affinity and activity. So far, our binding, functional, and pharmacological data clearly demonstrated the minor contribution of the N-terminal segment and the essential role of the cyclic structure. More particularly, three residues within the loop, i.e., Trp-7, Lys-8, and Tyr-9, are required for receptor recognition and activation. This three-pole feature, kept by the disulfide bond in a correct spatial arrangement, appears as the key pharmacophore for the U-II receptor.

摘要

尾加压素 II(U-II;环5-10[H-谷氨酸-苏氨酸-脯氨酸-天冬氨酸-半胱氨酸-苯丙氨酸-色氨酸-赖氨酸-酪氨酸-半胱氨酸-缬氨酸-OH])是哺乳动物体内一种强效的血管收缩剂,据推测它在心血管稳态中发挥核心作用。因此,我们启动了对这种肽的结构-功能分析,该肽的特征是具有一个N端尾巴和通过二硫键桥接形成的环状核心。我们开发了总共41种针对这些特征的类似物,并使用对含人或大鼠U-II受体的稳定HEK-293细胞系的膜进行的结合试验、对瞬时转染有人或大鼠U-II受体的CHO-K1细胞进行的Ca2+动员功能试验以及大鼠胸主动脉生物测定法进行了评估。起初,重点放在含有环外修饰的肽化合物上。从这个系列来看,似乎只有缬氨酸-11发挥了重要作用,尽管它不是必需氨基酸。同样,人U-II的环内和环结构转变也进行了研究。在大多数情况下,观察到对亲和力和生物活性有不利影响。然而,两种化合物,[酪氨酸6]人U-II和[苯丙氨酸9]人U-II,保留了亲和力和活性。到目前为止,我们的结合、功能和药理学数据清楚地表明了N端片段的贡献较小以及环状结构的关键作用。更特别的是,环内的三个残基,即色氨酸-7、赖氨酸-8和酪氨酸-9,是受体识别和激活所必需的。由二硫键以正确的空间排列保持的这种三极特征,似乎是U-II受体的关键药效基团。

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