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基于血管紧张素II高血压特性的结构基础:一个已解决的谜团还是一个有争议的问题?

On the structural basis of the hypertensive properties of angiotensin II: a solved mystery or a controversial issue?

作者信息

Tzakos Andreas G, Gerothanassis Ioannis P, Troganis Anastassios N

机构信息

Department of Chemistry, Section of Organic Chemistry and Biochemistry, University of Ioannina, Ioannina GR-45110, Greece.

出版信息

Curr Top Med Chem. 2004;4(4):431-44. doi: 10.2174/1568026043451375.

Abstract

Angiotensin II (AII), Asp1-Arg2-Val3-Tyr4-Ile5-His6-Pro7-Phe8, the primary active hormone of the Renin-Angiotensin-System (RAS), is a major vasoconstrictor implicated in the cause of hypertension. To unravel the question of the biologically active conformation(s) of this flexible peptide hormone and to better understand the stereoelectronic requirements that lead to the molecular basis of hypertension, we will analyze research efforts in the identification of pharmacophoric groups of AII and three general approaches for structural characterisation: the free peptide-ligand approach, the receptor based approach, and approaches that target the peptide-receptor complex. The free peptide-ligand based approach can be further categorized to: (a) conformational analysis of AII and linear peptide analogues in aqueous solution; (b) the use of solvents of medium dielectric constants; (c) conformationally restricted analogues, with emphasis to cyclic analogues; (d) the use of receptor-simulating environments, and (e) non-peptide mimetics. The receptor and peptide-receptor based approaches can be categorised to: (a) The use of monoclonal antibodies and (b) the generic description of AII receptor sites through homology modelling and mutagenesis studies. These investigations, with particular emphasis to recent developments, have greatly assisted in the identification of pharmacophoric groups for receptor activation and the development of several models of AII-receptor complexes.

摘要

血管紧张素II(AII),天冬氨酸1 - 精氨酸2 - 缬氨酸3 - 酪氨酸4 - 异亮氨酸5 - 组氨酸6 - 脯氨酸7 - 苯丙氨酸8,是肾素 - 血管紧张素系统(RAS)的主要活性激素,是一种与高血压病因相关的主要血管收缩剂。为了阐明这种柔性肽激素的生物活性构象问题,并更好地理解导致高血压分子基础的立体电子要求,我们将分析在鉴定AII药效基团方面的研究工作以及三种结构表征的一般方法:游离肽 - 配体方法、基于受体的方法以及针对肽 - 受体复合物的方法。基于游离肽 - 配体的方法可进一步分类为:(a)水溶液中AII和线性肽类似物的构象分析;(b)使用中等介电常数的溶剂;(c)构象受限类似物,重点是环状类似物;(d)使用模拟受体的环境,以及(e)非肽模拟物。基于受体和肽 - 受体的方法可分类为:(a)使用单克隆抗体和(b)通过同源建模和诱变研究对AII受体位点进行一般性描述。这些研究,特别强调最近的进展,极大地有助于鉴定用于受体激活的药效基团以及开发几种AII - 受体复合物模型。

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