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组胺H2受体上的激动剂结合位点。II. 组胺与七螺旋跨膜结构域受体模型结合的理论研究。

The agonistic binding site at the histamine H2 receptor. II. Theoretical investigations of histamine binding to receptor models of the seven alpha-helical transmembrane domain.

作者信息

Nederkoorn P H, van Gelder E M, Donné-Op den Kelder G M, Timmerman H

机构信息

Department of Pharmacochemistry, Leiden/Amsterdam Center for Drug Research (LACDR), Vrije Universiteit, The Netherlands.

出版信息

J Comput Aided Mol Des. 1996 Oct;10(5):479-89. doi: 10.1007/BF00124477.

Abstract

In the first part (pp. 461-478 in this issue) of this study regarding the histamine H2 receptor agonistic binding site, the best possible interactions of histamine with an alpha-helical oligopeptide, mimicking a part of the fifth transmembrane alpha-helical domain (TM5) of the histamine H2 receptor, were considered. It was established that histamine can only bind via two H-bonds with a pure alpha-helical TM5, when the binding site consists of Tyr182/Asp186 and not of the Asp186/Thr190 couple. In this second part, two particular three-dimensional models of G-protein-coupled receptors previously reported in the literature are compared in relation to agonist binding at the histamine H2 receptor. The differences between these two receptor models are discussed in relation to the general benefits and limitations of such receptor models. Also the pros and cons of simplifying receptor models to a relatively easy-to-deal-with oligopeptide for mimicking agonistic binding to an agonistic binding site are addressed. Within complete receptor models, the simultaneous interaction of histamine with both TM3 and TM5 can be analysed. The earlier suggested three-point interaction of histamine with the histamine H2 receptor can be explored. Our results demonstrate that a three-point interaction cannot be established for the Asp98/ Asp186/Thr190 binding site in either of the investigated receptor models, whereas histamine can form three H-bonds in case the agonistic binding site is constituted by the Asp98/Tyr182/Asp186 triplet. Furthermore, this latter triplet is seen to be able to accommodate a series of substituted histamine analogues with known histamine H2 agonistic activity as well.

摘要

在本研究关于组胺H2受体激动剂结合位点的第一部分(本期第461 - 478页)中,考虑了组胺与模拟组胺H2受体第五跨膜α - 螺旋结构域(TM5)一部分的α - 螺旋寡肽的最佳可能相互作用。已确定,当结合位点由Tyr182/Asp186组成而非Asp186/Thr190对时,组胺只能通过两个氢键与纯α - 螺旋TM5结合。在第二部分中,比较了文献中先前报道的两种特定的G蛋白偶联受体三维模型与组胺H2受体激动剂结合的情况。讨论了这两种受体模型之间的差异以及此类受体模型的一般优点和局限性。还探讨了将受体模型简化为相对易于处理的寡肽以模拟激动剂与激动剂结合位点结合的利弊。在完整的受体模型中,可以分析组胺与TM3和TM5的同时相互作用。可以探索先前提出的组胺与组胺H2受体的三点相互作用。我们的结果表明,在所研究的两种受体模型中,Asp98/Asp186/Thr190结合位点均无法建立三点相互作用,而当激动剂结合位点由Asp98/Tyr182/Asp186三联体构成时,组胺可以形成三个氢键。此外,后一个三联体似乎也能够容纳一系列具有已知组胺H2激动活性 的取代组胺类似物。

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