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大麻素受体和有效生物活性大麻素配体的计算研究:同源建模、对接、从头药物设计和分子动力学分析。

A computational study on cannabinoid receptors and potent bioactive cannabinoid ligands: homology modeling, docking, de novo drug design and molecular dynamics analysis.

机构信息

Institute of Organic and Pharmaceutical Chemistry, The National Hellenic Research Foundation, 48 Vas. Constantinou Avenue, 11635, Athens, Greece.

出版信息

Mol Divers. 2010 May;14(2):257-76. doi: 10.1007/s11030-009-9166-4. Epub 2009 Jun 18.

DOI:10.1007/s11030-009-9166-4
PMID:19536636
Abstract

When X-ray structure of a ligand-bound receptor is not available, homology models of the protein of interest can be used to obtain the ligand-binding cavities. The steroelectronic properties of these cavities are directly related to the performed molecular model coordinates. Thus, the use of different template structures for homology may result in variation of ligand-binding modes. We have recently reported the MD simulations of a potent CB ligand at bovine rhodopsin-based CB1 and CB2 receptors (Durdagi et al., Bioorg Med Chem 16:7377-7387, 2008). In this present study, a homology modeling study based on the beta2-adrenergic receptor for both CB1 and CB2 receptors was performed, and the results were compared with rhodopsin-based models. In addition, the role of membrane bilayers to the adopted conformations of potent AMG3 CB ligand has been analyzed for receptor-free and membrane-associated receptor systems. The performed MD trajectory analysis results have shown that gauche conformations at the terminal segment of the alkyl side chain of AMG3 are not favored in solution. Different adopting dihedral angles defined between aromatic and dithiolane rings at the active sites of the CB1 and CB2 receptors, which are adapted lead to different alkyl side chain orientations and thus, may give clues to the medicinal chemists to synthesize more selective CB ligands. The binding sites of receptors derived by rhodopsin-based models have been regenerated using the beta2-adrenergic based template receptors. The re-obtained models confirmed the ligand-binding pockets that were derived based on rhodopsin.

摘要

当配体结合受体的 X 射线结构不可用时,可以使用感兴趣的蛋白质的同源模型来获得配体结合腔。这些腔的立体电子性质直接与所执行的分子模型坐标相关。因此,同源使用不同的模板结构可能导致配体结合模式的变化。我们最近报道了在牛视紫红质为基础的 CB1 和 CB2 受体上对一种有效的 CB 配体进行 MD 模拟的研究(Durdagi 等人,Bioorg Med Chem 16:7377-7387, 2008)。在本研究中,对 CB1 和 CB2 受体进行了基于β2-肾上腺素能受体的同源建模研究,并将结果与视紫红质为基础的模型进行了比较。此外,还分析了膜双层对有效 AMG3 CB 配体的采用构象的作用,用于无受体和膜相关受体系统。进行的 MD 轨迹分析结果表明,AMG3 烷基侧链末端的 gauche 构象在溶液中不受青睐。在 CB1 和 CB2 受体的活性部位,定义的芳香环和二硫戊环之间的不同采用二面角,导致不同的烷基侧链取向,从而为合成更具选择性的 CB 配体的药物化学家提供线索。使用β2-肾上腺素能为基础的模板受体再生了基于视紫红质的模型衍生的受体结合位点。重新获得的模型证实了基于视紫红质衍生的配体结合口袋。

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