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首页> 外文期刊>Acta Biochimica et Biophysica Sinica >Pharmacophore-directed Homology Modeling and Molecular Dynamics Simulation of G Protein-coupled Receptor: Study of Possible Binding Modes of 5-HT_(2C) Receptor Agonists
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Pharmacophore-directed Homology Modeling and Molecular Dynamics Simulation of G Protein-coupled Receptor: Study of Possible Binding Modes of 5-HT_(2C) Receptor Agonists

机译:G蛋白偶联受体的药理学定向同源性建模和分子动力学模拟:5-HT_(2C)受体激动剂可能的结合模式研究

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摘要

A new pharmacophore-based modeling procedure, including homology modeling, pharmacophore study, flexible molecular docking, and long-time molecular dynamics (MD) simulations, was employed to construct the structure of the human 5-HT_(2C) receptor and determine the characteristics of binding modes of 5-HT_(2C) receptor agonists. An agonist-receptor complex has been constructed based on homology modeling and a pharmacophore hypothesis model based on some high active compounds. Then MD simulations of the ligand-receptor complex in an explicit membrane environment were carried out. The conformation of the 5-HT_(2C) receptor during MD simulation was explored, and the stable binding modes of the studied agonist were determined. Flexible molecular docking of several structurally diverse agonists of the human 5-HT_(2C) receptor was carried out, and the general binding modes of these agonists were investigated. According to the models presented in this work and the results of Flexi-Dock, the involvement of the amino acid residues Asp134, Ser138, Asn210, Asn331, Tyr358, Ile131, Ser132, Val135, Thr139, Ile189, Val202, Val208, Leu209, Phe214, Val215, Gly218, Ser219, Phe223, Trp324, Phe327, and Phe328 in agonist recognition was studied. The obtained binding modes of the human 5-HT_(2C) receptor agonists have good agreement with the site-directed mutagenesis data and other studies.
机译:一种新的基于药效团的建模程序,包括同源性建模,药效团研究,灵活的分子对接和长时间分子动力学(MD)模拟,被用于构建人5-HT_(2C)受体的结构并确定其特征5-HT_(2C)受体激动剂的结合方式的比较。基于同源性模型和基于某些高活性化合物的药效基团假说模型,构建了激动剂-受体复合物。然后在明确的膜环境中进行了配体-受体复合物的MD模拟。探索了5-HT_(2C)受体在MD模拟过程中的构象,并确定了所研究激动剂的稳定结合方式。进行了人类5-HT_(2C)受体的几种结构多样的激动剂的柔性分子对接,并研究了这些激动剂的一般结合方式。根据这项工作提出的模型和Flexi-Dock的结果,氨基酸残基Asp134,Ser138,Asn210,Asn331,Tyr358,Ile131,Ser132,Val135,Thr139,Ile189,Val202,Val208,Leu209,Phe214的氨基酸残基的参与,研究了Val215,Gly218,Ser219,Phe223,Trp324,Phe327和Phe328在激动剂识别中的作用。人5-HT_(2C)受体激动剂的结合模式与定点诱变数据和其他研究有很好的一致性。

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