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首页> 外文期刊>Journal of Computer-Aided Molecular Design >Molecular modeling study of the differential ligand-receptor interaction at the mu, delta and kappa opioid receptors.
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Molecular modeling study of the differential ligand-receptor interaction at the mu, delta and kappa opioid receptors.

机译:在mu,delta和kappa类阿片受体上差异配体-受体相互作用的分子模型研究。

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摘要

3D models of the opioid receptors mu, delta and kappa were constructed using BUNDLE, an in-house program to build de novo models of G-protein coupled receptors at the atomic level. Once the three opioid receptors were constructed and before any energy refinement, models were assessed for their compatibility with the results available from point-site mutations carried out on these receptors. In a subsequent step, three selective antagonists to each of three receptors (naltrindole, naltrexone and nor-binaltorphamine) were docked onto each of the three receptors and subsequently energy minimized. The nine resulting complexes were checked for their ability to explain known results of structure-activity studies. Once the models were validated, analysis of the distances between different residues of the receptors and the ligands were computed. This analysis permitted us to identify key residues tentatively involved in direct interaction with the ligand.
机译:使用内部程序BUNDLE构建了阿片样物质受体mu,delta和kappa的3D模型,该程序可在原子水平上构建G蛋白偶联受体的从头模型。一旦构建了三种阿片样物质受体并进行任何能量精制,就评估模型与这些受体上进行点位突变获得的结果的相容性。在随后的步骤中,将对三种受体(纳曲酮,纳曲酮和去甲羟萘酚胺)中的每一种的三种选择性拮抗剂对接在这三种受体的每一种上,随后使能量最小化。检查了所得的九种复合物解释结构活性研究已知结果的能力。一旦模型得到验证,就可以计算出受体的不同残基与配体之间的距离。这项分析使我们能够确定与配体直接相互作用暂定涉及的关键残基。

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