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首页> 外文期刊>Journal of the American Chemical Society >Modeling Differential Binding Of α 4β2 Nicotinic Acetylcholine Receptor With Agonists And Antagonists
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Modeling Differential Binding Of α 4β2 Nicotinic Acetylcholine Receptor With Agonists And Antagonists

机译:用激动剂和拮抗剂模拟α4β2烟碱乙酰胆碱受体的差异结合

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摘要

Three-dimensional structures of both the open- and closed-channel states of α4β2 receptor have been modeled and used to study their binding with representative agonists and antagonists. The obtained binding structures and free energies consistently reveal that antagonists bind more favorably with the closed-channel state and agonists bind more favorably with the open-channel state. The computational insights have led us to propose a computational strategy and protocol predicting whether a receptor ligand is an agonist or antagonist. Using the computational protocol, one only needs to calculate the relative binding free energies for a ligand binding with the open- and closed-channel structures. The ligand is predicted to be an agonist if the binding free energy calculated for the ligand binding with the open-channel state is significantly lower than that for its binding with the closed-channel state. If the binding free energy of a ligand with the open-channel state is higher than that with the closed-channel, the ligand is predicted to be an antagonist. The binding free energies calculated for all of the ligands binding with their most favorable channel states of the receptor are all close to the corresponding experimentally derived binding free energies. The new computational insights obtained and novel computational strategy and protocol proposed in this study are expected to be valuable in structure-based rational design of novel agonists/antagonists of nAChRs as therapeutic agents.
机译:已经对α4β2受体的开放和闭合通道状态的三维结构进行了建模,并用于研究它们与代表性激动剂和拮抗剂的结合。所获得的结合结构和自由能一致地揭示拮抗剂与闭路状态更有利地结合,激动剂与开路状态更有利地结合。计算的见解使我们提出了预测受体配体是激动剂还是拮抗剂的计算策略和方案。使用计算协议,只需要计算与开放和封闭通道结构结合的配体的相对结合自由能。如果计算出的与开路态结合的配体的结合自由能明显低于其与闭路态结合的结合自由能,则预测该配体是激动剂。如果具有开路状态的配体的结合自由能高于具有闭路状态的配体的结合自由能,则该配体被认为是拮抗剂。为所有配体以其最有利的通道状态结合而计算的结合自由能均接近于相应的实验衍生的结合自由能。这项研究中获得的新的计算见解和新的计算策略和协议有望在基于nAChRs的新型激动剂/拮抗剂作为治疗剂的基于结构的合理设计中有价值。

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