首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Blocking of the nicotinic acetylcholine receptor ion channel by chlorpromazine, a noncompetitive inhibitor: A molecular dynamics simulation study
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Blocking of the nicotinic acetylcholine receptor ion channel by chlorpromazine, a noncompetitive inhibitor: A molecular dynamics simulation study

机译:非竞争性抑制剂氯丙嗪阻断烟碱乙酰胆碱受体离子通道的分子动力学模拟研究

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摘要

A large series of pharmacological agents, distinct from the typical competitive antagonists, block in a noncompetitive manner the permeability response of the nicotinic acetylcholine receptor ( nAChR) to the neurotransmitter acetylcholine. Taking the neuroleptic chlorpromazine (CPZ) as an example of such agents, the blocking mechanism of noncompetitive inhibitors to the ion channel pore of the nAChR has been explored at the atomic level using both conventional and steered molecular dynamics (MD) simulations. Repeated steered MD simulations have permitted calculation of the free energy (similar to 36 kJ/mol) of CPZ binding and identification of the optimal site in the region of the serine and leucine rings, at similar to 4 angstrom from the pore entrance. Coulomb and the Lennard-Jones interactions between CPZ and the ion channel as well as the conformational fluctuations of CPZ were examined to assess the contribution of each to the binding of CPZ to the nAChR. The MD simulations disclose a dynamic interaction of CPZ binding to the nAChR ionic channel. The cationic ammonium head of CPZ forms strong hydrogen bonds with Glu262 (alpha), Asp268 (beta), Glu272 (beta), Ser276 (beta), Glu280 (delta), Gln271 (gamma), Glu275 (gamma), and Asn279 (gamma) nAChR residues. Finally, the conventional MD simulation of CPZ at its identified binding site demonstrates that the binding of CPZ not only blocks ion transport through the channel but also markedly inhibits the
机译:与典型的竞争性拮抗剂不同的一系列药理学剂以非竞争性方式阻断烟碱型乙酰胆碱受体(nAChR)对神经递质乙酰胆碱的通透性反应。以抗精神病药物氯丙嗪(CPZ)为例,使用常规和动态分子动力学(MD)模拟在原子水平上研究了非竞争性抑制剂对nAChR离子通道孔的封闭机制。重复的定向MD模拟已经允许计算CPZ结合的自由能(类似于36 kJ / mol),并可以确定丝氨酸和亮氨酸环区域的最佳位点,距离孔入口大约4埃。研究了CPZ和离子通道之间的库仑和Lennard-Jones相互作用以及CPZ的构象涨落,以评估它们各自对CPZ与nAChR结合的贡献。 MD模拟揭示了CPZ与nAChR离子通道结合的动态相互作用。 CPZ的阳离子铵头与Glu262(α),Asp268(β),Glu272(β),Ser276(β),Glu280(δ),Gln271(γ),Glu275(γ)和Asn279(γ)形成强氢键)nAChR残基。最后,CPZ在其确定的结合位点的常规MD模拟表明,CPZ的结合不仅阻止离子通过通道的转运,而且还显着抑制了离子通道的迁移。

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