首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Computational study of drug binding to the membrane-bound tetrameric M2 peptide bundle from influenza A virus
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Computational study of drug binding to the membrane-bound tetrameric M2 peptide bundle from influenza A virus

机译:药物与甲型流感病毒膜结合的四聚体M2肽束结合的计算研究

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摘要

The M2 protein of influenza A virus performs the crucial function of transporting protons to the interior of virions enclosed in the endosome. Adamantane drugs, amantadine (AMN) and rimantidine (RMN), block the proton conduction in some strains, and have been used for the treatment and prophylaxis of influenza A infections. The structures of the transmembrane (TM) region of M2 that have been solved in micelles using NMR (residues 23-60) (Schnell and Chou, 2008) and by X-ray crystallography (residues 22-46) (Stouffer et al., 2008) suggest different drug binding sites: external and internal for RMN and AMN, respectively. We have used molecular dynamics (MD) simulations to investigate the nature of the binding site and binding mode of adamantane drugs on the membrane-bound tetrameric M2-TM peptide bundles using as initial conformations the low-pH AMN-bound crystal structure, a high-pH model derived from the drug-free crystal structure, and the high-pH NMR structure. The MD simulations indicate that under both low- and high-pH conditions, AMN is stable inside the tetrameric bundle, spanning the region between residues Val27 to Gly34. At low pH the polar group of AMN is oriented toward the His37 gate, while under high-pH conditions its orientation exhibits large fluctuations. The present MD simulations also suggest that AMN and RMN molecules do not show strong affinity to the external binding sites.
机译:甲型流感病毒的M2蛋白起着至关重要的功能,即将质子转运到内体中封闭的病毒粒子内部。金刚烷类药物金刚烷胺(AMN)和金刚烷胺(RMN)可以阻止某些菌株的质子传导,并已用于治疗和预防A型流感感染。 M2的跨膜(TM)区的结构已通过NMR(残基23-60)(Schnell和Chou,2008)和X射线晶体学(残基22-46)(Stouffer等, 2008)建议使用不同的药物结合位点:分别针对RMN和AMN的外部和内部。我们已经使用分子动力学(MD)模拟来研究金刚烷类药物在膜结合的四聚体M2-TM肽束上的结合位点和结合模式的性质,使用低pH值的AMN结合的晶体结构,高pH -pH模型源自无毒晶体结构和高pH NMR结构。 MD模拟表明,在低pH和高pH条件下,AMN在四聚体束中稳定,跨越残基Val27至Gly34之间的区域。在低pH下,AMN的极性基团朝向His37门,而在高pH条件下,其取向表现出较大的波动。当前的MD模拟还表明AMN和RMN分子对外部结合位点没有显示出强亲和力。

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