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金刚烷基胺类化合物抗突变型流感 A M2 通道活性的研究:通过分子动力学模拟和固态 NMR 研究发现多环笼状胺三阻断剂

A Study of the Activity of Adamantyl Amines against Mutant Influenza A M2 Channels Identified a Polycyclic Cage Amine Triple Blocker, Explored by Molecular Dynamics Simulations and Solid-State NMR.

机构信息

Department of Pharmacy, National and Kapodistrian University of Athens, Panepistimiopolis-Zografou, 15771, Athens, Greece.

Department of NMR-Based Structural Biology, Max Planck Institute for Biophysical Chemistry, Am Fassberg 11, Göttingen, Germany.

出版信息

ChemMedChem. 2023 Aug 15;18(16):e202300182. doi: 10.1002/cmdc.202300182. Epub 2023 Jul 25.

Abstract

We compared the anti-influenza potencies of 57 adamantyl amines and analogs against influenza A virus with serine-31 M2 proton channel, usually termed as WT M2 channel, which is amantadine sensitive. We also tested a subset of these compounds against viruses with the amantadine-resistant L26F, V27A, A30T, G34E M2 mutant channels. Four compounds inhibited WT M2 virus in vitro with mid-nanomolar potency, with 27 compounds showing sub-micromolar to low micromolar potency. Several compounds inhibited L26F M2 virus in vitro with sub-micromolar to low micromolar potency, but only three compounds blocked L26F M2-mediated proton current as determined by electrophysiology (EP). One compound was found to be a triple blocker of WT, L26F, V27A M2 channels by EP assays, but did not inhibit V27A M2 virus in vitro, and one compound inhibited WT, L26F, V27A M2 in vitro without blocking V27A M2 channel. One compound blocked only L26F M2 channel by EP, but did not inhibit virus replication. The triple blocker compound is as long as rimantadine, but could bind and block V27A M2 channel due to its larger girth as revealed by molecular dynamics simulations, while MAS NMR informed on the interaction of the compound with M2(18-60) WT or L26F or V27A.

摘要

我们比较了 57 种金刚烷胺及其类似物对流感 A 病毒与丝氨酸-31 M2 质子通道(通常称为 WT M2 通道)的抗流感活性,该通道对金刚烷胺敏感。我们还测试了这些化合物中的一部分对具有金刚烷胺耐药 L26F、V27A、A30T、G34E M2 突变体通道的病毒的抑制作用。四种化合物在体外以中纳摩尔效力抑制 WT M2 病毒,27 种化合物表现出亚微摩尔至低微摩尔效力。几种化合物以亚微摩尔至低微摩尔效力抑制 L26F M2 病毒,但只有三种化合物通过电生理学(EP)测定阻断 L26F M2 介导的质子电流。一种化合物被发现通过 EP 测定是 WT、L26F、V27A M2 通道的三重阻断剂,但不能抑制 L26F M2 病毒在体外的复制,一种化合物在体外抑制 WT、L26F、V27A M2 而不阻断 V27A M2 通道。一种化合物通过 EP 仅阻断 L26F M2 通道,但不能抑制病毒复制。三重阻断剂化合物与金刚烷胺一样长,但由于分子动力学模拟显示其更大的周长,它可以结合并阻断 V27A M2 通道,而 MAS NMR 则提供了化合物与 WT M2(18-60)或 L26F 或 V27A 的相互作用信息。

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