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电压门控钠通道对局部麻醉药结合的分子模拟

Molecular modeling of local anesthetic drug binding by voltage-gated sodium channels.

作者信息

Lipkind Gregory M, Fozzard Harry A

机构信息

Department of Biochemitsry and Molecular Biology, The University of Chicago, Illinois, USA.

出版信息

Mol Pharmacol. 2005 Dec;68(6):1611-22. doi: 10.1124/mol.105.014803. Epub 2005 Sep 20.

Abstract

Voltage-gated sodium (Na+) channels are targets for local anesthetic (LA) drugs that bind in the inner pore of the channel with affinities related to the channel gating states. Our core model of the sodium channel (P loops and S5 and S6 segments from each of the four domains) was closed because it was developed using coordinates from the KcsA channel crystallographic structure. We developed a model of the activated, open channel based on the structure of the open MthK channel, which was characterized by bends at the S6 glycine or serine residues. This created a conformation that allowed energetically appropriate docking of the LA drugs. The alkylamino head of ionizable LA molecules was docked closer to the selectivity filter and in association with Phe-1579 of IVS6 and Leu-1280 of IIIS6 (Nav1.4), and the aromatic ring interacted with Tyr-1586 of IVS6 and Asn-434 of IS6. Comparison of multiple LA drugs showed relative binding affinities in the model consistent with experimental studies. The ionizable LA alkylamino heads interact primarily by van der Waals forces that position the charge so as to create a positive electrostatic barrier for cation permeation. Permanently uncharged benzocaine could be docked in the closed conformation as well, stabilizing the closed conformation. The structurally different anticonvulsant lamotrigine and one of its derivatives have a binding site that fully overlaps with that of the LA drugs. The open, activated channel creates the high-affinity binding site for these sodium channel blocker drugs, and block may be mainly electrostatic.

摘要

电压门控钠(Na+)通道是局部麻醉药(LA)的作用靶点,这些药物以与通道门控状态相关的亲和力结合在通道的内部孔道中。我们的钠通道核心模型(来自四个结构域各自的P环以及S5和S6片段)是封闭的,因为它是使用KcsA通道晶体结构的坐标构建的。我们基于开放的MthK通道结构开发了一个激活态开放通道模型,该通道的特征是在S6位的甘氨酸或丝氨酸残基处存在弯曲。这产生了一种构象,使得局部麻醉药能够在能量上进行合适的对接。可电离局部麻醉药分子的烷基胺头部对接得更靠近选择性过滤器,并与IVS6的Phe-1579和IIIS6的Leu-1280(Nav1.4)相关联,其芳香环与IVS6的Tyr-1586和IS6的Asn-434相互作用。多种局部麻醉药的比较表明,模型中的相对结合亲和力与实验研究一致。可电离局部麻醉药的烷基胺头部主要通过范德华力相互作用,这种力将电荷定位,从而为阳离子渗透形成一个正静电屏障。永久不带电荷的苯佐卡因也可以以封闭构象进行对接,从而稳定封闭构象。结构不同的抗惊厥药拉莫三嗪及其一种衍生物具有与局部麻醉药完全重叠的结合位点。开放的激活通道为这些钠通道阻滞剂药物创造了高亲和力结合位点,并且阻断作用可能主要是静电作用。

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