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运用分子动力学模拟为 NMR 实验提供信息,以表征 KcsA 离子通道的主要激活状态。

Informing NMR experiments with molecular dynamics simulations to characterize the dominant activated state of the KcsA ion channel.

机构信息

KTH Royal Institute of Technology, Science for Life Laboratory, Stockholm, Sweden.

Department of Chemistry, Columbia University, New York, New York 10027, USA.

出版信息

J Chem Phys. 2021 Apr 28;154(16):165102. doi: 10.1063/5.0040649.

Abstract

As the first potassium channel with an x-ray structure determined, and given its homology to eukaryotic channels, the pH-gated prokaryotic channel KcsA has been extensively studied. Nevertheless, questions related, in particular, to the allosteric coupling between its gates remain open. The many currently available x-ray crystallography structures appear to correspond to various stages of activation and inactivation, offering insights into the molecular basis of these mechanisms. Since these studies have required mutations, complexation with antibodies, and substitution of detergents in place of lipids, examining the channel under more native conditions is desirable. Solid-state nuclear magnetic resonance (SSNMR) can be used to study the wild-type protein under activating conditions (low pH), at room temperature, and in bacteriomimetic liposomes. In this work, we sought to structurally assign the activated state present in SSNMR experiments. We used a combination of molecular dynamics (MD) simulations, chemical shift prediction algorithms, and Bayesian inference techniques to determine which of the most plausible x-ray structures resolved to date best represents the activated state captured in SSNMR. We first identified specific nuclei with simulated NMR chemical shifts that differed significantly when comparing partially open vs fully open ensembles from MD simulations. The simulated NMR chemical shifts for those specific nuclei were then compared to experimental ones, revealing that the simulation of the partially open state was in good agreement with the SSNMR data. Nuclei that discriminate effectively between partially and fully open states belong to residues spread over the sequence and provide a molecular level description of the conformational change.

摘要

作为第一个被确定 X 射线结构的钾通道,并且与真核通道具有同源性,pH 门控原核通道 KcsA 已经被广泛研究。然而,特别是与门之间的变构偶联相关的问题仍然存在。目前许多可用的 X 射线晶体学结构似乎对应于激活和失活的各种阶段,为这些机制的分子基础提供了见解。由于这些研究需要突变、与抗体复合物以及用去污剂代替脂质,因此在更自然的条件下检查通道是可取的。固态核磁共振(SSNMR)可用于在室温下、在细菌模拟脂质体中研究激活条件(低 pH)下的野生型蛋白。在这项工作中,我们试图对 SSNMR 实验中存在的激活状态进行结构分配。我们使用分子动力学(MD)模拟、化学位移预测算法和贝叶斯推断技术的组合,来确定迄今为止分辨率最高的最合理的 X 射线结构中哪一个最能代表 SSNMR 中捕获的激活状态。我们首先确定了具有模拟 NMR 化学位移的特定核,当比较 MD 模拟中的部分开放与完全开放的集合时,这些核的化学位移差异非常显著。然后将这些特定核的模拟 NMR 化学位移与实验值进行比较,结果表明部分开放状态的模拟与 SSNMR 数据非常吻合。能够有效区分部分开放和完全开放状态的核属于分布在序列上的残基,并提供了构象变化的分子水平描述。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b26b/9250420/212eed5e4a5e/JCPSA6-000154-165102_1-g001.jpg

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