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带有β-环糊精接头的α-溶血素的离子选择性。Ⅱ. 用巨正则蒙特卡罗/布朗动力学模拟研究多离子效应。

Ion selectivity of alpha-hemolysin with beta-cyclodextrin adapter. II. Multi-ion effects studied with grand canonical Monte Carlo/Brownian dynamics simulations.

机构信息

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

出版信息

J Phys Chem B. 2010 Mar 4;114(8):2901-9. doi: 10.1021/jp906791b.

Abstract

In a previous study of ion selectivity of alpha-hemolysin (alphaHL) in complex with beta-cyclodextrin (betaCD) adapter, we calculated the potential of mean force (PMF) and characterized the self-diffusion coefficients of isolated K(+) and Cl(-) ions using molecular dynamics simulations (Y. Luo et al., "Ion Selectivity of alpha-Hemolysin with beta-Cyclodextrin Adapter: I. Single Ion Potential of Mean Force and Diffusion Coefficient"). In the present effort, these results pertaining to single isolated ions in the wide aqueous pore are extended to take into account multi-ion effects. The grand canonical Monte Carlo/Brownian dynamics (GCMC/BD) algorithm is used to simulate ion currents through the wild-type alphaHL ion channel, as well as two engineered alphaHL mutants, with and without the cyclic oligosaccaride betaCD lodged in the lumen of the pore. The GCMC/BD current-voltage curves agree well with experimental results and show that betaCD increases the anion selectivity of alphaHL. Comparisons between multi-ion PMFs from GCMC/BD simulations and single-ion PMFs demonstrate that multi-ion effects and pore shape are crucial for explaining this behavior. It is concluded that the narrow betaCD adapter increases the anion selectivity of alphaHL because it reduces the pore radius locally, which decreases the ionic screening and the dielectric shielding of the strong electrostatic field induced by a nearby ring of positively charged alphaHL side chains.

摘要

在之前关于 α-溶血素(αHL)与 β-环糊精(βCD)衔接器的离子选择性的研究中,我们使用分子动力学模拟计算了平均力势(PMF),并对孤立的 K(+)和 Cl(-)离子的自扩散系数进行了特征化(Y. Luo 等人,“具有 β-环糊精衔接器的 α-溶血素的离子选择性:I. 单离子平均力势和扩散系数”)。在本研究中,将这些涉及宽水性孔中单离子的结果扩展到考虑多离子效应。我们使用巨正则蒙特卡罗/布朗动力学(GCMC/BD)算法模拟了野生型 αHL 离子通道以及两种工程化的 αHL 突变体(βCD 环寡糖存在于孔腔中或不存在于孔腔中)中离子电流。GCMC/BD 电流-电压曲线与实验结果吻合良好,表明 βCD 增加了 αHL 的阴离子选择性。从 GCMC/BD 模拟的多离子 PMF 与单离子 PMF 的比较表明,多离子效应和孔形状对于解释这种行为至关重要。得出的结论是,βCD 衔接器增加了 αHL 的阴离子选择性,因为它局部减小了孔径,从而减少了附近带正电荷的 αHL 侧链环引起的强静电场的离子屏蔽和介电屏蔽。

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