Department of Biochemistry and Molecular Biology, The University of Chicago, Chicago, Illinois, USA.
J Phys Chem B. 2010 Jan 21;114(2):952-8. doi: 10.1021/jp906790f.
The alpha-hemolysin (alphaHL) is a self-assembling exotoxin that binds to the membrane of a susceptible host cell and causes its death. Experimental studies show that electrically neutral beta-cyclodextrin (betaCD) can insert into the alphaHL channel and significantly increase its anion selectivity. To understand how betaCD can affect ion selectivity, molecular dynamics simulations and potential of mean force (PMF) calculations are carried out for different alphaHL channels with and without the betaCD adapter. A multiscale approach based on the generalized solvent boundary potential is used to reduce the size of the simulated system. The PMF profiles reveal that betaCD has no anion selectivity by itself but can increase the Cl(-) selectivity of the alphaHL channel when lodged into the pore lumen. Analysis shows that betaCD causes a partial desolvation of ions and affects the orientation of nearby charged residues. The ion selectivity appears to result from increased electrostatic interaction between the ion and the channel due to a reduction in dielectric shielding by the solvent. These observations suggest a reasonable explanation of the ion selectivity and provide important information for further ion channel modification.
α-溶血素(alphaHL)是一种自我组装的外毒素,它与易感宿主细胞的膜结合并导致其死亡。实验研究表明,电中性的β-环糊精(βCD)可以插入到 alphaHL 通道中,并显著增加其阴离子选择性。为了了解βCD 如何影响离子选择性,我们对有和没有βCD 接头的不同 alphaHL 通道进行了分子动力学模拟和平均力势(PMF)计算。我们使用了一种基于广义溶剂边界势的多尺度方法来减小模拟系统的尺寸。PMF 曲线表明,βCD 本身没有阴离子选择性,但当它位于孔腔中时,可以增加 alphaHL 通道对 Cl(-)的选择性。分析表明,βCD 会使离子部分去溶剂化,并影响附近带电残基的取向。离子选择性似乎是由于溶剂的介电屏蔽减少,导致离子与通道之间的静电相互作用增强所致。这些观察结果为离子选择性提供了合理的解释,并为进一步的离子通道修饰提供了重要信息。