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KcsA钾通道的外部四乙铵阻断作用的功效:分子动力学与布朗动力学研究

Efficacy of external tetraethylammonium block of the KcsA potassium channel: molecular and Brownian dynamics studies.

作者信息

Bisset David, Chung Shin-Ho

机构信息

Research School of Biological Sciences, Australian National University, Australia.

出版信息

Biochim Biophys Acta. 2008 Oct;1778(10):2273-82. doi: 10.1016/j.bbamem.2008.05.008. Epub 2008 Jun 3.

Abstract

Blockade of the KcsA potassium channel by externally applied tetraethylammonium is investigated using molecular dynamics calculations and Brownian dynamics simulations. In KcsA, the aromatic rings of four tyrosine residues located just external to the selectivity filter create an attractive energy well or a binding cage for a tetraethylammonium molecule. We first investigate the effects of re-orienting the four tyrosine residues such that the centers of the aromatic rings face the tetraethylammonium molecule directly. Then, we systematically move the residues inward in both orientations so that the radius of the binding cage formed by them becomes smaller. For each configuration, we construct a one-dimensional free energy profile by bringing in a tetraethylammonium molecule from the external reservoir toward the selectivity filter. The free energy profile is then converted to a one-dimensional potential energy profile, taking the available space between the tyrosine residues and the tetraethylammonium molecule into account. Incorporating this potential energy profile into the Brownian dynamics algorithm, we determine the conductance properties of the channel under various conditions, construct the current-tetraethylammonium-concentration curve and compare it with the experimentally determined inhibitory constant k(i) for externally applied tetraethylammonium. We show that the experimentally determined binding affinity for externally applied tetraethylammonium can be replicated when each of the four tyrosine residues is moved inward by about 0.7 angstroms, irrespective of orientation of their aromatic rings.

摘要

利用分子动力学计算和布朗动力学模拟研究了外部施加的四乙铵对KcsA钾通道的阻断作用。在KcsA中,位于选择性过滤器外部的四个酪氨酸残基的芳香环为四乙铵分子创造了一个有吸引力的能量阱或结合笼。我们首先研究重新定位四个酪氨酸残基的影响,使芳香环的中心直接面向四乙铵分子。然后,我们系统地将残基向内移动,使它们形成的结合笼半径变小。对于每种构型,我们通过将一个四乙铵分子从外部储库引入到选择性过滤器来构建一维自由能分布。然后,考虑酪氨酸残基和四乙铵分子之间的可用空间,将自由能分布转换为一维势能分布。将该势能分布纳入布朗动力学算法,我们确定了通道在各种条件下的电导特性,构建了电流-四乙铵浓度曲线,并将其与外部施加四乙铵的实验测定抑制常数k(i)进行比较。我们表明,当四个酪氨酸残基中的每一个向内移动约0.7埃时,无论其芳香环的取向如何,都可以复制外部施加四乙铵的实验测定结合亲和力。

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