首页> 外文期刊>Journal of Molecular Biology >Mechanism of intracellular block of the KcsA K+ channel by tetrabutylammonium: Insights from X-ray crystallography, electrophysiology and replica-exchange molecular dynamics simulations
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Mechanism of intracellular block of the KcsA K+ channel by tetrabutylammonium: Insights from X-ray crystallography, electrophysiology and replica-exchange molecular dynamics simulations

机译:四丁基铵对KcsA K +通道的细胞内阻滞机制:X射线晶体学,电生理学和复制交换分子动力学模拟的见解

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摘要

The mechanism of intracellular blockade of the KcsA potassium channel by tetrabutylammonium (TBA) is investigated through functional, structural and computational studies. Using planar-membrane electrophysiological recordings, we characterize the binding kinetics as well as the dependence on the transmembrane voltage and the concentration of the blocker. It is found that the apparent affinity of the complex is significantly greater than that of any of the eukaryotic K+ channels studied previously, and that the off-rate increases with the applied transmembrane voltage. In addition, we report a crystal structure of the KcsA-TBA complex at 2.9 angstrom resolution, with TBA bound inside the large hydrophobic cavity located at the center of the studies. Of particular interest is the observation that the presence of TBA has a negligible effect on the channel structure and on the position of the potassium ions occupying the selectivity filter. Inspection of the electron density corresponding to TBA suggests that the ligand may adopt more than one conformation in the complex, though the moderate resolution of the data precludes a definitive interpretation on the basis of the crystallographic refinement methods alone. To provide a rationale for these observations, we carry out an extensive conformational sampling of an atomic model of TBA bound in the central cavity of KcsA, using the Hamiltonian replica-exchange molecular dynamics simulation method. Comparison of the simulated and experimental density maps indicates that the latter does reflect at least two distinct binding orientations of TBA. The simulations show also that the relative population of these binding modes is dependent on the ion configuration occupying the selectivity filter, thus providing a clue to the nature of the voltage-dependence of the binding kinetics. (c) 2006 Published by Elsevier Ltd.
机译:通过功能,结构和计算研究,研究了四丁基铵(TBA)阻断KcsA钾通道的细胞内机制。使用平面膜电生理记录,我们表征了结合动力学以及对跨膜电压和阻滞剂浓度的依赖性。发现该复合物的表观亲和力明显大于先前研究的任何真核K +通道的表观亲和力,并且断开速率随所施加的跨膜电压而增加。此外,我们报告了2.9埃分辨率的KcsA-TBA复合物的晶体结构,TBA结合在位于研究中心的大疏水腔内。特别令人感兴趣的是,观察到TBA的存在对通道结构和钾离子占据选择性过滤器的位置的影响可忽略不计。检查对应于TBA的电子密度表明,配体在复合物中可采用多个构象,尽管数据的中等分辨率无法仅基于晶体学细化方法进行明确的解释。为了为这些观察提供理论依据,我们使用哈密顿量复制交换分子动力学模拟方法对结合在KcsA中心腔中的TBA原子模型进行了广泛的构象采样。模拟密度图和实验密度图的比较表明,后者确实反映了TBA的至少两个不同的结合方向。模拟还表明,这些结合模式的相对数量取决于占据选择性过滤器的离子构型,从而为结合动力学的电压依赖性提供了线索。 (c)2006年由Elsevier Ltd.发布。

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