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A computational study of ion binding and protonation states in the KcaA potassium channel

机译:KcaA钾离子通道中离子结合和质子化态的计算研究

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We report results from microscopic molecular dynamics and free energy perturbation simulations of the KcsA potassium channel based on its experimental atomic structure. Conformational properties of selected amino acid residues as well as equilibrium positions of K~+ ions inside the selectivity filter and the internal water cavity are examined. Positions three and four (counting from the extracellular site) in the experimental structure correspond to distinctly separate binding sites for K~+ ions inside the selectivity filter. The protonation states of Glu71 and Asp80, which are close to each other and to the selectivity filter, as well as K~+ binding energies are determined using free energy perturbation calculations. The Glu71 residue which is buried inside a protein cavity is found to be most stable in the neutral form while the solvent exposed Asp80 is ionized. The channel altogether exothermically binds up to three ions, where two of them are located inside the selectivity filter and one in the internal water cavity. Ion permeation mechanisms are discussed in relation to these results.
机译:我们报告的微观分子动力学和KcsA钾通道基于其实验原子结构的自由能扰动模拟的结果。检查了所选氨基酸残基的构象性质,以及选择性过滤器和内部水腔内K〜+离子的平衡位置。实验结构中的位置3和4(从细胞外位点开始计数)分别对应于选择性过滤器中K〜+离子的明显分开的结合位点。 Glu71和Asp80的质子化状态彼此接近且与选择性滤光片接近,并且使用自由能扰动计算确定K〜+结合能。发现掩埋在蛋白质腔内的Glu71残基在中性形式下最稳定,而暴露于Asp80的溶剂被电离。通道总共放热结合多达三个离子,其中两个位于选择性过滤器内部,一个位于内部水腔中。结合这些结果讨论了离子渗透机理。

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