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首页> 外文期刊>Journal of molecular modeling >Ion conductance vs. pore gating and selectivity in KcsA channel: Modeling achievements and perspectives
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Ion conductance vs. pore gating and selectivity in KcsA channel: Modeling achievements and perspectives

机译:KcsA通道中离子电导率与孔门控和选择性的关系:建模成就和观点

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KcsA potassium channel belongs to a wide family of allosteric proteins that switch between closed and open states conformations in response to a stimulus, and act as a regulator of cation activity in living cells. The gating mechanism and cation selectivity of such channels have been extensively studied in the literature, with a revival emphasis these latter years, due to the publication of the crystallized structure of KcsA. Despite the increasing number of research and review papers on these topics, quantitative interpretation of these processes at the atomic scale is far from achieved. On the basis of available experimental and theoretical data, and by including our recent results, we review the progresses in this field of activity and discuss the weaknesses that should be corrected. In this spirit, we partition the channel into the filter, cavity, extra and intracellular media, in order to analyze separately the specificity of each region. Special emphasis is brought to the study of an open state for the channel and to the different properties generated by the opening. The influence of water as a structural and dynamical component of the channel properties in closed and open states, as well as in the sequential motions of the cations, is analyzed using molecular dynamics simulations and ab initio calculations. The polarization and charge transfer effects on the ions' dynamics and kinetics are discussed in terms of partial charge models.
机译:KcsA钾离子通道属于多种变构蛋白家族,它们可根据刺激在关闭状态和打开状态构象之间切换,并充当活细胞中阳离子活性的调节剂。这些通道的门控机理和阳离子选择性已在文献中进行了广泛研究,由于KcsA结晶结构的发表,近年来受到了关注。尽管有关这些主题的研究和评论论文数量不断增加,但仍无法在原子尺度上对这些过程进行定量解释。在可获得的实验和理论数据的基础上,并包括我们最近的结果,我们回顾了该活动领域的进展并讨论了应纠正的弱点。本着这种精神,我们将通道划分为过滤器,空腔,细胞外和细胞内介质,以便分别分析每个区域的特异性。特别强调研究通道的打开状态以及打开所产生的不同特性。使用分子动力学模拟和从头算的方法,分析了水在闭合和打开状态以及阳离子的顺序运动中作为通道特性的结构和动力学组成部分的影响。根据部分电荷模型讨论了极化和电荷转移对离子动力学和动力学的影响。

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