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钾离子通道KcsA内部的水与钾离子动态变化

Water and potassium dynamics inside the KcsA K(+) channel.

作者信息

Guidoni L, Torre V, Carloni P

机构信息

Istituto Nazionale per la Fisica della Materia, Italy and International School for Advanced Studies, Via Beirut 4, 34014 Trieste, Italy.

出版信息

FEBS Lett. 2000 Jul 14;477(1-2):37-42. doi: 10.1016/s0014-5793(00)01712-9.

Abstract

Molecular dynamics simulations and electrostatic modeling are used to investigate structural and dynamical properties of the potassium ions and of water molecules inside the KcsA channel immersed in a membrane-mimetic environment. Two potassium ions, initially located in the selectivity filter binding sites, maintain their position during 2 ns of dynamics. A third potassium ion is very mobile in the water-filled cavity. The protein appears engineered so as to polarize water molecules inside the channel cavity. The resulting water induced dipole and the positively charged potassium ion within the cavity are the key ingredients for stabilizing the two K(+) ions in the binding sites. These two ions experience single file movements upon removal of the potassium in the cavity, confirming the role of the latter in ion transport through the channel.

摘要

分子动力学模拟和静电建模用于研究沉浸在膜模拟环境中的KcsA通道内钾离子和水分子的结构与动力学性质。最初位于选择性过滤器结合位点的两个钾离子在2纳秒的动力学过程中保持其位置。第三个钾离子在充满水的腔内非常活跃。该蛋白质似乎经过设计,以便使通道腔内的水分子极化。由此产生的水诱导偶极子和腔内带正电的钾离子是稳定结合位点中两个K(+)离子的关键因素。在去除腔内的钾后,这两个离子经历单列移动,证实了后者在离子通过通道运输中的作用。

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