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Near-microsecond human aquaporin 4 gating dynamics in static and alternating external electric fields: Non-equilibrium molecular dynamics

机译:静态和交替外部电场中近微秒级人类水通道蛋白4的门控动力学:非平衡分子动力学

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An extensive suite of non-equilibrium molecular-dynamics simulation has been performed for similar to 0.85-0.9 mu s of human aquaporin 4 in the absence and presence of externally applied static and alternating electric fields applied along the channels (in both axial directions in the static case, taken as the laboratory z-axis). These external fields were of 0.0065 V/angstrom (r.m.s.) intensity (of the same order as physiological electrical potentials); alternating fields ranged in frequency from 2.45 to 500 GHz. In-pore gating dynamics was studied, particularly of the relative propensities for "open" and "closed" states of the conserved arginines in the arginine/aromatic area (itself governed in no small part by external-field response of the dipolar alignment of the histidine-201 residue in the selectivity filter). In such a manner, the intimate connection of field-response governing "two-state" histidine states was established statistically and mechanistically. Given the appreciable size of the energy barriers for histidine-201 alignment, we have also performed non-equilibrium metadynamics/local-elevation of static fields applied along both directions to construct the free-energy landscape thereof in terms of external-field direction, elucidating the importance of field direction on energetics. We conclude from direct measurement of deterministic molecular dynamics in conjunction with applied-field metadynamics that the intrinsic electric field within the channel points along the + z-axis, such that externally applied static fields in this direction serve to "open" the channel in the selectivity-filter and the asparagine-proline-alanine region. Published by AIP Publishing.
机译:在不存在和存在沿通道(沿轴向两个轴向)施加外部施加的静态和交变电场的情况下,已对类似于0.85-0.9μs的人水通道蛋白4进行了广泛的非平衡分子动力学模拟。静态情况,作为实验室的z轴)。这些外部电场强度为0.0065 V /埃(r.m.s。)(与生理电势相同);交变场的频率范围为2.45至500 GHz。研究了孔内门控动力学,特别是在精氨酸/芳族区域中保守的精氨酸的“开放”和“闭合”状态的相对倾向(其本身在很大程度上受电子偶极排列的外场响应支配)。选择性过滤器中的组氨酸201残基)。以这种方式,统计和机械地建立了控制“两个状态”组氨酸状态的场响应的紧密联系。给定组氨酸201排列的能垒的大小可观,我们还进行了沿两个方向施加的静态非平衡元动力学/静态场的局部升高,以构造其在外场方向上的自由能态,从而阐明场向对能量学的重要性。我们从对确定性分子动力学的直接测量与外加的场动力学一起得出结论,即通道内的固有电场沿+ z轴指向,这样,在该方向上的外部施加的静电场用于“打开”通道。选择性过滤器和天冬酰胺脯氨酸丙氨酸区域。由AIP Publishing发布。

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