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首页> 外文期刊>The Journal of Chemical Physics >Electric field-controlled water permeation coupled to ion transport through a nanopore
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Electric field-controlled water permeation coupled to ion transport through a nanopore

机译:电场控制的水渗透与通过纳米孔的离子传输耦合

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We report molecular dynamics simulations of a generic hydrophobic nanopore connecting two reservoirs which are initially at different Na~+ concentrations,as in a biological cell.The nanopore is impermeable to water under equilibrium conditions,but the strong electric field caused by the ionic concentration gradient drives water molecules in.The density and structure of water in the pore are highly field dependent.In a typical simulation run,we observe a succession of cation passages through the pore,characterized by approximately bulk mobility.These ion passages reduce the electric field,until the pore empties of water and closes to further ion transport,thus providing a possible mechanism for biological ion channel gating.
机译:我们报道了一个通用的疏水性纳米孔的分子动力学模拟,该疏水性纳米孔连接了两个最初处于不同Na〜+浓度的储层,如在生物细胞中。在平衡条件下,纳米孔不透水,但由离子浓度梯度引起的强电场驱使水分子进入。孔隙中水的密度和结构高度依赖于电场。在典型的模拟运行中,我们观察到一系列通过孔隙的阳离子通道,其特征是具有近似整体迁移率。这些离子通道可减少电场,直到孔中的水排空并关闭以进一步进行离子传输,从而为生物离子通道门控提供了一种可能的机制。

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