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聚电解质通过不对称α-溶血素通道的进入与转运。

Polyelectrolyte entry and transport through an asymmetric alpha-hemolysin channel.

作者信息

Gibrat Gabriel, Pastoriza-Gallego Manuela, Thiebot Bénédicte, Breton Marie-France, Auvray Loïc, Pelta Juan

出版信息

J Phys Chem B. 2008 Nov 27;112(47):14687-91. doi: 10.1021/jp808088y.

Abstract

We study the entry and transport of a polyelectrolyte, dextran sulfate (DS), through an asymmetric alpha-hemolysin protein channel inserted into a planar lipid bilayer. We compare the dynamics of the DS chains as they enter the channel at the opposite stem or vestibule sides. Experiments are performed at the single-molecule level by using an electrical method. The frequency of current blockades varies exponentially as a function of applied voltage. This frequency is smaller for the stem entrance than for the vestibule one, due to a smaller coupling with the electric field and a larger activation energy for entry. The value of the activation energy is quantitatively interpreted as an entropic effect of chain confinement. The translocation time decreases when the applied voltage increases and displays an exponential variation which is independent of the stem or vestibule sides.

摘要

我们研究了聚电解质硫酸葡聚糖(DS)通过插入平面脂质双分子层的不对称α-溶血素蛋白通道的进入和运输过程。我们比较了DS链在通道相对的柄部或前庭侧进入时的动力学。实验通过电学方法在单分子水平上进行。电流阻断的频率随施加电压呈指数变化。由于与电场的耦合较小以及进入的活化能较大,柄部入口处的该频率比前庭入口处的小。活化能的值被定量解释为链受限的熵效应。当施加电压增加时,转运时间减少,并呈现出与柄部或前庭侧无关的指数变化。

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