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首页> 外文期刊>The Journal of Chemical Physics >Polymer capture by α-hemolysin pore upon salt concentration gradient
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Polymer capture by α-hemolysin pore upon salt concentration gradient

机译:盐浓度梯度下通过α-溶血素孔捕获聚合物

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We have measured the rate of capture of single molecules of sodium poly(styrene sulfonate) by α-hemolysin protein pore by varying applied voltage, pH, and the salt concentration asymmetry across the pore. We show that electrostatic interaction between the polyelectrolyte and the protein pore significantly affects the polymer capture rate in addition to the enhancement of drift arising from electrolyte concentration gradient. At higher pH values where the electrostatic interaction between the polymer and the α-hemolysin pore is repulsive, an antagonistic coupling with the drift induced by salt concentration gradient emerges. This antagonistic coupling results in a nonmonotonic dependence of the polymer capture rate on the salt concentration in the donor compartment. The coupling between the pore-polymer interaction and drift can be weakened by increasing the strength of the electric field that drives the polymer translocation. In contrast, at lower pH values where the polymer-pore interaction is attractive, a synergy with the additional drift from salt concentration asymmetry arises and the capture rate depends monotonically on the donor salt concentration. For higher pH, we identify two regimes for the enhancement of capture rate by salt concentration gradient: (a) driftdominated regime, where the capture rate is roughly quadratic in the ratio of salt concentration in the receiver compartment to that in the donor compartment, and (b) antagonistic coupling regime at higher values of this ratio with a linear relation for the polymer capture rate.
机译:我们通过改变施加电压,pH值和整个孔中盐浓度的不对称性,测量了α-溶血素蛋白孔对聚苯乙烯磺酸钠单分子的捕获率。我们表明,除了电解质浓度梯度引起的漂移增强以外,聚电解质和蛋白质孔之间的静电相互作用还显着影响聚合物的捕获速率。在较高的pH值下,聚合物与α-溶血素孔之间的静电相互作用是排斥性的,与盐浓度梯度引起的漂移产生拮抗作用。这种拮抗性偶联导致聚合物捕获速率对供体区室中盐浓度的非单调依赖性。孔隙聚合物相互作用和漂移之间的耦合可以通过增加驱动聚合物移位的电场强度来减弱。相反,在较低的pH值(其中聚合物与孔之间的相互作用具有吸引力)下,会产生与盐浓度不对称引起的额外漂移的协同作用,捕获速率单调取决于供体盐浓度。对于较高的pH,我们确定了两种通过盐浓度梯度提高捕获率的方案:(a)漂移为主的方案,其中接收器室中盐浓度与供体室中盐浓度的比率捕获率大致为二次方,以及(b)在该比率的较高值下的拮抗偶联机制,其与聚合物捕获速率呈线性关系。

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