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Translocation of polymers in a lattice model

机译:晶格模型中的聚合物移位

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Voltage-driven polymer translocation is studied by means of a stochastic lattice model. The model incorporates voltage drop over the membrane as a bias in the hopping rate through the pore and exhibits the two main ingredients of the translocation process: driven motion through the pore and diffusive supply of chain length towards the pore on the cis-side and the drift away from the pore on the trans-side. The translocation time is either bias limited or diffusion limited. In the bias-limited regime the translocation time is inversely proportional to the voltage drop over the membrane. In the diffusion-limited regime the translocation time is independent of the applied voltage, but it is rather sensitive to the motion rules of the model. We find that the whole regime is well described by a single curve determined by the initial slope and the saturation value. The dependence of these parameters on the length of the chain, the motion rules and the repton statistics are established. Repulsion of reptons as well as the increase of chain length decrease the throughput of the polymer through the pore. As for free polymers, the inclusion of a mechanism for hernia creations/annihilations leads to the cross-over from Rouse-like behaviour to reptation. For the experimentally most relevant case (Rouse dynamics) the bimodal power law dependence of the translocation time on the chain length is found.
机译:通过随机晶格模型研究了电压驱动的聚合物移位。该模型结合了膜上的电压降作为通过孔的跳跃率的偏差,并显示了易位过程的两个主要成分:通过孔的驱动运动和朝着孔的顺侧和孔的链长的扩散供应。从反面的孔中飘出。移位时间是偏置限制的或扩散限制的。在偏压限制状态下,移位时间与膜上的电压降成反比。在扩散受限的情况下,移位时间与施加的电压无关,但是它对模型的运动规则相当敏感。我们发现,通过初始斜率和饱和度值确定的一条曲线可以很好地描述整个状态。这些参数对链长,运动规则和repton统计量的依赖关系得以建立。排斥的排斥以及链长的增加降低了聚合物通过孔的通量。对于游离聚合物,疝气产生/ an灭的机制的引入导致了从类似Rouse的行为过渡到Repting。对于实验上最相关的情况(鲁斯动力学),发现了转运时间对链长的双峰幂定律依赖性。

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