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首页> 外文期刊>The Journal of Chemical Physics >First passage time distribution of chaperone driven polymer translocation through a nanopore: Homopolymer and heteropolymer cases
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First passage time distribution of chaperone driven polymer translocation through a nanopore: Homopolymer and heteropolymer cases

机译:分子伴侣驱动的聚合物通过纳米孔的第一次通过时间分布:均聚物和杂聚物情况

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Combining the advection-diffusion equation approach with Monte Carlo simulations we study chaperone driven polymer translocation of a stiff polymer through a nanopore. We demonstrate that the probability density function of first passage times across the pore depends solely on the Péclet number, a dimensionless parameter comparing drift strength and diffusivity. Moreover it is shown that the characteristic exponent in the power-law dependence of the translocation time on the chain length, a function of the chaperone-polymer binding energy, the chaperone concentration, and the chain length, is also effectively determined by the Péclet number. We investigate the effect of the chaperone size on the translocation process. In particular, for large chaperone size, the translocation progress and the mean waiting time as function of the reaction coordinate exhibit pronounced sawtooth-shapes. The effects of a heterogeneous polymer sequence on the translocation dynamics is studied in terms of the translocation velocity, the probability distribution for the translocation progress, and the monomer waiting times.
机译:将对流扩散方程方法与蒙特卡洛模拟相结合,我们研究了分子伴侣驱动的刚性聚合物通过纳米孔的聚合物移位。我们证明了穿过孔的第一次通过时间的概率密度函数仅取决于佩克莱特数,后者是比较漂移强度和扩散率的无量纲参数。此外,还表明,通过Péclet数也有效地确定了易位时间对链长的幂律依赖性,伴侣-聚合物结合能,伴侣浓度和链长的函数的特征指数。 。我们调查了分子伴侣大小对易位过程的影响。特别是,对于大分子伴侣,易位进展和作为反应坐标的函数的平均等待时间表现出明显的锯齿形。根据易位速度,易位进展的概率分布和单体等待时间,研究了异质聚合物序列对易位动力学的影响。

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