首页> 外文会议>Computational Science - ICCS 2007 pt.1; Lecture Notes in Computer Science; 4487 >Multiscale Modeling of Biopolymer Translocation Through a Nanopore
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Multiscale Modeling of Biopolymer Translocation Through a Nanopore

机译:生物聚合物通过纳米孔易位的多尺度建模

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We employ a multiscale approach to model the translocation of biopolymers through nanometer size pores. Our computational scheme combines microscopic Langevin molecular dynamics (MD) with a mesoscopic lattice Boltzmann (LB) method for the solvent dynamics, explicitly taking into account the interactions of the molecule with the surrounding fluid. Both dynamical and statistical aspects of the translocation process were investigated, by simulating polymers of various initial configurations and lengths. For a representative molecule size, we explore the effects of important parameters that enter in the simulation, paying particular attention to the strength of the molecule-solvent coupling and of the external electric field which drives the translocation process. Finally, we explore the connection between the generic polymers modeled in the simulation and DNA, for which interesting recent experimental results are available.
机译:我们采用一种多尺度方法来模拟生物聚合物通过纳米尺寸孔的移位。我们的计算方案结合了微观兰格文分子动力学(MD)和介观格子Boltzmann(LB)方法来进行溶剂动力学,明确考虑了分子与周围流体的相互作用。通过模拟各种初始构型和长度的聚合物,研究了移位过程的动力学和统计学方面。对于代表性的分子大小,我们探索了在仿真中输入的重要参数的影响,尤其要注意分子-溶剂偶联的强度以及驱动移位过程的外部电场的强度。最后,我们探索了在模拟中建模的通用聚合物与DNA之间的联系,为此,可以得到有趣的最新实验结果。

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