首页> 外文期刊>The Journal of Chemical Physics >Numerical and theoretical study on the mechanism of biopolymer translocation process through a nano-pore
【24h】

Numerical and theoretical study on the mechanism of biopolymer translocation process through a nano-pore

机译:纳米孔中生物聚合物移位过程机理的数值和理论研究

获取原文
获取原文并翻译 | 示例
           

摘要

We conducted a numerical study on the translocation of a biopolymer from the cis side to the trans side of a membrane through a synthetic nano-pore driven by an external electric field in the presence of hydrodynamic interactions (HIs). The motion of the polymer is simulated by 3D Langevin dynamics technique using a worm-like chain model of N identical beads, while HI between the polymer and fluid are incorporated by the lattice Boltzmann equation. The translocation process is induced by electrophoretic force, which sequentially straightens out the folds of the initial random configuration of the polymer chain on the cis side. Our simulation results on translocation time and velocity are in good quantitative agreement with the corresponding experimental ones when the surface charge on the nano-pore and the HI effect are considered explicitly. We found that the translocation velocity of each bead inside the nano-pore mainly depends upon the length of the straightened portion of the polymer in forced motion near the pore. We confirmed this by a theoretical formula. After performing simulations with different pore lengths, we observed that translocation velocity mainly depends upon the applied potential difference rather than upon the electric field inside the nano-pore.
机译:我们进行了数值研究,研究了在流体动力学相互作用(HIs)的作用下,生物聚合物通过由外部电场驱动的合成纳米孔从膜的顺式侧向膜的反式侧的移位。聚合物的运动通过3D Langevin动力学技术使用N个相同小珠的蠕虫状链模型进行模拟,而聚合物和流体之间的HI通过晶格Boltzmann方程合并。易位过程是由电泳力引起的,电泳力依次拉直了顺式侧聚合物链初始随机构型的折叠。当明确考虑纳米孔上的表面电荷和HI效应时,我们关于迁移时间和速度的模拟结果与相应的实验结果具有良好的定量一致性。我们发现,纳米孔内每个珠的移位速度主要取决于在孔附近受迫运动中聚合物的伸直部分的长度。我们通过理论公式证实了这一点。在用不同的孔径进行模拟后,我们观察到易位速度主要取决于所施加的电势差,而不取决于纳米孔内部的电场。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号