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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Dynamics of Ion Migration in Nanopores and the Effect of DNA-Ion Interaction1Shengting CuiDDepartment of Chemical and Biomolecular Engineering, University of Tennessee, Knoxville, Tennessee 37996-2200, United States
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Dynamics of Ion Migration in Nanopores and the Effect of DNA-Ion Interaction1Shengting CuiDDepartment of Chemical and Biomolecular Engineering, University of Tennessee, Knoxville, Tennessee 37996-2200, United States

机译:纳米孔中离子迁移动力学和DNA离子相互作用的影响1Shengting CuiD 田纳西大学化学与生物分子工程系,诺克斯维尔,田纳西州37996-2200,美国

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We have carried out Brownian dynamics calculations to investigate the effect of DNA-ion interaction on ion transport in a nanopore. We calculated the self-diffusion coefficient of monovalent ions in the presence of DNA in a nanopore and compared the result with that through an open pore, that is, without the presence of DNA. We find that the self-diffusion coefficient of the co-ions is essentially unaffected by the DNA. The self-diffusion coefficient of the counterions, on the other hand, is significantly reduced depending on the ion concentration. At high ion concentration, around 1 M, the effect of DNA on counterion diffusion is relatively small, causing a slight reduction in counterion diffusion coefficient.At low concentrations of a few millimolar, the effect is much larger, resulting in a reduction in counterion diffusion coefficient by a factor of about 2.5. The variation in the self-diffusion of the counterion is well described by accounting for the contributions from two components: the adsorbed counterions and the free counterions. Detailed dynamics of the DNA-counterion interaction is characterized by the varying length of the transient adsorption time of the counterions to the DNA charge sites and the exchange rate with the environment. This variation in counterion adsorption time is attributed to the ionic electric screening effect, which is in turn determined by the ion concentration.
机译:我们已经进行了布朗动力学计算,以研究DNA离子相互作用对纳米孔中离子迁移的影响。我们计算了在纳米孔中存在DNA时一价离子的自扩散系数,并将结果与​​通过开孔即不存在DNA的结果进行了比较。我们发现,co离子的自扩散系数基本上不受DNA的影响。另一方面,抗衡离子的自扩散系数根据离子浓度而显着降低。在高离子浓度下(约1 M),DNA对抗衡离子扩散的影响相对较小,导致抗衡离子扩散系数略有降低;在低浓度(几毫摩尔)的情况下,影响要大得多,导致抗衡离子扩散减少系数约为2.5。通过考虑两个成分的影响,可以很好地描述抗衡离子自扩散的变化:吸附的抗衡离子和游离的抗衡离子。 DNA与抗衡离子相互作用的详细动力学特征是抗衡离子对DNA电荷位点的瞬时吸附时间的长度以及与环境的交换速率的变化。抗衡离子吸附时间的这种变化归因于离子电屏蔽效应,而离子屏蔽效应又取决于离子浓度。

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