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首页> 外文期刊>The Journal of Chemical Physics >A coarse-grained DNA model for the prediction of current signals in DNA translocation experiments
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A coarse-grained DNA model for the prediction of current signals in DNA translocation experiments

机译:粗粒DNA模型用于预测DNA易位实验中的电流信号

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摘要

We present an implicit solvent coarse-grained double-stranded DNA (dsDNA) model confined to an infinite cylindrical pore that reproduces the experimentally observed current modulations of a KaCl solution at various concentrations. Our model extends previous coarse-grained and mean-field approaches by incorporating a position dependent friction term on the ions, which Kesselheim et al. [Phys. Rev. Lett. 112, 018101 (2014)] identified as an essential ingredient to correctly reproduce the experimental data of Smeets et al. [Nano Lett. 6, 89 (2006)]. Our approach reduces the computational effort by orders of magnitude compared with all-atom simulations and serves as a promising starting point for modeling the entire translocation process of dsDNA. We achieve a consistent description of the system's electrokinetics by using explicitly parameterized ions, a friction term between the DNA beads and the ions, and a lattice-Boltzmann model for the solvent. Published by AIP Publishing.
机译:我们提出了一种隐含的溶剂粗粒双链DNA(dsDNA)模型,该模型被限制在无限大的圆柱孔中,该孔可重现实验观察到的各种浓度的KaCl溶液的电流调节。我们的模型通过在离子上引入位置相关的摩擦项来扩展先前的粗粒度方法和平均场方法,Kesselheim等人(2002年)。 [物理牧师[112,018101(2014)]被确定为正确复制Smeets等人的实验数据的必要成分。 [Nano Lett。 6,89(2006)]。与全原子模拟相比,我们的方法将计算工作量减少了几个数量级,并为建立dsDNA的整个易位过程建模提供了有希望的起点。通过使用明确参数化的离子,DNA珠与离子之间的摩擦项以及溶剂的晶格-玻尔兹曼模型,我们获得了系统电动动力学的一致描述。由AIP Publishing发布。

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