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在使用加性CHARMM36和德鲁德极化力场的分子动力学模拟中,Li(+)、Na(+)、K(+)和Rb(+)单价离子对DNA的竞争。

Competition among Li(+), Na(+), K(+), and Rb(+) monovalent ions for DNA in molecular dynamics simulations using the additive CHARMM36 and Drude polarizable force fields.

作者信息

Savelyev Alexey, MacKerell Alexander D

机构信息

Department of Pharmaceutical Sciences, School of Pharmacy, University of Maryland, Baltimore, Maryland 21201, United States.

出版信息

J Phys Chem B. 2015 Mar 26;119(12):4428-40. doi: 10.1021/acs.jpcb.5b00683. Epub 2015 Mar 18.

Abstract

In the present study we report on interactions of and competition between monovalent ions for two DNA sequences in MD simulations. Efforts included the development and validation of parameters for interactions among the first-group monovalent cations, Li(+), Na(+), K(+), and Rb(+), and DNA in the Drude polarizable and additive CHARMM36 force fields (FF). The optimization process targeted gas-phase QM interaction energies of various model compounds with ions and osmotic pressures of bulk electrolyte solutions of chemically relevant ions. The optimized ionic parameters are validated against counterion condensation theory and buffer exchange-atomic emission spectroscopy measurements providing quantitative data on the competitive association of different monovalent ions with DNA. Comparison between experimental and MD simulation results demonstrates that, compared to the additive CHARMM36 model, the Drude FF provides an improved description of the general features of the ionic atmosphere around DNA and leads to closer agreement with experiment on the ionic competition within the ion atmosphere. Results indicate the importance of extended simulation systems on the order of 25 Å beyond the DNA surface to obtain proper convergence of ion distributions.

摘要

在本研究中,我们报告了在分子动力学(MD)模拟中一价离子与两个DNA序列之间的相互作用和竞争。工作包括在德鲁德极化和加和性CHARMM36力场(FF)中开发和验证第一族一价阳离子Li(+)、Na(+)、K(+)和Rb(+)与DNA之间相互作用的参数。优化过程以各种模型化合物与离子的气相量子力学(QM)相互作用能以及化学相关离子的本体电解质溶液的渗透压为目标。针对抗衡离子凝聚理论和缓冲液交换-原子发射光谱测量对优化后的离子参数进行验证,这些测量提供了不同一价离子与DNA竞争结合的定量数据。实验结果与MD模拟结果的比较表明,与加和性CHARMM36模型相比,德鲁德力场能更好地描述DNA周围离子氛围的一般特征,并且在离子氛围内的离子竞争方面与实验结果更接近。结果表明,在DNA表面之外扩展约25 Å的模拟系统对于获得离子分布的适当收敛很重要。

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