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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Balancing the Interactions of Ions, Water, and DNA in the Drude Polarizable Force Field
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Balancing the Interactions of Ions, Water, and DNA in the Drude Polarizable Force Field

机译:平衡Drude极化力场中离子,水和DNA的相互作用

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摘要

Recently we presented a first-generation all-atom Drude polarizable force field for DNA based on the classical Drude oscillator model, focusing on optimization of key dihedral angles followed by extensive validation of the force field parameters. Presently, we describe the procedure for balancing the electrostatic interactions between ions, water, and DNA as required for development of the Drude force field for DNA. The proper balance of these interactions is shown to impact DNA stability and subtler conformational properties, including the conformational equilibrium between the BI and BII states, and the A and B forms of DNA. The parametrization efforts were simultaneously guided by gas-phase quantum mechanics (QM) data on small model compounds and condensed-phase experimental data on the hydration and osmotic properties of biologically relevant ions and their solutions, as well as theoretical predictions for ionic distribution around DNA oligomer. In addition, fine-tuning of the internal base parameters was performed to obtain the final DNA model. Notably, the Drude model is shown to more accurately reproduce countenon condensation theory predictions of DNA charge neutralization by the condensed ions as compared to the CHARMM36 additive DNA force field, indicating an improved physical description of the forces dictating the ionic solvation of DNA due to the explicit treatment of electronic polarizability. In combination with the polarizable DNA force field, the availability of Drude polarizable parameters for proteins, lipids, and carbohydrates will allow for simulation studies of heterogeneous biological systems.
机译:最近,我们提出了基于经典Drude振荡器模型的第一代全原子Drude可极化极化力场,其重点是优化关键二面角,随后对力场参数进行了广泛验证。目前,我们描述了用于平衡离子,水和DNA之间静电相互作用的过程,这是开发DNA的Drude力场所需的。这些相互作用的适当平衡已显示出会影响DNA稳定性和更精细的构象特性,包括BI和BII状态以及DNA的A和B形式之间的构象平衡。同时通过小型模型化合物的气相量子力学(QM)数据和生物相关离子及其溶液的水合和渗透性质的浓缩实验数据以及有关DNA周围离子分布的理论预测,同时进行参数化工作低聚物。另外,进行了内部碱基参数的微调以获得最终的DNA模型。值得注意的是,与CHARMM36附加DNA力场相比,显示出Drude模型可以更精确地重现计数离子凝聚理论对DNA电荷中和DNA电荷中和的预测,表明对由于DNA引起的离子化溶剂的力的物理描述得到了改进。电子极化率的明确处理。结合可极化的DNA力场,蛋白质,脂质和碳水化合物的Drude极化参数的可用性将允许对异质生物系统进行仿真研究。

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