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AMBER - 99力场中单价离子的参数:误差评估与改进建议

Parameters of monovalent ions in the AMBER-99 forcefield: assessment of inaccuracies and proposed improvements.

作者信息

Chen Alan A, Pappu Rohit V

机构信息

Molecular Biophysics Program & Center for Computational Biology, Washington University School of Medicine, St Louis, MO 63110, USA.

出版信息

J Phys Chem B. 2007 Oct 18;111(41):11884-7. doi: 10.1021/jp0765392. Epub 2007 Sep 22.

Abstract

The monovalent ion parameters used by the AMBER-99 forcefield are shown to exhibit physically inaccurate behavior in molecular dynamics simulations of strong 1:1 electrolytes. These errors arise from an ad hoc adaptation of Aqvist's cation parameters. The result is the rapid formation of large, unphysical clusters at concentrations that are well below solubility limits. The observed unphysical behavior poses a serious challenge for simulating ions around highly charged polymers such as nucleic acids. In this communication, we explain the source of this unphysical behavior. To facilitate the continued use of the popular AMBER parameters, we prescribe a simple fix whereby Aqvist's cations and anions are used in conjunction with the AMBER forcefield for nucleic acids. A preliminary test of this strategy suggests that the proposed fix is reasonable and is likely to be generalizable for simulating diffuse and specific ion binding to nucleic acids.

摘要

AMBER - 99力场使用的单价离子参数在强1:1电解质的分子动力学模拟中表现出物理上不准确的行为。这些误差源于对阿奎斯特阳离子参数的临时调整。结果是在远低于溶解度极限的浓度下迅速形成大的、不符合物理实际的聚集体。观察到的这种不符合物理实际的行为对模拟诸如核酸等高电荷聚合物周围的离子构成了严峻挑战。在本通讯中,我们解释了这种不符合物理实际行为的来源。为便于继续使用流行的AMBER参数,我们规定了一种简单的修正方法,即将阿奎斯特的阳离子和阴离子与用于核酸的AMBER力场结合使用。对该策略的初步测试表明,所提出的修正方法是合理的,并且可能适用于模拟与核酸的扩散和特异性离子结合。

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