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Toward the correction of effective electrostatic forces in explicit-solvent molecular dynamics simulations: restraints on solvent-generated electrostatic potential and solvent polarization

机译:在显式溶剂分子动力学模拟中纠正有效静电力:限制溶剂产生的静电势和溶剂极化

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摘要

Despite considerable advances in computing power, atomistic simulations under nonperiodic boundary conditions, with Coulombic electrostatic interactions and in systems large enough to reduce finite-size associated errors in thermodynamic quantities to within the thermal energy, are still not affordable. As a result, periodic boundary conditions, systems of microscopic size and effective electrostatic interaction functions are frequently resorted to. Ensuing artifacts in thermodynamic quantities are nowadays routinely corrected a posteriori, but the underlying configurational sampling still descends from spurious forces. The present study addresses this problem through the introduction of on-the-fly corrections to the physical forces during an atomistic molecular dynamics simulation. Two different approaches are suggested, where the force corrections are derived from special potential energy terms. In the first approach, the solvent-generated electrostatic potential sampled at a given atom site is restrained to a target value involving corrections for electrostatic artifacts. In the second approach, the long-range regime of the solvent polarization around a given atom site is restrained to the Born polarization, i.e., the solvent polarization corresponding to the ideal situation of a macroscopic system under nonperiodic boundary conditions and governed by Coulombic electrostatic interactions. The restraints are applied to the explicit-water simulation of a hydrated sodium ion, and the effect of the restraints on the structural and energetic properties of the solvent is illustrated. Furthermore, by means of the calculation of the charging free energy of a hydrated sodium ion, it is shown how the electrostatic potential restraint translates into the on-the-fly consideration of the corresponding free-energy correction terms. It is discussed how the restraints can be generalized to situations involving several solute particles. Although the present study considers a very simple system only, it is an important step toward the on-the-fly elimination of finite-size and approximate-electrostatic artifacts during atomistic molecular dynamics simulations.Electronic supplementary materialThe online version of this article (doi:10.1007/s00214-014-1600-8) contains supplementary material, which is available to authorized users.
机译:尽管计算能力有了长足的进步,但在非周期性边界条件下,具有库伦静电相互作用以及在足够大的系统中将热力学量的有限尺寸相关误差减少到热能范围内的系统中的原子模拟仍然是负担不起的。结果,经常采用周期性边界条件,微观尺寸的系统和有效的静电相互作用功能。如今,通常以后验方式校正随之而来的热力学量的伪影,但潜在的构造采样仍源自虚假力。本研究通过在原子分子动力学模拟过程中对物理力进行即时校正来解决此问题。建议了两种不同的方法,其中力校正是从特殊的势能项得出的。在第一种方法中,在给定原子位点采样的溶剂产生的静电势被限制在一个目标值上,该目标值涉及静电伪影的校正。在第二种方法中,围绕给定原子位点的溶剂极化的长程机制被限制为Born极化,即,溶剂极化对应于非周期性边界条件下宏观系统的理想情况并受库仑静电相互作用控制。将约束条件应用于水合钠离子的显式水模拟,并说明了约束条件对溶剂的结构和能量性质的影响。此外,通过计算水合钠离子的带电自由能,显示了静电势垒如何转化为对相应自由能校正项的即时考虑。讨论了如何将约束条件推广到涉及多个溶质颗粒的情况。尽管本研究仅考虑一个非常简单的系统,但这是朝着消除原子分子动力学仿真过程中的有限大小和近似静电伪像迈出的重要一步。电子补充材料本文的在线版本(doi: 10.1007 / s00214-014-1600-8)包含补充材料,授权用户可以使用。

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