Institute for Molecular Modeling and Simulation, University of Natural Resources and Life Sciences, Vienna, Austria.
J Comput Chem. 2020 Dec 15;41(32):2740-2749. doi: 10.1002/jcc.26426. Epub 2020 Oct 7.
Molecular simulations of nanoscale systems invariably involve assumptions and approximations to describe the electrostatic interactions, which are long-ranged in nature. One approach is the use of cutoff schemes with a reaction-field contribution to account for the medium outside the cutoff scheme. Recent reports show that macroscopic properties may depend on the exact choice of cutoff schemes in modern day simulations. In this work, a systematic analysis of the effects of different cutoff schemes was performed using a set of 52 proteins. We find no statistically significant differences between using a twin-range or a single-range cutoff scheme. Applying the cutoff based on charge groups or based on atomic positions, does lead to significant differences, which is traced to the cutoff noise for energies and forces. While group-based cutoff schemes show increased cutoff noise in the potential energy, applying an atomistic cutoff leads to artificial structure in the solvent at the cutoff distance. Carefully setting the temperature control, or using an atomistic cutoff for the solute and a group-based cutoff for the solvent significantly reduces the effects of the cutoff noise, without introducing structure in the solvent. This study aims to deepen the understanding of the implications different cutoffs have on molecular dynamics simulations.
纳米尺度系统的分子模拟不可避免地需要假设和近似来描述静电相互作用,这些相互作用在本质上是长程的。一种方法是使用带有反应场贡献的截止方案来考虑截止方案之外的介质。最近的报告表明,宏观性质可能取决于现代模拟中截止方案的精确选择。在这项工作中,使用一组 52 个蛋白质对不同截止方案的影响进行了系统分析。我们发现使用双范围或单范围截止方案之间没有统计学上的显著差异。基于电荷基团或基于原子位置应用截止,确实会导致显著差异,这可以追溯到能量和力的截止噪声。虽然基于基团的截止方案在势能中显示出增加的截止噪声,但应用原子截止会导致在截止距离处溶剂中出现人为结构。仔细设置温度控制,或者对溶质使用原子截止,对溶剂使用基于基团的截止,可以大大减少截止噪声的影响,而不会在溶剂中引入结构。本研究旨在加深对不同截止对分子动力学模拟影响的理解。