Department of Chemistry and Supercomputing Institute, University of Minnesota, Minneapolis, Minnesota 55455-0431.
J Chem Theory Comput. 2005 Jan;1(1):2-13. doi: 10.1021/ct049941i.
A method is presented for the efficient evaluation of long-range electrostatic forces in combined quantum mechanical and molecular mechanical (QM/MM) calculations of periodic systems. The QM/MM-Ewald method is a linear-scaling electrostatic method that utilizes the particle mesh Ewald algorithm for calculation of point charge interactions of molecular mechanical atoms and a real-space multipolar expansion for the quantum mechanical electrostatic terms plus a pairwise periodic correction factor for the QM and QM/MM interactions that does not need to be re-evaluated during the self-consistent field procedure. The method is tested in a series of molecular dynamics simulations of the ion-ion association of ammonium chloride and ammonium metaphosphate and the dissociative phosphoryl transfer of methyl phosphate and acetyl phosphate. Results from periodic boundary molecular dynamics (PBMD) simulations employing the QM/MM-Ewald method are compared with corresponding PBMD simulations using electrostatic cutoffs and with results from nonperiodic stochastic boundary molecular dynamics (SBMD) simulations, with cutoffs and with full electrostatics (no cutoff). The present method allows extension of linear-scaling Ewald methods to molecular simulations of enzyme and ribozyme reactions that use combined QM/MM potentials.
本文提出了一种在周期性体系的量子力学和分子力学(QM/MM)计算中有效评估长程静电相互作用的方法。QM/MM-Ewald 方法是一种线性标度静电方法,它利用粒子网格 Ewald 算法计算分子力学原子的点电荷相互作用,并使用实空间多极展开计算量子力学静电项,外加一个不需要在自洽场过程中重新评估的量子力学和 QM/MM 相互作用的周期性修正因子。该方法在一系列氯化铵和磷酸铵离子对缔合以及甲基磷酸酯和乙酰磷酸酯的磷酰基转移的分子动力学模拟中进行了测试。采用 QM/MM-Ewald 方法的周期性边界分子动力学(PBMD)模拟的结果与使用静电截止和非周期性随机边界分子动力学(SBMD)模拟的结果进行了比较,同时也与使用截止和全静电(无截止)的结果进行了比较。本方法允许将线性标度 Ewald 方法扩展到使用组合 QM/MM 势能的酶和核酶反应的分子模拟中。