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用于生物反应d轨道半经验计算的平滑溶剂化方法。1. 实现

Smooth solvation method for d-orbital semiempirical calculations of biological reactions. 1. Implementation.

作者信息

Khandogin Jana, Gregersen Brent A, Thiel Walter, York Darrin M

机构信息

Department of Chemistry, University of Minnesota, Minneapolis, Minnesota 55455, USA.

出版信息

J Phys Chem B. 2005 May 19;109(19):9799-809. doi: 10.1021/jp044062d.

Abstract

The present paper describes the extension of a recently developed smooth conductor-like screening model for solvation to a d-orbital semiempirical framework (MNDO/d-SCOSMO) with analytic gradients that can be used for geometry optimizations, transition state searches, and molecular dynamics simulations. The methodology is tested on the potential energy surfaces for separating ions and the dissociative phosphoryl transfer mechanism of methyl phosphate. The convergence behavior of the smooth COSMO method with respect to discretization level is examined and the numerical stability of the energy and gradient are compared to that from conventional COSMO calculations. The present method is further tested in applications to energy minimum and transition state geometry optimizations of neutral and charged metaphosphates, phosphates, and phosphoranes that are models for stationary points in transphosphorylation reaction pathways of enzymes and ribozymes. The results indicate that the smooth COSMO method greatly enhances the stability of quantum mechanical geometry optimization and transition state search calculations that would routinely fail with conventional solvation methods. The present MNDO/d-SCOSMO method has considerable computational advantages over hybrid quantum mechanical/molecular mechanical methods with explicit solvation, and represents a potentially useful tool in the arsenal of multi-scale quantum models used to study biochemical reactions.

摘要

本文描述了一种最近开发的用于溶剂化的类光滑导体屏蔽模型扩展到具有解析梯度的d轨道半经验框架(MNDO/d-SCOSMO),该框架可用于几何优化、过渡态搜索和分子动力学模拟。该方法在分离离子的势能面和磷酸甲酯的解离磷酰基转移机制上进行了测试。研究了光滑COSMO方法相对于离散化水平的收敛行为,并将能量和梯度的数值稳定性与传统COSMO计算的结果进行了比较。本方法进一步应用于中性和带电偏磷酸盐、磷酸盐和磷烷的能量最小化和过渡态几何优化,这些是酶和核酶转磷酸化反应途径中驻点的模型。结果表明,光滑COSMO方法大大提高了量子力学几何优化和过渡态搜索计算的稳定性,而传统溶剂化方法通常会在这些计算中失败。目前的MNDO/d-SCOSMO方法相对于具有显式溶剂化的混合量子力学/分子力学方法具有相当大的计算优势,并且是用于研究生化反应的多尺度量子模型库中的一种潜在有用工具。

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