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适用于药物设计的快速原子电荷计算工具。

Fast tools for calculation of atomic charges well suited for drug design.

作者信息

Shulga D A, Oliferenko A A, Pisarev S A, Palyulin V A, Zefirov N S

机构信息

Institute of Physiologically Active Compounds of Russian Academy of Sciences, Chernogolovka, Russia.

出版信息

SAR QSAR Environ Res. 2008 Jan-Mar;19(1-2):153-65. doi: 10.1080/10629360701844142.

Abstract

Two novel approaches to construct empirical schemes for partial atomic charge calculation were proposed. The charge schemes possess important benefits. First, they produce both topologically symmetrical and environment dependent charges. Second, they can be parameterised to reasonably reproduce ab initio molecular electrostatic potential (MEP), which guarantees their successful use in molecular modelling. To validate the approaches, the parameters of the proposed charge schemes were fitted to best reproduce MEP simultaneously on grids around a set of 227 diverse organic compounds. The residual errors in MEP reproduction due to calculated atomic charges were compared to those due to charges from known charge schemes.

摘要

提出了两种构建用于部分原子电荷计算的经验方案的新方法。这些电荷方案具有重要优势。首先,它们能产生拓扑对称且依赖环境的电荷。其次,它们可以进行参数化,以合理地重现从头算分子静电势(MEP),这保证了它们在分子建模中的成功应用。为了验证这些方法,将所提出的电荷方案的参数进行拟合,以便在一组227种不同有机化合物周围的网格上同时最佳地重现MEP。将由计算得到的原子电荷引起的MEP重现中的残余误差与由已知电荷方案的电荷引起的残余误差进行了比较。

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