Hu Hao, Yang Weitao
Department of Chemistry, Duke University, Durham, North Carolina 27708, USA.
Annu Rev Phys Chem. 2008;59:573-601. doi: 10.1146/annurev.physchem.59.032607.093618.
Combined quantum mechanics/molecular mechanics (QM/MM) methods provide an accurate and efficient energetic description of complex chemical and biological systems, leading to significant advances in the understanding of chemical reactions in solution and in enzymes. Here we review progress in QM/MM methodology and applications, focusing on ab initio QM-based approaches. Ab initio QM/MM methods capitalize on the accuracy and reliability of the associated quantum-mechanical approaches, however, at a much higher computational cost compared with semiempirical quantum-mechanical approaches. Thus reaction-path and activation free-energy calculations based on ab initio QM/MM methods encounter unique challenges in simulation timescales and phase-space sampling. This review features recent developments overcoming these challenges and enabling accurate free-energy determination for reaction processes in solution and in enzymes, along with applications.
量子力学/分子力学(QM/MM)相结合的方法为复杂的化学和生物系统提供了准确而高效的能量描述,推动了对溶液中化学反应和酶促反应理解的重大进展。在此,我们回顾QM/MM方法及其应用的进展,重点关注基于从头算量子力学的方法。从头算QM/MM方法利用了相关量子力学方法的准确性和可靠性,然而,与半经验量子力学方法相比,其计算成本要高得多。因此,基于从头算QM/MM方法的反应路径和活化自由能计算在模拟时间尺度和相空间采样方面面临独特的挑战。本综述介绍了克服这些挑战并实现对溶液和酶中反应过程准确自由能测定的最新进展及其应用。