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Determination of Enzymatic Reaction Pathways Using QM/MM Methods

机译:QM / MM方法确定酶促反应途径

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摘要

Enzymes are among the most powerful known catalysts. Understanding the functions of these proteins is one of the central goals of contemporary chemistry and biochemistry. But, because these systems are large they are difficult to handle using standard theoretical chemistry tools. In the last 10 years, we have seen the rapid development of so-called QM/MM methods that combined quantum chemistry and molecualr mechanics to elucidate the structure and functions of systems with many degrees of freedom, including enzymatic systems. In this article, we review the numerical aspects of QM/MM methods applied to enzymes: The energy definition, the special treatment of thecovalent QM/MM frontiers, and the exploration of QM/MM potential energy surface. A special emphasis is made on the use of local self-consistent field and rational function optimization
机译:酶是最强大的已知催化剂之一。了解这些蛋白质的功能是当代化学和生物化学的主要目标之一。但是,由于这些系统很大,因此很难使用标准的理论化学工具进行处理。在过去的十年中,我们看到了所谓的QM / MM方法的迅速发展,该方法结合了量子化学和分子力学来阐明具有多种自由度的系统(包括酶促系统)的结构和功能。在本文中,我们回顾了应用于酶的QM / MM方法的数值方面:能量定义,共价QM / MM前沿的特殊处理以及QM / MM势能面的探索。特别强调使用局部自洽字段和有理函数优化

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