Quantum Mechanics/Molecular Mechanics Modeling of Enzymatic Processes: Caveats and Breakthroughs

被引:134
作者
Quesne, Matthew G. [1 ,2 ,3 ]
Borowski, Tomasz [1 ]
de Visser, Sam P. [2 ,3 ]
机构
[1] Polish Acad Sci, Jerzy Haber Inst Catalysis & Surface Chem, Niezapominajek 8, PL-30239 Krakow, Poland
[2] Univ Manchester, Manchester Inst Biotechnol, 131 Princess St, Manchester M1 7DN, Lancs, England
[3] Univ Manchester, Sch Chem Engn & Analyt Sci, 131 Princess St, Manchester M1 7DN, Lancs, England
关键词
computational modeling; density functional theory; enzyme catalysis; enzyme mechanisms; QM; MM; 4-HYDROXYPHENYLPYRUVATE DIOXYGENASE; QM/MM METHODS; COMPOUND-I; HYDROXYMANDELATE SYNTHASE; MOLECULAR-DYNAMICS; CATALYTIC-REACTION; DNA-REPAIR; OXIDATIVE DEMETHYLATION; CYTOCHROME-P450; ENZYMES; SUBSTRATE HYDROXYLATION;
D O I
10.1002/chem.201503802
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Nature has developed large groups of enzymatic catalysts with the aim to transfer substrates into useful products, which enables biosystems to perform all their natural functions. As such, all biochemical processes in our body (we drink, we eat, we breath, we sleep, etc.) are governed by enzymes. One of the problems associated with research on biocatalysts is that they react so fast that details of their reaction mechanisms cannot be obtained with experimental work. In recent years, major advances in computational hardware and software have been made and now large (bio)chemical systems can be studied using accurate computational techniques. One such technique is the quantum mechanics/molecular mechanics (QM/MM) technique, which has gained major momentum in recent years. Unfortunately, it is not a black-box method that is easily applied, but requires careful set-up procedures. In this work we give an overview on the technical difficulties and caveats of QM/MM and discuss work-protocols developed in our groups for running successful QM/MM calculations.
引用
收藏
页码:2562 / 2581
页数:20
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