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首页> 外文期刊>International Journal of Molecular Sciences >How Many Conformations of Enzymes Should Be Sampled for DFT/MM Calculations? A Case Study of Fluoroacetate Dehalogenase
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How Many Conformations of Enzymes Should Be Sampled for DFT/MM Calculations? A Case Study of Fluoroacetate Dehalogenase

机译:DFT / MM计算应采样多少种酶?氟乙酸盐脱卤酶的案例研究

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摘要

The quantum mechanics/molecular mechanics (QM/MM) method (e.g., density functional theory (DFT)/MM) is important in elucidating enzymatic mechanisms. It is indispensable to study “multiple” conformations of enzymes to get unbiased energetic and structural results. One challenging problem, however, is to determine the minimum number of conformations for DFT/MM calculations. Here, we propose two convergence criteria, namely the Boltzmann-weighted average barrier and the disproportionate effect, to tentatively address this issue. The criteria were tested by defluorination reaction catalyzed by fluoroacetate dehalogenase. The results suggest that at least 20 conformations of enzymatic residues are required for convergence using DFT/MM calculations. We also tested the correlation of energy barriers between small QM regions and big QM regions. A roughly positive correlation was found. This kind of correlation has not been reported in the literature. The correlation inspires us to propose a protocol for more efficient sampling. This saves 50% of the computational cost in our current case.
机译:量子力学/分子力学(QM / MM)方法(例如,密度泛函理论(DFT)/ MM)在阐明酶促机理中很重要。研究酶的“多种”构象以获得无偏的能量和结构结果是必不可少的。然而,一个具有挑战性的问题是为DFT / MM计算确定构象的最小数目。在这里,我们提出了两个收敛标准,即玻耳兹曼加权平均势垒和不成比例的效应,以尝试解决这个问题。通过氟乙酸脱卤酶催化的脱氟反应测试标准。结果表明,使用DFT / MM计算收敛需要至少20个构象的酶残基。我们还测试了小型QM区域和大型QM区域之间的能垒相关性。发现大致正相关。文献中尚未报道这种相关性。相关性启发我们提出了一种更有效采样的协议。在当前情况下,这可以节省50%的计算成本。

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