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首页> 外文期刊>Theoretical Chemistry Accounts >Improving the study of proton transfers between amino acid side chains in solution: choosing appropriate DFT functionals and avoiding hidden pitfalls
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Improving the study of proton transfers between amino acid side chains in solution: choosing appropriate DFT functionals and avoiding hidden pitfalls

机译:改进溶液中氨基酸侧链之间质子转移的研究:选择适当的DFT功能并避免隐藏的陷阱

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摘要

We have studied the influence of implicit solvent models, inclusion of explicit water molecules, inclusion of vibrational effects, and density functionals on the quality of the predicted pK a of small amino acid side chain models. We found that the inclusion of vibrational effects and explicit water molecules is crucial to improve the correlation between the computed and the experimental values. In these micro-solvated systems, the best agreement between DFT-computed electronic energies and benchmark values is afforded by BHHLYP and B97-2. However, approaching experimental results requires the addition of more than three explicit water molecules, which generates new problems related to the presence of multiple minima in the potential energy surface. It thus appears that a satisfactory ab initio prediction of amino acid side chain pK a will require methods that sample the configurational space in the presence of large solvation shells, while at the same time computing vibrational contributions to the enthalpy and entropy of the system under study in all points of that surface. Pending development of efficient algorithms for those computations, we strongly suggest that whenever counterintuitive protonation states are found in a computational study (e.g., the presence of a neutral aspartateeutral histidine dyad instead of a deprotonated aspartate/protonated histidine pair), the reaction profile should be computed under each of the different protonation micro-states by constraining the relevant N–H or O–H bonds, in order to avoid artifacts inherent to the complex nature of the factors contributing to the pK a.
机译:我们研究了隐式溶剂模型,包含的显式水分子,包含的振动效应以及密度泛函对小氨基酸侧链模型的预测pK a 的质量的影响。我们发现,包括振动效应和明确的水分子对于改善计算值与实验值之间的相关性至关重要。在这些微溶剂化系统中,BHHLYP和B97-2提供了DFT计算的电子能量与基准值之间的最佳一致性。但是,接近实验结果需要添加三个以上的显式水分子,这产生了与在势能表面中存在多个极小值有关的新问题。因此,似乎需要令人满意的从头开始预测氨基酸侧链pK a ,该方法需要在存在大的溶剂化壳的情况下对构型空间进行采样的方法,同时计算对分子的焓和熵的振动贡献在该表面的所有点上正在研究的系统。在为这些计算开发有效算法之前,我们强烈建议,只要在计算研究中发现反直觉的质子化状态(例如,存在中性天冬氨酸/中性组氨酸二元组而不是去质子化的天冬氨酸/质子化组氨酸对),反应曲线应该通过限制相关的N–H或O–H键,在每个不同的质子化微状态下计算,以避免造成pK a的因素复杂性质所固有的伪影。

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  • 来源
    《Theoretical Chemistry Accounts 》 |2012年第3期| 1-6| 共6页
  • 作者单位

    REQUIMTE/Faculdade de Ciências da Saúde Universidade Fernando Pessoa Rua Carlos da Maia 296 4200-150 Porto Portugal;

    REQUIMTE/Departamento de Química e Bioquímica Faculdade de Ciências Universidade do Porto Rua do Campo Alegre s 4169-007 Porto Portugal;

    REQUIMTE/Departamento de Química e Bioquímica Faculdade de Ciências Universidade do Porto Rua do Campo Alegre s 4169-007 Porto Portugal;

    REQUIMTE/Departamento de Química e Bioquímica Faculdade de Ciências Universidade do Porto Rua do Campo Alegre s 4169-007 Porto Portugal;

    REQUIMTE/Departamento de Química e Bioquímica Faculdade de Ciências Universidade do Porto Rua do Campo Alegre s 4169-007 Porto Portugal;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    DFT; Benchmarking; Acid/base reactions; Amino acid side chains;

    机译:DFT;对标;酸/碱反应;氨基酸侧链;

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