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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Geometrical Preferences of the Hydrogen Bonds on Protein-Ligand Binding Interface Derived from Statistical Surveys and Quantum Mechanics Calculations
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Geometrical Preferences of the Hydrogen Bonds on Protein-Ligand Binding Interface Derived from Statistical Surveys and Quantum Mechanics Calculations

机译:从统计调查和量子力学计算得出的蛋白质-配体结合界面上的氢键的几何偏好。

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We have conducted potential of mean force(PMF)analyses to derive the geometrical parameters of various types of hydrogen bonds on protein-ligand binding interface.Our PMF analyses are based on a set of 4535 high-quality protein-ligand complex structures,which are compiled through a systematic mining of the entire Protein Data Bank.Hydrogen bond donor and acceptor atoms are classified into several basic types.Both distance-and angle-dependent statistical potentials are derived for each donor-acceptor pair,from which distance and angle cutoffs are obtained in an objective,unambiguous manner.These donor-acceptor pairs are also studied by quantum mechanics(QM)calculations at the MP2/6-311++G** level on model molecules.Comparison of the outcomes of PMF analyses and QM calculations suggests that QM calculation may serve as an alternative approach for characterizing hydrogen bond geometry.Both of our PMF analyses and QM calculations indicate that C-H…O hydrogen bonds are relatively weak as compared to common hydrogen bonds formed between nitrogen and oxygen atoms.A survey on the protein-ligand complex structures in our data set has revealed that C_(alpha)-H…O hydrogen bonds observed in protein-ligand binding are frequently accompanied by bifurcate N-H…O hydrogen bonds.Thus,the C_(alpha)-H…O hydrogen bonds in such cases would better be interpreted as secondary interactions.
机译:我们进行了平均力(PMF)分析潜力以得出蛋白质-配体结合界面上各种类型氢键的几何参数。我们的PMF分析基于一套4535个高质量的蛋白质-配体复杂结构,通过对整个蛋白质数据库的系统挖掘来编制氢键供体和受体原子分为几种基本类型。每个供体-受体对都得出了距离和角度相关的统计势,从中可以得出距离和角度的截止值还通过在模型分子上以MP2 / 6-311 ++ G **水平进行量子力学(QM)计算研究了这些供体-受体对.PMF分析和QM计算结果的比较我们的PMF分析和QM计算均表明,CH…O氢键相对弱于氢键。我们的数据集中对蛋白质-配体复杂结构的一项调查显示,在蛋白质-配体结合中观察到的C_α-H…O氢键经常伴有分叉的NH。 …O氢键。因此,在这种情况下,C_α-H…O氢键最好解释为次级相互作用。

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