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用于绝对结合自由能计算的广义玻恩模型准确性评估。

Evaluation of Generalized Born Model Accuracy for Absolute Binding Free Energy Calculations.

作者信息

Zeller Fabian, Zacharias Martin

机构信息

Physik-Department T38, Technische Universität München , James-Franck-Str. 1, Garching 85748, Germany.

出版信息

J Phys Chem B. 2014 Jul 10;118(27):7467-7474. doi: 10.1021/jp5015934. Epub 2014 Jun 27.

Abstract

Generalized Born (GB) implicit solvent models are widely used in molecular dynamics simulations to evaluate the interactions of biomolecular complexes. The continuum treatment of the solvent results in significant computational savings in comparison to an explicit solvent representation. It is, however, not clear how accurately the GB approach reproduces the absolute free energies of biomolecular binding. On the basis of induced dissociation by means of umbrella sampling simulations, the absolute binding free energies of small proline-rich peptide ligands and a protein receptor were calculated. Comparative simulations according to the same protocol were performed by employing an explicit solvent model and various GB-type implicit solvent models in combination with a nonpolar surface tension term. The peptide ligands differed in a key residue at the peptide-protein interface, including either a nonpolar, a neutral polar, a positively charged, or a negatively charged group. For the peptides with a neutral polar or nonpolar interface residue, very good agreement between the explicit solvent and GB implicit solvent results was found. Deviations in the main separation free energy contributions are smaller than 1 kcal/mol. In contrast, for peptides with a charged interface residue, significant deviations of 2-4 kcal/mol were observed. The results indicate that recent GB models can compete with explicit solvent representations in total binding free energy calculations as long as no charged residues are present at the binding interface.

摘要

广义玻恩(GB)隐式溶剂模型在分子动力学模拟中被广泛用于评估生物分子复合物的相互作用。与显式溶剂表示相比,溶剂的连续介质处理可显著节省计算量。然而,GB方法在多大程度上能准确再现生物分子结合的绝对自由能尚不清楚。基于通过伞形采样模拟诱导解离的方法,计算了富含脯氨酸的小肽配体与蛋白质受体的绝对结合自由能。按照相同方案,采用显式溶剂模型以及各种GB型隐式溶剂模型并结合非极性表面张力项进行了对比模拟。肽配体在肽 - 蛋白质界面的关键残基上有所不同,包括非极性、中性极性、带正电荷或带负电荷的基团。对于具有中性极性或非极性界面残基的肽,显式溶剂和GB隐式溶剂的结果吻合得非常好。主要分离自由能贡献的偏差小于1千卡/摩尔。相比之下,对于具有带电荷界面残基的肽,观察到2 - 4千卡/摩尔的显著偏差。结果表明,只要结合界面不存在带电荷残基,近期的GB模型在总结合自由能计算中就能与显式溶剂表示相媲美。

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