关于蛋白质-蛋白质结合自由能的静电成分。

Kemper Talley, Carmen Ng, Michael Shoppell, Petras Kundrotas, Emil Alexov
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摘要

蛋白质-蛋白质复合物的静电特性计算通常是在具有特定参数集的模型框架内进行的。在本文中,我们对结合自由能(DeltaDeltaGel)的静电成分在不同力场(Charmm、Amber 和 OPLS)、不同内介电常数值和不同分子表面表现形式(不同探针半径值)下的敏感性进行了全面的统计分析。这项研究使用了迄今为止最大的一组条目,包括从先前开发的蛋白质复合物数据库(ProtCom)中提取的 260 个异种蛋白质复合物和 2148 个同种蛋白质复合物。为了测试能量计算对结构细节的敏感性,所有结构都用相应的力场进行了能量最小化,并重新计算了能量。结果表明,结合自由能的静电分量(DeltaDeltaGel)的绝对值对力场参数、最小化程序、内部介电常数值和探针半径非常敏感。然而,我们的研究结果表明,DeltaDeltaGel 行为的某些趋势对计算参数的敏感度要低得多。例如,无论使用何种力场和参数,发现静电反对结合的同源复合物的比例为 80%。然而,对于异源复合物,静电作用反对结合的情况所占比例从 43% 到 85% 不等,这取决于所采用的方案和参数。在提高内部介电常数和减小探针半径所产生的效应之间发现了明显的相关性。使用不同力场得到的结果之间也存在相关性。然而,尽管发现了相关性,在某些情况下,用不同力场参数计算出的 DeltaDeltaGel 绝对值可能相差数十 kcal/mol 以上。结论部分提供了一套对绝对 DeltaDeltaGel 和 DeltaDeltaGel 符号进行可靠预测的规则。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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On the electrostatic component of protein-protein binding free energy.

Calculations of electrostatic properties of protein-protein complexes are usually done within framework of a model with a certain set of parameters. In this paper we present a comprehensive statistical analysis of the sensitivity of the electrostatic component of binding free energy (DeltaDeltaGel) with respect with different force fields (Charmm, Amber, and OPLS), different values of the internal dielectric constant, and different presentations of molecular surface (different values of the probe radius). The study was done using the largest so far set of entries comprising 260 hetero and 2148 homo protein-protein complexes extracted from a previously developed database of protein complexes (ProtCom). To test the sensitivity of the energy calculations with respect to the structural details, all structures were energy minimized with corresponding force field, and the energies were recalculated. The results indicate that the absolute value of the electrostatic component of the binding free energy (DeltaDeltaGel) is very sensitive to the force field parameters, the minimization procedure, the values of the internal dielectric constant, and the probe radius. Nevertheless our results indicate that certain trends in DeltaDeltaGel behavior are much less sensitive to the calculation parameters. For instance, the fraction of the homo-complexes, for which the electrostatics was found to oppose binding, is 80% regardless of the force fields and parameters used. For the hetero-complexes, however, the percentage of the cases for which electrostatics opposed binding varied from 43% to 85%, depending on the protocol and parameters employed. A significant correlation was found between the effects caused by raising the internal dielectric constant and decreasing the probe radius. Correlations were also found among the results obtained with different force fields. However, despite of the correlations found, the absolute DeltaDeltaGel calculated with different force field parameters could differ more than tens of kcal/mol in some cases. Set of rules of obtaining confident predictions of absolute DeltaDeltaGel and DeltaDeltaGel sign are provided in the conclusion section.PACS codes: 87.15.A-, 87.15. km.

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