Cummings M D, Hart T N, Read R J
Department of Biochemistry, University of Alberta, Edmonton, Canada.
Protein Sci. 1995 Oct;4(10):2087-99. doi: 10.1002/pro.5560041014.
Several sets of amino acid surface areas and transfer free energies were used to derive a total of nine sets of atomic solvation parameters (ASPs). We tested the accuracy of each of these sets of parameters in predicting the experimentally determined transfer free energies of the amino acid derivatives from which the parameters were derived. In all cases, the calculated and experimental values correlated well. We then chose three parameter sets and examined the effect of adding an energetic correction for desolvation based on these three parameter sets to the simple potential function used in our multiple start Monte Carlo docking method. A variety of protein-protein interactions and docking results were examined. In the docking simulations studied, the desolvation correction was only applied during the final energy calculation of each simulation. For most of the docking results we analyzed, the use of an octanol-water-based ASP set marginally improved the energetic ranking of the low-energy dockings, whereas the other ASP sets we tested disturbed the ranking of the low-energy dockings in many of the same systems. We also examined the correlation between the experimental free energies of association and our calculated interaction energies for a series of proteinase-inhibitor complexes. Again, the octanol-water-based ASP set was compatible with our standard potential function, whereas ASP sets derived from other solvent systems were not.
使用几组氨基酸表面积和转移自由能来推导总共九组原子溶剂化参数(ASP)。我们测试了这些参数集中每一组在预测从中推导参数的氨基酸衍生物的实验测定转移自由能方面的准确性。在所有情况下,计算值与实验值都有很好的相关性。然后我们选择了三组参数,并研究了基于这三组参数对我们的多起点蒙特卡罗对接方法中使用的简单势函数添加去溶剂化能量校正的效果。研究了各种蛋白质 - 蛋白质相互作用和对接结果。在研究的对接模拟中,去溶剂化校正仅在每个模拟的最终能量计算期间应用。对于我们分析的大多数对接结果,使用基于正辛醇 - 水的ASP集略微改善了低能量对接的能量排序,而我们测试的其他ASP集在许多相同系统中扰乱了低能量对接的排序。我们还研究了一系列蛋白酶 - 抑制剂复合物的实验结合自由能与我们计算的相互作用能之间的相关性。同样,基于正辛醇 - 水的ASP集与我们的标准势函数兼容,而从其他溶剂系统衍生的ASP集则不兼容。