Including Side Chain Flexibility in Continuum Electrostatic Calculations of Protein Titration

IF 2.781
Paul Beroza, David A. Case
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引用次数: 96

Abstract

We have extended Monte Carlo procedures for computing statistical averages over protonation states of a protein to include conformational states of the titrating amino acid side chains. This computational method couples side chain motion and protonation with changes in solution pH. Using a continuum electrostatic model for protein titration, we applied this sampling method to calculate titration curves for lysozyme, myoglobin, and hemoglobin. In addition to the X-ray conformation, each titrating site was allowed to reorient to a conformation with maximum solvent accessibility. For all proteins considered, inclusion of these additional conformations improved agreement with experimental measurements for both overall titration and individual pKas. The results suggest that well-solvated orientations of amino acid side chains are an important factor in determining proton binding characteristics of proteins.

包括侧链柔韧性在连续静电计算蛋白质滴定
我们已经扩展了计算蛋白质质子化状态统计平均值的蒙特卡罗程序,以包括滴定氨基酸侧链的构象状态。这种计算方法将侧链运动和质子化与溶液ph的变化耦合在一起。使用连续静电模型进行蛋白质滴定,我们将这种采样方法应用于溶菌酶、肌红蛋白和血红蛋白的滴定曲线计算。除了x射线构象外,每个滴定位点都可以重新定向到具有最大溶剂可及性的构象。对于所有考虑的蛋白质,包括这些额外的构象改善了总体滴定和单个pka的实验测量结果的一致性。结果表明,氨基酸侧链的良好溶剂化取向是决定蛋白质质子结合特性的重要因素。
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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