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Investigation of Salt Bridge Stability in a Generalized Born Solvent Model

机译:广义Born溶剂模型中盐桥稳定性的研究。

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Potentials of mean force (PMFs) of salt bridge formation between oppositely charged amino acid side chains were calculated both in explicit solvent and in a Generalized Born (GB) continuum solvent model to quantify the potential overstabilization of side chain ion pairs in GB relative to explicit solvation.These show that salt bridges are too stable by as much as 3-4 kcal/mol in the GB solvent models that we tested,consistent with previously reported observations of significantly different structural ensembles in GB models and explicit solvent for proteins containing ionizable groups.We thus investigated a simple empirical correction,wherein the intrinsic GB radii of hydrogen atoms bound to charged nitrogen atoms are reduced,effectively increasing the desolvation penalty of the positively charged groups.The thermodynamics of salt bridge formation were considerably improved,as exemplified by the close match of the corrected GB PMF to the reference explicit solvent PMF,and more significantly by our ability to closely reproduce the experimental temperature melting profile of the TC5b Trp-cage miniprotein,which is otherwise highly distorted by prevalent non-native salt bridges when using standard GB parameters.
机译:在显性溶剂和广义Born(GB)连续溶剂模型中均计算了带相反电荷的氨基酸侧链之间盐桥形成的平均力(PMF)的潜力,以量化相对于显性的GB中侧链离子对的潜在超稳定这些表明在我们测试的GB溶剂模型中,盐桥的稳定性太高了3-4 kcal / mol,这与之前报道的关于GB模型中显着不同的结构团和含离子化基团的蛋白质的显式溶剂的观察结果一致因此,我们研究了一种简单的经验校正,其中减少了与带电氮原子键合的氢原子的固有GB半径,有效地增加了带正电基团的去溶剂化罚分。盐桥形成的热力学得到了显着改善,例如校正后的GB PMF与参考显式溶剂PMF紧密匹配,并且意义更大这主要是由于我们能够密切复制TC5b Trp笼子小蛋白的实验温度融解图谱的能力,否则在使用标准GB参数时,其会因普遍的非天然盐桥而高度失真。

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