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Evaluatingthe Strength of Salt Bridges: A Comparisonof Current Biomolecular Force Fields

机译:评估盐桥的力量:比较当前生物分子力场

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摘要

Recent advances in computer hardware and software have made rigorous evaluation of current biomolecular force fields using microsecond-scale simulations possible. Force fields differ in their treatment of electrostatic interactions, including the formation of salt bridges in proteins. Here we conducted an extensive evaluation of salt bridge interactions in the latest AMBER, CHARMM, and OPLS force fields, using microsecond-scale molecular dynamics simulations of amino acid analogues in explicit solvent. We focused on salt bridges between three different pairs of oppositely charged amino acids: Arg/Asp, Lys/Asp, and His(+)/Asp. Our results reveal considerable variability in the predicted KA values of the salt bridges for these force fields, as well as differences from experimental data: almost all of the force fields overestimate the strengths of the salt bridges. When amino acids are represented by side-chain analogues, the AMBER ff03 force field overestimates the KA values the least, while for complete amino acids, the AMBER ff13α force field yields the lowest KA value, mostlikely caused by an altered balance of side-chain/side-chain and side-chain/backbonecontacts. These findings confirm the notion that the implicit incorporationof solvent polarization improves the accuracy of modeling salt bridgeinteractions.
机译:计算机硬件和软件的最新进展使得使用微秒尺度的模拟对当前生物分子力场进行严格评估成为可能。力场对静电相互作用的处理方式有所不同,包括蛋白质中盐桥的形成。在这里,我们使用显式溶剂中氨基酸类似物的微秒级分子动力学模拟,对最新的AMBER,CHARMM和OPLS力场中的盐桥相互作用进行了广泛的评估。我们专注于三对带相反电荷的氨基酸之间的盐桥:Arg / Asp,Lys / Asp和His(+)/ Asp。我们的结果表明,对于这些力场,盐桥的KA预测值存在很大差异,并且与实验数据存在差异:几乎所有力场都高估了盐桥的强度。当氨基酸由侧链类似物表示时,AMBER ff03力场至少会高估KA值,而对于完整氨基酸,AMBERff13α力场会产生最低的KA值,最大可能是由于侧链/侧链和侧链/骨干平衡的改变导致的联系人。这些发现证实了隐含合并的观念。溶剂极化提高了盐桥建模的准确性互动。

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