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Molecular Dynamics Simulations of Intrinsically Disordered Proteins: On the Accuracy of the TIP4P-D Water Model and the Representativeness of Protein Disorder Models

机译:本质紊乱蛋白的分子动力学模拟:关于TIP4P-D水模型的准确性和蛋白紊乱模型的代表性

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Here, we first present a follow-up to a previous work by our group on the problematic of molecular dynamics simulations of intrinsically disordered proteins (IDPs) [Henriques et al. J. Chem. Theory Comput. 2015, 11, 3420-3431], using the recently developed TIP4P-D water model. When used in conjunction with the standard AMBER ff99SB-ILDN force field and applied to the simulation of Histatin 5, our IDP model, we obtain results which are in excellent agreement with the best performing IDP-suitable force field from the earlier study and with experiment. We then assess the representativeness of the IDP models used in these and similar studies, finding that most are too short in comparison to the average IDP and contain a bias toward hydrophilic amino acid residues. Moreover, several key order- and disorder-promoting residues are also found to be misrepresented. It seems appropriate for future studies to address these issues.
机译:在这里,我们首先介绍了我们小组先前对内在无序蛋白(IDP)的分子动力学模拟问题进行的研究的后续工作[Henriques等。 J.化学理论计算。 2015,11,3420-3431],使用最近开发的TIP4P-D水模型。当与标准AMBER ff99SB-ILDN力场结合使用并应用于Histatin 5(我们的IDP模型)的仿真时,我们获得的结果与早期研究和实验中性能最佳的适合IDP的力场非常吻合。然后,我们评估了这些研究和类似研究中使用的IDP模型的代表性,发现与平均IDP相比,大多数模型都太短,并且偏向亲水性氨基酸残基。此外,还发现一些关键的促进顺序和障碍的残基被错误地陈述。以后的研究似乎似乎适合解决这些问题。

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