首页> 外文期刊>Journal of chemical theory and computation: JCTC >Forcefield_PTM: Ab Initio Charge and AMBER Forcefield Parameters for Frequently Occurring Post-Translational Modifications
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Forcefield_PTM: Ab Initio Charge and AMBER Forcefield Parameters for Frequently Occurring Post-Translational Modifications

机译:Forcefield_PTM:频繁发生的翻译后修改的从头算起电荷和AMBER力场参数

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In this work, we introduce ForcefieldJPTM, a set of AMBER forcefield parameters consistent with ff03 for 32 common post-translational modifications. Partial charges were calculated through ab initio calculations and a two-stage RESP-fitting procedure in an ether-like implicit solvent environment. The charges were found to be generally consistent with others previously reported for phosphorylated amino acids, and trimethyllysine, using different parametrization methods. Pairs of modified structures and their corresponding unmodified structures were curated from the PDB for both single and multiple modifications. Background structural similarity was assessed in the context of secondary and tertiary structures from the global data set. Next, the charges derived for Forcefield_PTM were tested on a macroscopic scale using unrestrained all-atom Langevin molecular dynamics simulations in AMBER for 34 (17 pairs of modified/unmodified) systems in implicit solvent. Assessment was performed in the context of secondary structure preservation, stability in energies, and correlations between the modified and unmodified structure trajectories on the aggregate. As an illustration of their utility, the parameters were used to compare the structural stability of the phosphorylated and dephosphorylated forms of Odhl. Microscopic comparisons between quantum and AMBER single point energies along key χ torsions on several PTMs were performed, and corrections to improve their agreement in terms of mean-squared errors and squared correlation coefficients were parametrized. This forcefield for post-translational modifications in condensed-phase simulations can be applied to a number of biologically relevant and timely applications including protein structure prediction, protein and peptide design, and docking and to study the effect of PTMs on folding and dynamics. We make the derived parameters and an associated interactive webtool capable of performing post-translational modifications on proteins using Forcefield_PTM available at http://selene.princeton.edu/FFPTM.
机译:在这项工作中,我们介绍了ForcefieldJPTM,这是一套与ff03一致的AMBER力场参数,适用于32种常见的翻译后修饰。在像醚一样的隐性溶剂环境中,通过从头算和两步RESP拟合过程计算部分电荷。使用不同的参数化方法,发现电荷通常与先前报道的磷酸化氨基酸和三甲基赖氨酸的电荷基本一致。从PDB挑选了一对修饰结构及其相应的未修饰结构,以进行单个和多个修饰。在全球数据集的二级和三级结构的背景下评估了背景结构的相似性。接下来,使用AMBER中的34种隐含溶剂(17对修饰/未修饰对)系统进行无约束的全原子Langevin分子动力学模拟,在宏观尺度上测试Forcefield_PTM的电荷。评估是在二级结构保持,能量稳定性以及骨料上的改性和未改性结构轨迹之间的相关性的背景下进行的。为了说明其效用,使用这些参数比较了Odhl磷酸化和去磷酸化形式的结构稳定性。在几个PTM上沿关键χ扭转进行了量子能量和AMBER单点能量之间的微观比较,并进行了参数校正以改善它们在均方误差和平方相关系数方面的一致性。这种在凝聚相模拟中用于翻译后修饰的力场可应用于许多生物学相关且及时的应用程序,包括蛋白质结构预测,蛋白质和肽设计以及对接,并研究PTM对折叠和动力学的影响。我们使用http://selene.princeton.edu/FFPTM上提供的Forcefield_PTM,使导出的参数和相关的交互式Web工具能够对蛋白质执行翻译后修饰。

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