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A Novel Approach for Deriving Force Field Torsion Angle Parameters Accounting for Conformation-Dependent Solvation Effects

机译:考虑构象相关的求解效应的力场扭转角参数推导的新方法

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摘要

A procedure for deriving force field torsion parameters including certain previously neglected solvation effects is suggested. In contrast to the conventional in vacuo approaches, the dihedral parameters are obtained from the difference between the quantum-mechanical self-consistent reaction field and Poisson-Boltzmann continuum solvation models. An analysis of the solvation contributions shows that two major effects neglected when torsion parameters are derived in vacuo are (i) conformation-dependent solute polarization and (ii) solvation of conformation-dependent charge distribution. Using the glycosidic torsion as an example, we demonstrate that the corresponding correction for the torsion potential is substantial and important. Our approach avoids double counting of solvation effects and provides parameters that may be used in combination with any of the widely used nonpolarizable discrete solvent models, such as TIPnP or SPC/E, or with continuum solvent models. Differences between our model and the previously suggested solvation models are discussed. Improvements were demonstrated for the latest AMBER RNA XOL3 parameters derived with inclusion of solvent effects in a previous publication (Zgarbova et al. /. Chem. Theory Comput. 2011, 7, 2886). The described procedure may help to provide consistently better force field parameters than the currently used parametrization approaches.
机译:建议了一种得出力场扭转参数的程序,其中包括某些先前被忽略的溶剂化作用。与常规的真空方法相反,二面体参数是从量子力学自洽反应场与泊松-玻尔兹曼连续溶剂化模型之间的差异获得的。对溶剂化作用的分析表明,在真空中导出扭转参数时忽略的两个主要影响是(i)依赖于构象的溶质极化和(ii)依赖于构象的电荷分布的溶剂化。以糖苷扭转为例,我们证明了扭转潜力的相应校正是重要而重要的。我们的方法避免了对溶剂化效果的重复计算,并提供了可与任何广泛使用的非极化离散溶剂模型(例如TIPnP或SPC / E)或连续溶剂模型结合使用的参数。讨论了我们的模型与先前建议的溶剂化模型之间的差异。在先前的出版物中(Zgarbova et al./.Chem.Theory Comput.2011,7,2886)证明了对最新的AMBER RNA XOL3参数的改进,该参数包括溶剂效应。所描述的过程可以帮助提供比当前使用的参数化方法更好的一致的力场参数。

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