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IR spectra of N-methylacetamide in water predicted by combined quantum mechanical/molecular mechanical molecular dynamics simulations

机译:量子力学/分子力学分子动力学模拟预测的水中N-甲基乙酰胺的红外光谱

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We applied the combined quantum mechanical (QM)/molecular mechanical (MM) molecular dynamics (MD) simulation method in assessing IR spectra of N-methylacetamide and its deuterated form in aqueous solutions. The model peptide is treated at the Austin Model 1 (AM1) level and the induced dipole effects by the solvent are incorporated in fluctuating solute dipole moments, which are calculated using partial charges from Mulliken population analyses without resorting to any available high-level ab initio dipole moment data. Fourier transform of the solute dipole autocorrelation function produces in silico IR spectra, in which the relative peak intensities and bandwidths of major amide bands are quantitatively compatible with experimental results only when both geometric and electronic polarizations of the peptide by the solvent are dealt with at the same quantum-mechanical level. We cast light on the importance of addressing dynamic charge fluctuations of the solute in calculating IR spectra by comparing classical and QM/MM MD simulation results. We propose the adjustable scaling factors for each amide mode to be directly compared with experimental data. (c) 2005 American Institute of Physics.
机译:我们应用组合的量子力学(QM)/分子力学(MM)分子动力学(MD)模拟方法评估水溶液中N-甲基乙酰胺及其氘化形式的红外光谱。在Austin Model 1(AM1)水平上处理模型肽,并将溶剂诱导的偶极效应纳入波动的溶质偶极矩,该溶质偶极矩使用Mulliken总体分析中的部分电荷计算而无需求助于任何可用的高水平从头算偶极矩数据。溶质偶极自相关函数的傅立叶变换产生计算机红外光谱,其中仅当在溶剂处处理了肽的几何极化和电子极化时,主要酰胺带的相对峰强度和带宽才与实验结果定量兼容。相同的量子力学水平。通过比较经典和QM / MM MD模拟结果,我们阐明了解决溶质动态电荷波动在计算IR光谱中的重要性。我们建议将每种酰胺模式的可调节比例因子直接与实验数据进行比较。 (c)2005年美国物理研究所。

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