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Simulations of the temperature dependence of amide i vibration

机译:酰胺i振动的温度依赖性模拟

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摘要

For spectroscopic studies of peptide and protein thermal denaturation it is important to single out the contribution of the solvent to the spectral changes from those originated in the molecular structure. To obtain insights into the origin and size of the temperature solvent effects on the amide I spectra, combined molecular dynamics and density functional simulations were performed with the model N-methylacetamide molecule (NMA). The computations well reproduced frequency and intensity changes previously observed in aqueous NMA solutions. An empirical correction of vacuum frequencies in single NMA molecule based on the electrostatic potential of the water molecules provided superior results to a direct density functional average obtained for a limited number of solute-solvent clusters. The results thus confirm that the all-atom quantum and molecular mechanics approach captures the overall influence of the temperature dependent solvent properties on the amide I spectra and can improve the accuracy and reliability of molecular structural studies.
机译:对于肽和蛋白质热变性的光谱研究,重要的是要从分子结构起源的溶剂中挑出溶剂对光谱变化的贡献。为了深入了解温度对酰胺I光谱的溶剂影响的起因和大小,使用模型N-甲基乙酰胺分子(NMA)进行了结合的分子动力学和密度泛函模拟。计算结果很好地再现了先前在NMA水溶液中观察到的频率和强度变化。根据水分子的静电势对单个NMA分子中的真空频率进行经验校正,可提供比有限数量的溶质-溶剂簇得到的直接密度泛函平均值更高的结果。因此,结果证实了全原子量子和分子力学方法能够捕获温度依赖性溶剂性质对酰胺I光谱的总体影响,并且可以提高分子结构研究的准确性和可靠性。

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