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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Molecular mechanics force field-based map for peptide amide-I mode in solution and its application to alanine di- and tripeptides
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Molecular mechanics force field-based map for peptide amide-I mode in solution and its application to alanine di- and tripeptides

机译:基于分子力学力场的肽酰胺-I模式图谱及其在丙氨酸二肽和三肽中的应用

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摘要

A molecular mechanics (MM) force field-based empirical electrostatic potential map (MM map) for amide-I vibrations is developed with the aim of seeking a quick and reasonable approach to computing local mode parameters and their distributions in solution phase. Using N-methylacetamide (NMA) as a model compound, the instantaneous amide-I normal-mode parameters (transition frequency and dipole) obtained at the level of MM force fields are converted to solution phase values by a four-site potential scheme, but without the need for quantum mechanical frequency computations of solute-solvent clusters as are required in constructing ab initio-based electrostatic potential or field maps. The linear IR line shape of the amide-I mode in NMA obtained from the frequency-time correlation function on the basis of the MM map are found to be comparable to those from the ab initio-based maps. Our results show that the amide-I local mode parameters are largely determined by the solvated peptide structure rather than by explicit solvent molecules, suggesting an inherent local structure sensitivity of the amide-I mode in solvated peptides. Applications to alanine di- and tripeptides are satisfactorily demonstrated, showing its usefulness as an alternative approach in providing vibrational parameters for the simulation of linear IR and 2D IR spectra of the amide-I modes in polypeptides.
机译:为了寻求一种快速,合理的方法来计算局部模式参数及其在溶液相中的分布,开发了一种基于分子力学(MM)力场的酰胺-I振动经验静电势图(MM图)。使用N-甲基乙酰胺(NMA)作为模型化合物,通过四点电势方案将在MM力场水平获得的瞬时酰胺I正态参数(转变频率和偶极子)转换为溶液相值,但是无需像构造从头开始的静电势或场图那样需要对溶质溶剂团簇进行量子力学频率计算。发现基于MM图从频率-时间相关函数获得的在NMA中酰胺-I模式的线性IR线形状与基于从头算的图的线性IR线形状可比。我们的结果表明,酰胺I局部模式参数主要由溶剂化的肽结构决定,而不是由明确的溶剂分子决定,这表明酰胺化I模式在溶剂化肽中固有的局部结构敏感性。令人满意地证明了丙氨酸二肽和三肽的应用,显示出其在提供振动参数以模拟多肽中酰胺-I模式的线性IR和2D IR光谱方面作为替代方法的有用性。

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