Suppr超能文献

多分辨率连续小波变换在研究溶质-溶剂耦合振动分子动力学中的应用。

Multiresolution continuous wavelet transform for studying coupled solute-solvent vibrations molecular dynamics.

机构信息

Department of Chemical Sciences, University of Napoli Federico II, Complesso Universitario di M. S. Angelo, Via Cintia, I-80126 Napoli, Italy.

出版信息

Phys Chem Chem Phys. 2020 Oct 15;22(39):22645-22661. doi: 10.1039/d0cp02495c.

Abstract

Vibrational analysis in solution and the theoretical determination of infrared and Raman spectra are of key importance in many fields of chemical interest. Vibrational band dynamics of molecules and their sensitivity to the environment can also be captured by these spectroscopies in their time dependent version. However, it is often difficult to provide an interpretation of the experimental data at the molecular scale, such as molecular mechanisms or the processes hidden behind them. In this work, we present a theoretical-computational protocol based on ab initio molecular dynamics simulations and a combination of normal-like (generalized) mode analysis of solute-solvent clusters with a wavelet transform, for the first time. The case study is the vibrational dynamics of N-methyl-acetamide (NMA) in water solution, a well-known model of hydration of peptides and proteins. Amide modes are typical bands of peptide and protein backbone, and their couplings with the environment are very challenging in terms of the accurate prediction of solvent induced intensity and frequency shifts. The contribution of water molecules surrounding NMA to the composition of generalized and time resolved modes is introduced in our vibrational analysis, showing unequivocally its influence on the amide mode spectra. It is also shown that such mode compositions need the inclusion of the first shell solvent molecules to be accurately described. The wavelet analysis is proven to be strongly recommended to follow the time evolution of the spectra, and to capture vibrational band couplings and frequency shifts over time, preserving at the same time a well-balanced time-frequency resolution. This peculiar feature also allows one to perform a combined structural-vibrational analysis, where the different strengths of hydrogen bond interactions can quantitatively affect the amide bands over time at finite temperature. The proposed method allows for the direct connection between vibrational modes and local structural changes, providing a link from the spectroscopic observable to the structure, in this case the peptide backbone, and its hydration layouts.

摘要

在许多化学领域,溶液中的振动分析以及红外和拉曼光谱的理论确定都至关重要。通过这些光谱的时间相关版本,也可以捕获分子的振动带动力学及其对环境的敏感性。然而,通常很难在分子尺度上对实验数据进行解释,例如分子机制或隐藏在其后的过程。在这项工作中,我们首次提出了一种基于从头算分子动力学模拟的理论计算方案,该方案结合了溶质-溶剂团簇的正则模式(广义)分析与小波变换。案例研究是 N-甲基乙酰胺(NMA)在水溶液中的振动动力学,这是肽和蛋白质水合作用的一个众所周知的模型。酰胺模式是肽和蛋白质骨架的典型带,其与环境的耦合在准确预测溶剂诱导的强度和频率位移方面极具挑战性。在我们的振动分析中,引入了围绕 NMA 的水分子对广义和时分辨模式组成的贡献,明确表明了其对酰胺模式光谱的影响。还表明,这种模式组成需要包含第一壳层溶剂分子才能准确描述。小波分析被证明强烈建议用于跟踪光谱的时间演化,并随时间捕获振动带耦合和频率位移,同时保持良好的时频分辨率平衡。这个特殊的特征还允许进行组合的结构振动分析,其中氢键相互作用的不同强度可以随时间定量地影响酰胺带在有限温度下的变化。所提出的方法允许振动模式与局部结构变化之间直接连接,从而将光谱可观察量与结构(在这种情况下为肽骨架及其水合布局)联系起来。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验