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通过理论方法揭示溶液中模型肽的振动耦合

Unveiling Vibrational Couplings in Model Peptides in Solution by a Theoretical Approach.

作者信息

Coppola Federico, Perrella Fulvio, Petrone Alessio, Donati Greta, Marinelli Luciana, Rega Nadia

机构信息

Scuola Superiore Meridionale, Largo San Marcellino 10, I-80138 Napoli, Italy.

Department of Chemical Sciences, University of Napoli Federico II, Complesso Universitario di M.S. Angelo, Via Cintia 21, I-80126 Napoli, Italy.

出版信息

Molecules. 2025 Jul 4;30(13):2854. doi: 10.3390/molecules30132854.

Abstract

Vibrational analysis of peptides in solution and the theoretical determination of the effects of the microenvironment on infrared and Raman spectra are of key importance in many fields of chemical interest. In this work, we present a computational study combining static quantum mechanical calculations with ab initio molecular dynamics simulations to investigate the vibrational behavior of three peptide models in both the gas phase and in explicit water, under non-periodic boundary conditions. The vibrational spectra of the main amide bands, namely amide I-III and A, were analyzed using a time-frequency approach based on the wavelet transform, which allows the resolution of transient frequency shifts and mode couplings along the trajectories. This combined approach enabled us to perform a time-resolved vibrational analysis revealing how vibrational frequencies, especially of the C=O and N-H stretching modes, evolve over time due to dynamical microsolvation. These fluctuations modulate vibrational couplings and lead to spectral broadening and frequency shifts that correlate with the local structuring of the solvent. In conclusion, our results highlight how the proposed protocol allows for the direct connection between vibrational modes and local structural changes, providing a link from the spectroscopic observable to the structure, the peptide backbone, and its microenvironment.

摘要

溶液中肽的振动分析以及微环境对红外和拉曼光谱影响的理论测定在许多化学相关领域中至关重要。在这项工作中,我们开展了一项计算研究,将静态量子力学计算与从头算分子动力学模拟相结合,以研究三种肽模型在非周期性边界条件下于气相和显式水中的振动行为。使用基于小波变换的时频方法分析了主要酰胺带(即酰胺I - III和A)的振动光谱,该方法能够解析沿轨迹的瞬态频率偏移和模式耦合。这种组合方法使我们能够进行时间分辨振动分析,揭示振动频率,特别是C = O和N - H伸缩模式的振动频率如何由于动态微溶剂化而随时间演变。这些波动调节振动耦合并导致光谱展宽和频率偏移,这些偏移与溶剂的局部结构相关。总之,我们的结果突出了所提出的方案如何实现振动模式与局部结构变化之间的直接联系,提供了从光谱可观测值到结构、肽主链及其微环境的联系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc79/12251535/17e1eb245320/molecules-30-02854-g001.jpg

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