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Two-Dimensional Infrared (2DIR) Spectroscopy of the Peptide Beta3s Folding

机译:Beta3s折叠肽的二维红外(2DIR)光谱

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摘要

Probing underlying free energy landscape, pathways, and mechanism is the key for understanding protein folding in theory and experiment. Recently time-resolved two-dimensional infrared (2DIR) with femtosecond laser pulses, has emerged as a promising tool for investigating the protein folding dynamics on faster timescales than possible by NMR. We have employed molecular dynamics simulations to compute 2DIR spectra of the folding process of a peptide, Beta3s. Simulated non-chiral and chiral 2DIR signals illustrate the variation of the spectra as the peptide conformation evolves along the free energy landscape. Chiral spectra show stronger changes than the non-chiral signals because cross peaks caused by the formation of the β-sheet are clearly resolved. Chirality-induced 2DIR may be used to detect the folding of β-sheet proteins with high spectral and temporal resolution.
机译:探索潜在的自由能态势,途径和机制是从理论和实验上理解蛋白质折叠的关键。最近,具有飞秒激光脉冲的时间分辨二维红外(2DIR)已成为一种有前途的工具,可以比NMR更快的时间尺度研究蛋白质折叠动力学。我们已经利用分子动力学模拟来计算肽Beta3s折叠过程的2DIR光谱。模拟的非手性和手性2DIR信号说明了随着肽构象沿自由能态演化的光谱变化。手性光谱显示出比非手性信号更强的变化,因为清楚地分辨了由β-折叠形成的交叉峰。手性诱导的2DIR可用于检测具有高光谱和时间分辨率的β-sheet蛋白的折叠。

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