拉马钱德兰地块
化学
折叠(DSP实现)
蛋白质折叠
共振拉曼光谱
肽键
肽
结晶学
蛋白质二级结构
蛋白质结构
共振(粒子物理)
分子动力学
化学物理
拉曼光谱
能源景观
计算化学
物理
生物化学
原子物理学
工程类
光学
电气工程
作者
Sulayman A. Oladepo,Kan Xiong,Zhenmin Hong,Sanford A. Asher
摘要
UV resonance Raman spectroscopy (UVRR) is a powerful method that has the requisite selectivity and sensitivity to incisively monitor biomolecular structure and dynamics in solution. In this perspective, we highlight applications of UVRR for studying peptide and protein structure and the dynamics of protein and peptide folding. UVRR spectral monitors of protein secondary structure, such as the Amide III(3) band and the C(α)-H band frequencies and intensities can be used to determine Ramachandran Ψ angle distributions for peptide bonds. These incisive, quantitative glimpses into conformation can be combined with kinetic T-jump methodologies to monitor the dynamics of biomolecular conformational transitions. The resulting UVRR structural insight is impressive in that it allows differentiation of, for example, different α-helix-like states that enable differentiating π- and 3(10)- states from pure α-helices. These approaches can be used to determine the Gibbs free energy landscape of individual peptide bonds along the most important protein (un)folding coordinate. Future work will find spectral monitors that probe peptide bond activation barriers that control protein (un)folding mechanisms. In addition, UVRR studies of sidechain vibrations will probe the role of side chains in determining protein secondary, tertiary and quaternary structures.
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