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太赫兹欠阻尼振动运动控制溶液中蛋白质-配体的结合。

Terahertz underdamped vibrational motion governs protein-ligand binding in solution.

机构信息

School of Chemistry, WestCHEM, University of Glasgow, Glasgow, UK.

Strathclyde Institute of Pharmacy and Biomedical Sciences, University of Strathclyde, Glasgow, UK.

出版信息

Nat Commun. 2014 Jun 3;5:3999. doi: 10.1038/ncomms4999.

Abstract

Low-frequency collective vibrational modes in proteins have been proposed as being responsible for efficiently directing biochemical reactions and biological energy transport. However, evidence of the existence of delocalized vibrational modes is scarce and proof of their involvement in biological function absent. Here we apply extremely sensitive femtosecond optical Kerr-effect spectroscopy to study the depolarized Raman spectra of lysozyme and its complex with the inhibitor triacetylchitotriose in solution. Underdamped delocalized vibrational modes in the terahertz frequency domain are identified and shown to blue-shift and strengthen upon inhibitor binding. This demonstrates that the ligand-binding coordinate in proteins is underdamped and not simply solvent-controlled as previously assumed. The presence of such underdamped delocalized modes in proteins may have significant implications for the understanding of the efficiency of ligand binding and protein-molecule interactions, and has wider implications for biochemical reactivity and biological function.

摘要

低频集体振动模式在蛋白质中被认为是负责有效地指导生化反应和生物能量运输的原因。然而,存在离域振动模式的证据很少,它们在生物功能中的参与也没有得到证明。在这里,我们应用极其灵敏的飞秒光克尔效应光谱技术研究了溶菌酶及其与抑制剂三乙酰壳三糖复合物在溶液中的去极化拉曼光谱。在太赫兹频域中识别出欠阻尼的离域振动模式,并发现它们在抑制剂结合时蓝移并增强。这表明,蛋白质中的配体结合坐标是欠阻尼的,而不是以前假设的仅仅受溶剂控制。蛋白质中存在这种欠阻尼的离域模式可能对理解配体结合和蛋白质分子相互作用的效率有重要意义,并对生化反应性和生物功能有更广泛的影响。

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