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单分子电子转移探测蛋白质构象动力学

Protein conformational dynamics probed by single-molecule electron transfer.

作者信息

Yang Haw, Luo Guobin, Karnchanaphanurach Pallop, Louie Tai-Man, Rech Ivan, Cova Sergio, Xun Luying, Xie X Sunney

机构信息

Department of Chemistry and Chemical Biology, Harvard University, Cambridge, MA 02138, USA.

出版信息

Science. 2003 Oct 10;302(5643):262-6. doi: 10.1126/science.1086911.

Abstract

Electron transfer is used as a probe for angstrom-scale structural changes in single protein molecules. In a flavin reductase, the fluorescence of flavin is quenched by a nearby tyrosine residue by means of photo-induced electron transfer. By probing the fluorescence lifetime of the single flavin on a photon-by-photon basis, we were able to observe the variation of flavin-tyrosine distance over time. We could then determine the potential of mean force between the flavin and the tyrosine, and a correlation analysis revealed conformational fluctuation at multiple time scales spanning from hundreds of microseconds to seconds. This phenomenon suggests the existence of multiple interconverting conformers related to the fluctuating catalytic reactivity.

摘要

电子转移被用作探测单个蛋白质分子中埃尺度结构变化的探针。在一种黄素还原酶中,黄素的荧光通过光诱导电子转移被附近的酪氨酸残基淬灭。通过逐个光子地探测单个黄素的荧光寿命,我们能够观察到黄素与酪氨酸之间的距离随时间的变化。然后我们可以确定黄素与酪氨酸之间的平均力势,并且相关分析揭示了从数百微秒到数秒的多个时间尺度上的构象波动。这种现象表明存在与波动的催化反应性相关的多个相互转化的构象体。

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