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绿色和红色荧光蛋白:通过位点选择性光谱和空穴烧蚀探测光诱导和热诱导动力学

Green and red fluorescent proteins: photo- and thermally induced dynamics probed by site-selective spectroscopy and hole burning.

作者信息

Bonsma S, Purchase R, Jezowski S, Gallus J, Könz F, Völker S

机构信息

Huygens and Gorlaeus Laboratories, Leiden University, P.O. Box 9504, 2300 RA Leiden, The Netherlands.

出版信息

Chemphyschem. 2005 May;6(5):838-49. doi: 10.1002/cphc.200500005.

Abstract

The cloning and expression of autofluorescent proteins in living matter, combined with modern imaging techniques, have thoroughly changed the world of bioscience. In particular, such proteins are widely used as genetically encoded labels to track the movement of proteins as reporters of cellular signals and to study protein-protein interactions by fluorescence resonance energy transfer (FRET). Their optical properties, however, are complex and it is important to understand these for the correct interpretation of imaging data and for the design of new fluorescent mutants. In this Minireview we start with a short survey of the field and then focus on the photo- and thermally induced dynamics of green and red fluorescent proteins. In particular, we show how fluorescence line narrowing and high-resolution spectral hole burning at low temperatures can be used to unravel the photophysics and photochemistry and shed light on the intricate electronic structure of these proteins.

摘要

自荧光蛋白在生物活体中的克隆与表达,结合现代成像技术,彻底改变了生物科学领域。特别地,此类蛋白被广泛用作基因编码标签,以追踪蛋白质的运动,作为细胞信号的报告分子,并通过荧光共振能量转移(FRET)研究蛋白质-蛋白质相互作用。然而,它们的光学性质很复杂,了解这些性质对于正确解释成像数据以及设计新的荧光突变体非常重要。在这篇小型综述中,我们首先对该领域进行简要概述,然后重点关注绿色和红色荧光蛋白的光致和热致动力学。特别地,我们展示了如何利用低温下的荧光线窄化和高分辨率光谱烧孔来揭示这些蛋白质的光物理和光化学过程,并阐明其复杂的电子结构。

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