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通过超快光谱和全局分析方法揭示黄素结合光感受器的光激活机制。

Photoactivation mechanisms of flavin-binding photoreceptors revealed through ultrafast spectroscopy and global analysis methods.

作者信息

Mathes Tilo, van Stokkum Ivo H M, Kennis John T M

机构信息

Department of Physics, Faculty of Sciences, VU University Amsterdam, De Boelelaan 1081, Amsterdam, 1081HV, The Netherlands.

出版信息

Methods Mol Biol. 2014;1146:401-42. doi: 10.1007/978-1-4939-0452-5_16.

Abstract

Flavin-binding photoreceptor proteins use the isoalloxazine moiety of flavin cofactors to absorb light in the blue/UV-A wavelength region and subsequently translate it into biological information. The underlying photochemical reactions and protein structural dynamics are delicately tuned by the protein environment and represent fundamental reactions in biology and chemistry. Due to their photo-switchable nature, these proteins can be studied efficiently with laser-flash induced transient absorption and emission spectroscopy with temporal precision down to the femtosecond time domain. Here, we describe the application of both visible and mid-IR ultrafast transient absorption and time-resolved fluorescence methods in combination with sophisticated global analysis procedures to elucidate the photochemistry and signal transduction of BLUF (Blue light receptors using FAD) and LOV (Light oxygen voltage) photoreceptor domains.

摘要

黄素结合光感受器蛋白利用黄素辅因子的异咯嗪部分在蓝光/紫外-A波长区域吸收光,并随后将其转化为生物信息。潜在的光化学反应和蛋白质结构动力学由蛋白质环境精细调节,代表了生物学和化学中的基本反应。由于其光开关特性,这些蛋白质可以通过激光闪光诱导的瞬态吸收和发射光谱,在飞秒时域的时间精度下进行高效研究。在这里,我们描述了可见光和中红外超快瞬态吸收以及时间分辨荧光方法与复杂的全局分析程序相结合的应用,以阐明BLUF(使用FAD的蓝光受体)和LOV(光氧电压)光感受器结构域的光化学和信号转导。

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