首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Environmental Effects on the Femtosecond-Picosecond Fluorescence Dynamics of Photoactive Yellow Protein: Chromophores in Aqueous Solutions and in Protein Nanospaces Modified by Site-Directed Mutagenesis
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Environmental Effects on the Femtosecond-Picosecond Fluorescence Dynamics of Photoactive Yellow Protein: Chromophores in Aqueous Solutions and in Protein Nanospaces Modified by Site-Directed Mutagenesis

机译:对光敏黄色蛋白的飞秒-皮秒荧光动力学的环境影响:水溶液和定点诱变修饰的蛋白质纳米空间中的发色团。

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摘要

The effect of the protein environment surrounding chromophores (protein nanospaces) on the photoinduced ultrafast twisting of chromophores in photoactive yellow protein (PYP) was investigated by comparing the femtosecond-picosecond fluorescence dynamics of wild type PYP with those of the chromophore in aqueous solution as well as in protein nanospace modified by site-directed mutagenesis. The rate of the twisted state formation of the chromophore (the primary step of the trans → cis photoisomerization) was demonstrated to be considerably enhanced in protein compared with the aqueous solution. Moreover, results of the measurements of fluorescence dynamics of the chromophore in the protein nanospace modified by site-directed mutagenesis implied that the twisted state formation by flipping the thioester linkage of the chromophore was slowed by modifying the nanospace structure to a slightly looser one. Namely, the more restricted structure of the protein nanospace in the wild-type PYP seems to be best engineered for the twisting by the flipping mechanism.
机译:通过比较野生型PYP的飞秒-皮秒荧光动力学与水溶液中发色团的飞秒-皮秒荧光动力学,研究了发色团周围的蛋白质环境(蛋白纳米空间)对光敏黄色蛋白(PYP)中的生色团的光诱导超快扭曲的影响。如通过定点诱变修饰的蛋白质纳米空间。已证明,与水溶液相比,生色团的扭曲态形成速率(反式→顺式光异构化的第一步)在蛋白质上得到了显着提高。此外,通过定点诱变修饰的蛋白质纳米空间中发色团的荧光动力学测量结果表明,通过将纳米空间结构修饰成稍微松散的结构,通过翻转发色团的硫酯键可以减缓扭曲态的形成。即,野生型PYP中蛋白质纳米空间的限制性更强的结构似乎是通过翻转机制进行扭曲的最佳工程。

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