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首页> 外文期刊>Angewandte Chemie >Structure-Function Dataset Reveals Environment Effects within a Fluorescent Protein Model System**
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Structure-Function Dataset Reveals Environment Effects within a Fluorescent Protein Model System**

机译:结构函数数据集显示荧光蛋白模型系统内的环境效应**

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摘要

Anisotropic environments can drastically alter the spectroscopy and photochemistry of molecules, leading to complex structure-function relationships. We examined this using fluorescent proteins as easy-to-modify model systems. Starting from a single scaffold, we have developed a range of 27 photochromic fluorescent proteins that cover a broad range of spectroscopic properties, including the determination of 43 crystal structures. Correlation and principal component analysis confirmed the complex relationship between structure and spectroscopy, but also allowed us to identify consistent trends and to relate these to the spatial organization. We find that changes in spectroscopic properties can come about through multiple underlying mechanisms, of which polarity, hydrogen bonding and presence of water molecules are key modulators. We anticipate that our findings and rich structure/spectroscopy dataset can open opportunities for the development and evaluation of new and existing protein engineering methods.
机译:各向异性环境可以极大地改变分子的光谱和光化学,导致复杂的结构-功能关系。我们使用荧光蛋白作为易于修改的模型系统来研究这一点。从单一支架开始,我们开发了一系列27种光致变色荧光蛋白,涵盖了广泛的光谱特性,包括43种晶体结构的测定。相关性和主成分分析证实了结构和光谱之间的复杂关系,但也使我们能够确定一致的趋势,并将其与空间组织联系起来。我们发现光谱性质的变化可以通过多种潜在机制来实现,其中极性、氢键和水分子的存在是关键的调节因素。我们预计,我们的发现和丰富的结构/光谱数据集可以为开发和评估新的和现有的蛋白质工程方法提供机会。

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