Glycine insertion modulates the fluorescence properties of Aequorea victoria green fluorescent protein and its variants in their ambient environment.

Biophysics and Physicobiology Pub Date : 2021-05-21 eCollection Date: 2021-01-01 DOI:10.2142/biophysico.bppb-v18.016
Takamitsu J Morikawa, Masayoshi Nishiyama, Keiko Yoshizawa, Hideaki Fujita, Tomonobu M Watanabe
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引用次数: 1

Abstract

The green fluorescent protein (GFP) derived from Pacific Ocean jellyfish is an essential tool in biology. GFP-solvent interactions can modulate the fluorescent property of GFP. We previously reported that glycine insertion is an effective mutation in the yellow variant of GFP, yellow fluorescent protein (YFP). Glycine insertion into one of the β-strands comprising the barrel structure distorts its structure, allowing water molecules to invade near the chromophore, enhancing hydrostatic pressure or solution hydrophobicity sensitivity. However, the underlying mechanism of how glycine insertion imparts environmental sensitivity to YFP has not been elucidated yet. To unveil the relationship between fluorescence and β-strand distortion, we investigated the effects of glycine insertion on the dependence of the optical properties of GFP variants named enhanced-GFP (eGFP) and its yellow (eYFP) and cyan (eCFP) variants with respect to pH, temperature, pressure, and hydrophobicity. Our results showed that the quantum yield decreased depending on the number of inserted glycines in all variants, and the dependence on pH, temperature, pressure, and hydrophobicity was altered, indicating the invasion of water molecules into the β-barrel. Peak shifts in the emission spectrum were observed in glycine-inserted eGFP, suggesting a change of the electric state in the excited chromophore. A comparative investigation of the spectral shift among variants under different conditions demonstrated that glycine insertion rearranged the hydrogen bond network between His148 and the chromophore. The present results provide important insights for further understanding the fluorescence mechanism in GFPs and suggest that glycine insertion could be a potent approach for investigating the relationship between water molecules and the intra-protein chromophore.

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甘氨酸插入调节维多利亚绿荧光蛋白及其变异体在环境中的荧光特性。
从太平洋水母中提取的绿色荧光蛋白(GFP)是生物学研究的重要工具。GFP与溶剂的相互作用可以调节GFP的荧光特性。我们之前报道过甘氨酸插入是黄色荧光蛋白(YFP)黄色变体的有效突变。甘氨酸插入到组成桶状结构的β-链中会扭曲其结构,使水分子侵入发色团附近,增强静水压力或溶液疏水性敏感性。然而,甘氨酸插入如何赋予YFP环境敏感性的潜在机制尚未阐明。为了揭示荧光与β-链畸变之间的关系,我们研究了甘氨酸插入对增强型绿色荧光蛋白(eGFP)及其黄色(eYFP)和青色(eCFP)变体光学性质对pH、温度、压力和疏水性的依赖性的影响。我们的研究结果表明,在所有变体中,量子产率随插入甘氨酸的数量而降低,并且对pH、温度、压力和疏水性的依赖发生了改变,表明水分子侵入了β-桶。在甘氨酸插入的eGFP中观察到发射光谱的峰移,表明受激发色团的电态发生了变化。对不同条件下不同变体的光谱位移的比较研究表明,甘氨酸的插入重新排列了His148和发色团之间的氢键网络。本研究结果为进一步了解gfp的荧光机制提供了重要的见解,并表明甘氨酸插入可能是研究水分子与蛋白质内发色团之间关系的有效方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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