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首页> 外文期刊>Analytical Biochemistry: An International Journal of Analytical and Preparative Methods >Chromophore maturation and fluorescence fluctuation spectroscopy of fluorescent proteins in a cell-free expression system
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Chromophore maturation and fluorescence fluctuation spectroscopy of fluorescent proteins in a cell-free expression system

机译:无细胞表达系统中荧光蛋白的发色团成熟和荧光波动光谱

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摘要

Cell-free synthesis, a method for the rapid expression of proteins, is increasingly used to study interactions of complex biological systems. GFP and its variants have become indispensable for fluorescence studies in live cells and are equally attractive as reporters for cell-free systems. This work investigates the use of fluorescence fluctuation spectroscopy (FFS) as a tool for quantitative analysis of protein interactions in cell-free expression systems. We also explore chromophore maturation of fluorescent proteins, which is of crucial importance for fluorescence studies. A droplet sample protocol was developed that ensured sufficient oxygenation for chromophore maturation and ease of manipulation for titration studies. The kinetics of chromophore maturation of EGFP, EYFP, and mCherry were analyzed as a function of temperature. A strong increase in the rate from room temperature to 37 °C was observed. We further demonstrate that all EGFP proteins fully mature in the cell-free solution and that brightness is a robust parameter specifying stoichiometry. Finally, FFS is applied to study the stoichiometry of the nuclear transport factor 2 in a cell-free system over a broad concentration range. We conclude that combining cell-free expression and FFS provides a powerful technique for quick, quantitative study of chromophore maturation and protein-protein interaction.
机译:无细胞合成是一种快速表达蛋白质的方法,越来越多地用于研究复杂生物系统的相互作用。 GFP及其变体已成为在活细胞中进行荧光研究的必不可少的工具,并且与无细胞系统报道分子一样具有吸引力。这项工作调查了荧光波动光谱(FFS)作为定量分析无细胞表达系统中蛋白质相互作用的工具的使用。我们还探讨了荧光蛋白的发色团成熟,这对于荧光研究至关重要。开发了一种液滴样品方案,以确保生色团成熟所需的充分充氧,并易于进行滴定研究。分析了EGFP,EYFP和mCherry发色团成熟的动力学与温度的关系。观察到从室温到37°C的速率急剧增加。我们进一步证明,所有EGFP蛋白在无细胞溶液中完全成熟,并且亮度是指定化学计量的可靠参数。最后,FFS被用于研究无细胞系统中宽浓度范围内核转运因子2的化学计量。我们得出的结论是,结合无细胞表达和FFS为生色团成熟和蛋白质-蛋白质相互作用的快速定量研究提供了强大的技术。

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