Department of Botany, School of Chemical and Life Sciences, Jamia Hamdard, New Delhi, India.
Department of Botany, Faculty of Life Sciences, Aligarh Muslim University, Aligarh, India.
Sci Rep. 2020 Jan 22;10(1):992. doi: 10.1038/s41598-020-57654-y.
Reduced glutathione (GSH) level inside the cell is a critical determinant for cell viability. The level of GSH varies across the cells, tissues and environmental conditions. However, our current understanding of physiological and pathological GSH changes at high spatial and temporal resolution is limited due to non-availability of practicable GSH-detection methods. In order to measure GSH at real-time, a ratiometric genetically encoded nanosensor was developed using fluorescent proteins and fluorescence resonance energy transfer (FRET) approach. The construction of the sensor involved the introduction of GSH binding protein (YliB) as a sensory domain between cyan fluorescent protein (CFP; FRET donor) and yellow fluorescent protein (YFP; FRET acceptor). The developed sensor, named as FLIP-G (Fluorescence Indicator Protein for Glutathione) was able to measure the GSH level under in vitro and in vivo conditions. When the purified FLIP-G was titrated with different concentrations of GSH, the FRET ratio increased with increase in GSH-concentration. The sensor was found to be specific for GSH and also stable to changes in pH. Moreover, in live bacterial cells, the constructed sensor enabled the real-time quantification of cytosolic GSH that is controlled by the oxidative stress level. When expressed in yeast cells, FRET ratio increased with the external supply of GSH to living cells. Therefore, as a valuable tool, the developed FLIP-G can monitor GSH level in living cells and also help in gaining new insights into GSH metabolism.
细胞内还原型谷胱甘肽 (GSH) 的水平是细胞活力的关键决定因素。GSH 的水平因细胞、组织和环境条件而异。然而,由于缺乏可行的 GSH 检测方法,我们目前对高时空分辨率下的生理和病理 GSH 变化的理解有限。为了实时测量 GSH,使用荧光蛋白和荧光共振能量转移 (FRET) 方法开发了一种比率型基因编码纳米传感器。该传感器的构建涉及在青色荧光蛋白 (CFP;FRET 供体) 和黄色荧光蛋白 (YFP;FRET 受体) 之间引入 GSH 结合蛋白 (YliB) 作为感应结构域。开发的传感器命名为 FLIP-G(用于谷胱甘肽的荧光指示剂蛋白),能够在体外和体内条件下测量 GSH 水平。当纯化的 FLIP-G 与不同浓度的 GSH 滴定时,FRET 比随着 GSH 浓度的增加而增加。该传感器对 GSH 具有特异性,并且对 pH 值的变化也很稳定。此外,在活细菌细胞中,构建的传感器能够实时定量细胞溶质 GSH,其水平受氧化应激水平的控制。当在酵母细胞中表达时,FRET 比随着外部供应 GSH 到活细胞而增加。因此,作为一种有价值的工具,开发的 FLIP-G 可以监测活细胞中的 GSH 水平,并有助于深入了解 GSH 代谢。