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Strong increase in the autofluorescence of cells signals struggle for survival

机译:细胞自体荧光的强烈增加信号为生存而斗争

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摘要

Prokaryotic and eukaryotic cells exhibit an intrinsic natural fluorescence due to the presence of fluorescent cellular structural components and metabolites. Therefore, cellular autofluorescence (AF) is expected to vary with the metabolic states of cells. We examined how exposure to the different stressors changes the AF of Escherichia coli cells. We observed that bactericidal treatments increased green cellular AF, and that de novo protein synthesis was required for the observed AF increase. Excitation and emission spectra and increased expression of the genes from the flavin biosynthesis pathway, strongly suggested that flavins are major contributors to the increased AF. An increased expression of genes encoding diverse flavoproteins which are involved in energy production and ROS detoxification, indicates a cellular strategy to cope with severe stresses. An observed increase in AF under stress is an evolutionary conserved phenomenon as it occurs not only in cells from different bacterial species, but also in yeast and human cells.
机译:由于存在荧光细胞结构成分和代谢产物,原核和真核细胞显示出固有的天然荧光。因此,细胞自发荧光(AF)有望随细胞的代谢状态而变化。我们研究了暴露于不同应激源如何改变大肠杆菌细胞的AF。我们观察到杀菌处理会增加绿色细胞房颤,并且观察到的房颤增加需要从头进行蛋白质合成。黄素生物合成途径的激发和发射光谱以及基因表达的增加,强烈表明黄素是导致AF增加的主要因素。编码各种黄素蛋白的基因表达增加,这些蛋白参与能量产生和ROS解毒,这表明应对严重压力的细胞策略。在压力下观察到的AF增加是一种进化保守的现象,因为它不仅发生在来自不同细菌物种的细胞中,而且还发生在酵母和人细胞中。

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