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Green fluorescent protein (GFP)-dependent separation of bacterial ghosts from intact cells by FACS

机译:通过FACS从完整细胞中分离细菌幽灵的绿色荧光蛋白(GFP)依赖性

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Background: E coli and Salmonella ghost preparations, produced by applying the PhiX174 protein E-mediated lysis system, contain nonlysed bacteria at a very low percentage. To use the ghosts as vaccines, additional methods have to be identified to remove any viable cell, to end up in totally inactivated ghost fractions. Materials and Methods: To increase the purity of ghost fractions, we established a green fluorescent protein (GFP)-dependent "in vivo staining" method to be combined with the E-mediated lysis system. Several gfp expression vectors were constructed, and the corresponding cellular fluorescence was analyzed. Bacterial fluorescence, exclusively preserved in nonlysed cells, was utilized to separate these cells from ghost preparations via flow cytometric sorting. Results: High-level production of GFP prior to induction of the lysis system did not affect bacterial growth rates and caused no inhibitory effects on the subsequent protein E-mediated lysis of the cells. The population of reproductive or inactivated but nonlysed cells was highly fluorescent at mean intensities 215-fold higher than ghosts, which exhibited fluorescence at background level. Fluorescent cells could effectively be separated from ghost preparations via, flow cytometric sorting. Cell sorting subsequent to protein E-mediated lysis reduced the number of viable cells within ghost preparations by a factor of 3 x 10(5). Conclusions: The presented procedure is compatible with the protein E-mediated lysis system, is highly effective in separation of nonlysed fluorescent cells, and may serve as a prototype for ghost-purification in applications where only a minimum number of viable cells within ghost preparations can be tolerated. Cytometry 44: 106-112, 2001. (C) 2001 Wiley-Liss, Inc. [References: 34]
机译:背景:通过应用PhiX174蛋白E介导的裂解系统生产的大肠杆菌和沙门氏菌幽灵制剂中含有非常低百分比的未裂解细菌。要将鬼魂用作疫苗,必须确定其他方法以去除任何活细胞,最终导致完全灭活的鬼魂碎片。材料和方法:为了提高鬼影级分的纯度,我们建立了绿色荧光蛋白(GFP)依赖性的“体内染色”方法,与E介导的裂解系统结合使用。构建了几种gfp表达载体,并分析了相应的细胞荧光。专门保留在非裂解细胞中的细菌荧光用于通过流式细胞仪分选从幽灵制剂中分离这些细胞。结果:在诱导裂解系统之前,GFP的大量生产不会影响细菌的生长速率,并且不会对随后的蛋白E介导的细胞裂解产生抑制作用。繁殖或失活但未裂解的细胞群体具有高荧光强度,平均强度比鬼影高215倍,而鬼影在背景水平上表现出荧光。荧光细胞可以通过流式细胞术分类有效地与鬼制剂分离。蛋白E介导的裂解后的细胞分选使幻影制备物中的活细胞数量减少了3 x 10(5)。结论:所提出的程序与蛋白E介导的裂解系统兼容,在非裂解荧光细胞的分离中非常有效,并且可以作为在鬼制剂中仅能存活最少数量活细胞的应用中进行鬼纯化的原型。被容忍。细胞计数44:106-112,2001。(C)2001 Wiley-Liss,Inc。[参考:34]。

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