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Display of green fluorescent protein on Escherichia coli cell surface

机译:在大肠杆菌细胞表面展示绿色荧光蛋白

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In this study, expression of green fluorescence protein (GFP) on the external surface of Escherichia coli was achieved by construction of a fusion protein between Lpp-OmpA hybrid and a GFP variant, GFPmut2. The GFPwas fused in frame to the carboxyl-terminus of Lpp-OmpA fusion previously shown to direct various other heterologous proteins to E. coli cell surface. Western blot analysis of membrane fractions identified the Lpp-OmpA-GFP fusion protein with the expected size (43 kDa). Immunofluorescence microscopy, immunoelectron microscopy, protease and extracellular pH sensitivity assays further confirmed that GFP is anchored on the outer membrane. The GFP displayed on the E. coli outer surface retained its fluoresence and was not susceptible to the indigenous outer membrane protease OmpT even though there are two putative OmpT proteolytic sites present in GFP. Optimization of the expression conditions was conducted using fluorometry, eliminating cumbersome immuno-labeling procedures. Surface-displayed GFP could be used in a variety of applications including screening of polyepetide libraries, development of live vaccines, construction of whole cell allosteric biosensors, and signal transduction studies.
机译:在这项研究中,通过在Lpp-OmpA杂种与GFP变体GFPmut2之间构建融合蛋白来实现绿色荧光蛋白(GFP)在大肠杆菌外表面的表达。 GFP在框内融合到Lpp-OmpA融合的羧基末端,先前显示可将各种其他异源蛋白质导入大肠杆菌细胞表面。膜部分的蛋白质印迹分析确定了Lpp-OmpA-GFP融合蛋白具有预期的大小(43 kDa)。免疫荧光显微镜,免疫电子显微镜,蛋白酶和细胞外pH敏感性测定进一步证实GFP锚定在外膜上。即使在GFP中存在两个推定的OmpT蛋白水解位点,在大肠杆菌外表面上展示的GFP仍保持其荧光性,并且不易受本地外膜蛋白酶OmpT的影响。使用荧光法进行表达条件的优化,消除了繁琐的免疫标记程序。表面展示的GFP可以用于多种应用,包括筛选多肽肽,开发活疫苗,构建全细胞变构生物传感器以及信号转导研究。

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