Department of Molecular Infectiology, Graduate School of Medicine, Chiba University, 1-8-1 Inohana, Chiba, 260-8670, Japan.
Gene. 2011 Jun 1;478(1-2):1-10. doi: 10.1016/j.gene.2011.01.006. Epub 2011 Jan 22.
A novel chromosome-plasmid hybrid bioluminescent reporter system (C-P reporter system) utilizing Photorhabdus luminescens luxCDABE genes has been constructed to monitor the expression of Shiga toxin 1 (Stx1) and Shiga toxin 2 (Stx2) in enterohemorrhagic Escherichia coli (EHEC) in real time. The luxCDABE genes of P. luminescens have been cloned and divided into a luxCDAB cassette and a luxE gene. A promoter-less luxE gene introduced downstream from stx1 and from stx2 on EHEC chromosomes in single copies, and other luxCDAB genes were expressed on a multicopy number expression plasmid into the same cells. These Stx1- and Stx2-bioluminescent reporter strains expressed bioluminescence into bacteria cells when the expression of the promoter-less luxE gene was expressed in response to the promoter activity of stx1 and stx2, respectively. The expression levels of bioluminescence were identical to the production levels of Stx1 and Stx2 in the Stx1- and Stx2-bioluminescent reporter strains, and these strains produced both Stxs at the same respective levels as those of the parent EHEC strains. Using these reporter strains, we examined the profiles of Stx1 and Stx2 expression in EHEC. We found that production of both Stx1 and Stx2 in EHEC was enhanced upon contact with intestinal epithelial cells and within macrophages. However, the expression profiles between Stx1 and Stx2 in EHEC were different from each other under these conditions. Thus, these results suggested that this C-P reporter system is useful for determining the gene expression profile of bacteria.
一种新型的染色体-质粒杂交生物发光报告系统(C-P 报告系统),利用 Photorhabdus luminescens luxCDABE 基因,已被构建用于实时监测肠出血性大肠杆菌(EHEC)中志贺毒素 1(Stx1)和志贺毒素 2(Stx2)的表达。将 P. luminescens 的 luxCDABE 基因进行克隆并分为 luxCDAB 盒和 luxE 基因。在 EHEC 染色体上,单个拷贝的 luxE 基因无启动子,位于 stx1 和 stx2 下游,其他 luxCDAB 基因在一个多拷贝数表达质粒上表达,进入相同的细胞。当无启动子 luxE 基因的表达响应 stx1 和 stx2 的启动子活性时,这些 Stx1 和 Stx2 生物发光报告株将生物发光表达到细菌细胞中。生物发光的表达水平与 Stx1 和 Stx2 生物发光报告株中 Stx1 和 Stx2 的产生水平相同,并且这些菌株产生的两种 Stx 的水平与亲本 EHEC 菌株相同。使用这些报告株,我们研究了 EHEC 中 Stx1 和 Stx2 表达的特征。我们发现,当与肠上皮细胞接触和巨噬细胞内时,EHEC 中两种 Stx1 和 Stx2 的产生均增强。然而,在这些条件下,EHEC 中 Stx1 和 Stx2 之间的表达谱彼此不同。因此,这些结果表明,这种 C-P 报告系统可用于确定细菌的基因表达谱。