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A double, long polar fimbria mutant of Escherichia coli O157:H7 expresses Curli and exhibits reduced in vivo colonization.

机译:大肠杆菌O157:H7的双长极性菌毛突变体表达Curli,并在体内定植减少。

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摘要

Escherichia coli O157:H7 causes food and waterborne enteric infections that can result in hemorrhagic colitis and life-threatening hemolytic uremic syndrome. Intimate adherence of the bacteria to intestinal epithelial cells is mediated by intimin, but E. coli O157:H7 also possess several other putative adhesins, including curli and two operons that encode long polar fimbriae (Lpf). To assess the importance of Lpf for intestinal colonization, we performed competition experiments between E. coli O157:H7 and an isogenic ΔlpfA1 ΔlpfA2 double mutant in the infant rabbit model. The mutant was outcompeted in the ileum, cecum, and midcolon, suggesting that Lpf contributes to intestinal colonization. In contrast, the ΔlpfA1 ΔlpfA2 mutant showed increased adherence to colonic epithelial cells in vitro. Transmission electron microscopy revealed curli-like structures on the surface of the ΔlpfA1 ΔlpfA2 mutant, and the presence of curli was confirmed by Congo red binding, immunogold-labeling electron microscopy, immunoblotting, and quantitative real-time reverse transcription-PCR (qRT-PCR) measuring csgA expression. However, deletion of csgA, which encodes the major curli subunit, does not appear to affect intestinal colonization. In addition to suggesting that Lpf can contribute to EHEC intestinal colonization, our observations indicate that the regulatory pathways governing the expression of Lpf and curli are interdependent.
机译:大肠杆菌O157:H7引起食物和水源性肠道感染,可导致出血性结肠炎和危及生命的溶血性​​尿毒症综合征。细菌与肠上皮细胞的紧密粘附是由内膜素介导的,但是大肠杆菌O157:H7还拥有其他几种假定的粘附素,包括curli和两个编码长极性菌毛(Lpf)的操纵子。为了评估Lpf对肠道菌落的重要性,我们在婴儿兔模型中进行了大肠杆菌O157:H7与同基因ΔlpfA1ΔlpfA2双突变体之间的竞争实验。该突变体在回肠,盲肠和中隔中竞争激烈,表明LPF有助于肠道定植。相反,在体外,ΔlpfA1ΔlpfA2突变体显示出对结肠上皮细胞的粘附增加。透射电子显微镜显示ΔlpfA1ΔlpfA2突变体表面上有卷曲样结构,并且刚果红色结合,免疫金标记电子显微镜,免疫印迹和定量实时逆转录PCR(qRT-PCR)证实了卷曲样的存在。 )测量csgA表达。但是,删除编码主要curli亚基的csgA,似乎不影响肠道定植。除了表明Lpf可以促进EHEC肠道定植外,我们的观察结果还表明,控制Lpf和curli表达的调控途径是相互依赖的。

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