Elliott S J, Sperandio V, Girón J A, Shin S, Mellies J L, Wainwright L, Hutcheson S W, McDaniel T K, Kaper J B
Center for Vaccine Development and Department of Microbiology and Immunology, University of Maryland School of Medicine, Baltimore, Maryland 21201, USA.
Infect Immun. 2000 Nov;68(11):6115-26. doi: 10.1128/IAI.68.11.6115-6126.2000.
Regulation of virulence gene expression in enteropathogenic Escherichia coli (EPEC) and enterohemorrhagic E. coli (EHEC) is incompletely understood. In EPEC, the plasmid-encoded regulator Per is required for maximal expression of proteins encoded on the locus of enterocyte effacement (LEE), and a LEE-encoded regulator (Ler) is part of the Per-mediated regulatory cascade upregulating the LEE2, LEE3, and LEE4 promoters. We now report that Ler is essential for the expression of multiple LEE-located genes in both EPEC and EHEC, including those encoding the type III secretion pathway, the secreted Esp proteins, Tir, and intimin. Ler is therefore central to the process of attaching and effacing (AE) lesion formation. Ler also regulates the expression of LEE-located genes not required for AE-lesion formation, including rorf2, orf10, rorf10, orf19, and espF, indicating that Ler regulates additional virulence properties. In addition, Ler regulates the expression of proteins encoded outside the LEE that are not essential for AE lesion formation, including TagA in EHEC and EspC in EPEC. delta ler mutants of both EPEC and EHEC show altered adherence to epithelial cells and express novel fimbriae. Ler is therefore a global regulator of virulence gene expression in EPEC and EHEC.
对肠致病性大肠杆菌(EPEC)和肠出血性大肠杆菌(EHEC)中毒力基因表达的调控尚未完全了解。在EPEC中,质粒编码的调节因子Per是肠上皮细胞损伤位点(LEE)上编码蛋白最大表达所必需的,而一个LEE编码的调节因子(Ler)是Per介导的上调LEE2、LEE3和LEE4启动子的调控级联反应的一部分。我们现在报告,Ler对于EPEC和EHEC中多个位于LEE的基因的表达至关重要,这些基因包括编码III型分泌途径、分泌的Esp蛋白、Tir和紧密黏附素的基因。因此,Ler对于黏附和损伤(AE)病变形成过程至关重要。Ler还调节AE病变形成不需要的位于LEE的基因的表达,包括rorf2、orf10、rorf10、orf19和espF,这表明Ler调节其他毒力特性。此外,Ler调节LEE之外编码的对AE病变形成非必需的蛋白的表达,包括EHEC中的TagA和EPEC中的EspC。EPEC和EHEC的Δler突变体对上皮细胞的黏附发生改变并表达新的菌毛。因此,Ler是EPEC和EHEC中毒力基因表达的全局调节因子。