The phosphate-induced small RNA EsrL promotes E. coli virulence, biofilm formation, and intestinal colonization

Author:

Jia Tianyuan123ORCID,Wu Pan12ORCID,Liu Bin124,Liu Miaomiao12,Mu Huiqian12,Liu Dan12,Huang Min12,Li Linxing12,Wei Yi12,Wang Lu12,Yang Qian12,Liu Yutao124,Yang Bin124,Huang Di1245,Yang Liang3ORCID,Liu Bin1245ORCID

Affiliation:

1. Institute of Translational Medicine Research, Tianjin Union Medical Center, TEDA Institute of Biological Sciences and Biotechnology, Nankai University, Tianjin, China.

2. Key Laboratory of Molecular Microbiology and Technology, Nankai University, Ministry of Education, Tianjin, China.

3. School of Medicine, Southern University of Science and Technology, Shenzhen, China.

4. Center for Microbial Functional Genomics and Detection Technology, Ministry of Education, Tianjin, China.

5. Nankai International Advanced Research Institute, Shenzhen, China.

Abstract

Escherichia coli are part of the normal intestinal microbiome, but some enterohemorrhagic E. coli (EHEC) and enteropathogenic E. coli (EPEC) strains can cause potentially life-threatening gastroenteritis. Virulence factors underlying the ability of EHEC and EPEC to cause disease include those encoded in the locus of the enterocyte effacement (LEE) pathogenicity island. Here, we demonstrated that EsrL, a small RNA present in many E. coli strains, promoted pathogenicity, adhesion, and biofilm formation in EHEC and EPEC. PhoB, the response regulator of the two-component system that controls cellular responses to phosphate, directly repressed esrL expression under low-phosphate conditions. A phosphate-rich environment, similar to that of the human intestine, relieved PhoB-mediated repression of esrL . EsrL interacted with and stabilized the LEE-encoded regulator ( ler ) transcript, which encodes a transcription factor for LEE genes, leading to increased bacterial adhesion to cultured cells and colonization of the rabbit colon. EsrL also bound to and stabilized the fimC transcript, which encodes a chaperone that is required for the assembly of type 1 pili, resulting in enhanced cell adhesion in pathogenic E. coli and enhanced biofilm formation in pathogenic and nonpathogenic E. coli . Our findings demonstrate that EsrL stimulates the expression of virulence genes in both EHEC and EPEC under phosphate-rich conditions, thus promoting the pathogenicity of EHEC and EPEC in the nutrient-rich gut environment.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Cell Biology,Molecular Biology,Biochemistry

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