Super-shed (SS) Escherichia coli O157 (E. coli O157) demonstrate a strong, aggregative, locus of enterocyte effacement (LEE)-independent adherence phenotype on bovine recto-anal junction squamous epithelial (RSE) cells, and harbor polymorphisms in non-LEE-adherence-related loci, including in the type 1 fimbriae operon. To elucidate the role of type 1 fimbriae in strain- and host-specific adherence, we evaluated the entire Fim operon (FimB-H) and its adhesion (FimH) deletion mutants in four E. coli O157 strains, SS17, SS52, SS77 and EDL933, and evaluated the adherence phenotype in bovine RSE and human HEp-2 adherence assays. Consistent with the prevailing dogma that fimH expression is genetically switched off in E. coli O157, the ÎfimHSS52, ÎfimB-HSS52, ÎfimB-HSS17, and ÎfimHSS77 mutants remained unchanged in adherence phenotype to RSE cells. In contrast, the ÎfimHSS17 and ÎfimB-HSS77 mutants changed from a wild-type strong and aggregative, to a moderate and diffuse adherence phenotype, while both ÎfimHEDL933 and ÎfimB-HEDL933 mutants demonstrated enhanced binding to RSE cells (p < 0.05). Additionally, both ÎfimHSS17 and ÎfimHEDL933 were non-adherent to HEp-2 cells (p < 0.05). Complementation of the mutant strains with their respective wild-type genes restored parental phenotypes. Microscopy revealed that the SS17 and EDL933 strains indeed carry type 1 fimbriae-like structures shorter than those seen in uropathogenic E. coli. Taken together, these results provide compelling evidence for a strain and host cell type-dependent role of fimH and the fim operon in E. coli O157 adherence that needs to be further evaluated.
Strain and host-cell dependent role of type-1 fimbriae in the adherence phenotype of super-shed Escherichia coli O157:H7.
1 型菌毛在超脱落大肠杆菌 O157:H7 粘附表型中菌株和宿主细胞依赖性作用
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作者:Katani Robab, Kudva Indira T, Srinivasan Sreenidhi, Stasko Judith B, Schilling Megan, Li Lingling, Cote Rebecca, DebRoy Chitrita, Arthur Terrance M, Sokurenko Evgeni V, Kapur Vivek
| 期刊: | International Journal of Medical Microbiology | 影响因子: | 3.600 |
| 时间: | 2021 | 起止号: | 2021 May;311(4):151511 |
| doi: | 10.1016/j.ijmm.2021.151511 | 研究方向: | 细胞生物学 |
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