Literature DB >> 19218393

The Escherichia coli common pilus and the bundle-forming pilus act in concert during the formation of localized adherence by enteropathogenic E. coli.

Zeus Saldaña1, Aysen L Erdem, Stephanie Schüller, Iruka N Okeke, Mark Lucas, Arunon Sivananthan, Alan D Phillips, James B Kaper, José L Puente, Jorge A Girón.   

Abstract

Although the bundle-forming pilus (BFP) of enteropathogenic Escherichia coli (EPEC) mediates microcolony formation on epithelial cells, the adherence of BFP-deficient mutants is significantly abrogated, but the mutants are still adherent due to the presence of intimin and possibly other adhesins. In this study we investigated the contribution of the recently described E. coli common pilus (ECP) to the overall adherence properties of EPEC. We found that ECP and BFP structures can be simultaneously observed in the course (between zero time and 7 h during infection) of formation of localized adherence on cultured epithelial cells. These two pilus types colocalized at different levels of the microcolony topology, tethering the adhering bacteria. No evidence of BFP disappearance was found after prolonged infection. When expressed from a plasmid present in nonadherent E. coli HB101, ECP rendered this organism highly adherent at levels comparable to those of HB101 expressing the BFP. Purified ECP bound in a dose-dependent manner to epithelial cells, and the binding was blocked with anti-ECP antibodies, confirming that the pili possess adhesin properties. An ECP mutant showed only a modest reduction in adherence to cultured cells due to background expression levels of BFP and intimin. However, isogenic mutants not expressing EspA or BFP were significantly less adherent when the ecpA gene was also deleted. Furthermore, a DeltaespA DeltaecpA double mutant (unable to translocate Tir and to establish intimate adhesion) was at least 10-fold less adherent than the DeltaespA and DeltaecpA single mutants, even in the presence of BFP. A Delta bfp DeltaespA DeltaecpA triple mutant showed the least adherence compared to the wild type and all the isogenic mutant strains tested, suggesting that ECP plays a synergistic role in adherence. Our data indicate that ECP is an accessory factor that, in association with BFP and other adhesins, contributes to the multifactorial complex interaction of EPEC with host epithelial cells.

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Year:  2009        PMID: 19218393      PMCID: PMC2681888          DOI: 10.1128/JB.01539-08

Source DB:  PubMed          Journal:  J Bacteriol        ISSN: 0021-9193            Impact factor:   3.490


  41 in total

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  39 in total

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Authors:  James A Garnett; Verónica I Martínez-Santos; Zeus Saldaña; Tillmann Pape; William Hawthorne; Jennifer Chan; Peter J Simpson; Ernesto Cota; José L Puente; Jorge A Girón; Steve Matthews
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2.  EHEC Adhesins.

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Authors:  Carolin F Manthey; Christine B Calabio; Anna Wosinski; Elaine M Hanson; Bruce A Vallance; Alex Groisman; Martín G Martín; Jean Y J Wang; Lars Eckmann
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4.  N-acetyllactosamine-induced retraction of bundle-forming pili regulates virulence-associated gene expression in enteropathogenic Escherichia coli.

Authors:  Romney M Humphries; Thomas P Griener; Stefanie L Vogt; George L Mulvey; Tracy Raivio; Michael S Donnenberg; Pavel I Kitov; Michael Surette; Glen D Armstrong
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Review 6.  Recent advances in understanding enteric pathogenic Escherichia coli.

Authors:  Matthew A Croxen; Robyn J Law; Roland Scholz; Kristie M Keeney; Marta Wlodarska; B Brett Finlay
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Review 7.  Molecular mechanisms of Escherichia coli pathogenicity.

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10.  Adherence factors in atypical enteropathogenic Escherichia coli strains expressing the localized adherence-like pattern in HEp-2 cells.

Authors:  Isabel C A Scaletsky; Katia R S Aranda; Tamara B Souza; Neusa P Silva
Journal:  J Clin Microbiol       Date:  2009-10-28       Impact factor: 5.948

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