Literature DB >> 17118984

Growth condition-dependent Esp expression by Enterococcus faecium affects initial adherence and biofilm formation.

Willem J B Van Wamel1, Antoni P A Hendrickx, Marc J M Bonten, Janetta Top, George Posthuma, Rob J L Willems.   

Abstract

A genetic subpopulation of Enterococcus faecium, called clonal complex 17 (CC-17), is strongly associated with hospital outbreaks and invasive infections. Most CC-17 strains contain a putative pathogenicity island encoding the E. faecium variant of enterococcal surface protein (Esp). Western blotting, flow cytometric analyses, and electron microscopy showed that Esp is expressed and exposed on the surface of E. faecium, though Esp expression and surface exposure are highly varied among different strains. Furthermore, Esp expression depends on growth conditions like temperature and anaerobioses. When grown at 37 degrees C, five of six esp-positive E. faecium strains showed significantly increased levels of surface-exposed Esp compared to bacteria grown at 21 degrees C, which was confirmed at the transcriptional level by real-time PCR. In addition, a significant increase in surface-exposed Esp was found in half of these strains when grown at 37 degrees C under anaerobic conditions compared to the level in bacteria grown under aerobic conditions. Finally, amounts of surface-exposed Esp correlated with initial adherence to polystyrene (R(2) = 0.7146) and biofilm formation (R(2) = 0.7535). Polystyrene adherence was competitively inhibited by soluble recombinant N-terminal Esp. This study demonstrates that Esp expression on the surface of E. faecium (i) varies consistently between strains, (ii) is growth condition dependent, and (iii) is quantitatively correlated with initial adherence and biofilm formation. These data indicate that E. faecium senses and responds to changing environmental conditions, which might play a role in the early stages of infection when bacteria transit from oxygen-rich conditions at room temperature to anaerobic conditions at body temperature. In addition, variation of surface exposure may explain the contrasting findings reported on the role of Esp in biofilm formation.

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Year:  2006        PMID: 17118984      PMCID: PMC1828491          DOI: 10.1128/IAI.00941-06

Source DB:  PubMed          Journal:  Infect Immun        ISSN: 0019-9567            Impact factor:   3.441


  43 in total

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Authors:  Nicole J Pultz; Nathan Shankar; Arto S Baghdayan; Curtis J Donskey
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Authors:  Preeti M Tendolkar; Arto S Baghdayan; Nathan Shankar
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Authors:  Christopher J Kristich; Yung-Hua Li; Dennis G Cvitkovitch; Gary M Dunny
Journal:  J Bacteriol       Date:  2004-01       Impact factor: 3.490

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Journal:  J Clin Microbiol       Date:  2003-11       Impact factor: 5.948

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  29 in total

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2.  Five genes encoding surface-exposed LPXTG proteins are enriched in hospital-adapted Enterococcus faecium clonal complex 17 isolates.

Authors:  Antoni P A Hendrickx; Willem J B van Wamel; George Posthuma; Marc J M Bonten; Rob J L Willems
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4.  Enterococcal surface protein Esp is important for biofilm formation of Enterococcus faecium E1162.

Authors:  Esther Heikens; Marc J M Bonten; Rob J L Willems
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5.  Emergence of clonal complex 17 Enterococcus faecium in The Netherlands.

Authors:  Janetta Top; Rob Willems; Saskia van der Velden; Miranda Asbroek; Marc Bonten
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6.  SgrA, a nidogen-binding LPXTG surface adhesin implicated in biofilm formation, and EcbA, a collagen binding MSCRAMM, are two novel adhesins of hospital-acquired Enterococcus faecium.

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9.  Virulence factors genes in enterococci isolated from beavers (Castor fiber).

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10.  Enterococcal surface protein Esp is not essential for cell adhesion and intestinal colonization of Enterococcus faecium in mice.

Authors:  Esther Heikens; Masja Leendertse; Lucas M Wijnands; Miranda van Luit-Asbroek; Marc J M Bonten; Tom van der Poll; Rob J L Willems
Journal:  BMC Microbiol       Date:  2009-01-29       Impact factor: 3.605

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