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Enterococcal Surface Protein, Esp, Enhances Biofilm Formation by Enterococcus faecalis

Tendolkar PM, Bagdayan AS, Gilmore MS +1 more2004Infection and ImmunityJournal Article
10.1128/iai.72.10.6032-6039.2004PubMedFree full text
Gastrointestinal

Abstract

ABSTRACT Enterococci play a dual role in human ecology. They serve as commensal organisms of the gastrointestinal tract and are also leading causes of multiple antibiotic-resistant hospital-acquired infection. Many nosocomial infections result from the ability of microorganisms to form biofilms. The molecular mechanisms involved in enterococcal biofilm formation are only now beginning to be understood. Enterococcal surface protein, Esp, has been reported to contribute to biofilm formation by Enterococcus faecalis . Recent studies have shown that enterococci form biofilms independently of Esp expression. To precisely determine what role Esp plays in E. faecalis biofilm formation, Esp was expressed on the cell surface of genetically well-defined, natively Esp-deficient strains, and isogenic Esp-positive and Esp-deficient strains were compared for their biofilm-forming ability. The results show that Esp expression leads to a significant increase in biofilm formation, irrespective of the strain tested. The contribution of Esp to biofilm formation was found to be most pronounced in the presence of 0.5% (wt/vol) or greater glucose. These results unambiguously define Esp as a key contributor to the ability of E. faecalis to form biofilms.

Cited By (1)

  • Vancomycin-Resistant Enterococcus faecium : Catheter Colonization, esp Gene, and Decreased Susceptibility to Antibiotics in BiofilmAntimicrobial Agents and Chemotherapy · 2005

References (4)

  • Esp-Independent Biofilm Formation by Enterococcus faecalisJournal of Bacteriology · 2004
  • Control of Glucose- and NaCl-Induced Biofilm Formation by rbf in Staphylococcus aureusJournal of Bacteriology · 2004
  • Riddle of biofilm resistanceAntimicrobial Agents and Chemotherapy · 2001
  • Growth, development and gene expression in a persistent Streptococcus gordonii biofilm.Inf Immun · 2003

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