Literature DB >> 15090514

The pgaABCD locus of Escherichia coli promotes the synthesis of a polysaccharide adhesin required for biofilm formation.

Xin Wang1, James F Preston, Tony Romeo.   

Abstract

Production of a polysaccharide matrix is a hallmark of bacterial biofilms, but the composition of matrix polysaccharides and their functions are not widely understood. Previous studies of the regulation of Escherichia coli biofilm formation suggested the involvement of an unknown adhesin. We now establish that the pgaABCD (formerly ycdSRQP) locus affects biofilm development by promoting abiotic surface binding and intercellular adhesion. All of the pga genes are required for optimal biofilm formation under a variety of growth conditions. A pga-dependent cell-bound polysaccharide was isolated and determined by nuclear magnetic resonance analyses to consist of unbranched beta-1,6-N-acetyl-D-glucosamine, a polymer previously unknown from the gram-negative bacteria but involved in adhesion by staphylococci. The pga genes are predicted to encode envelope proteins involved in synthesis, translocation, and possibly surface docking of this polysaccharide. As predicted, if poly-beta-1,6-GlcNAc (PGA) mediates cohesion, metaperiodate caused biofilm dispersal and the release of intact cells, whereas treatment with protease or other lytic enzymes had no effect. The pgaABCD operon exhibits features of a horizontally transferred locus and is present in a variety of eubacteria. Therefore, we propose that PGA serves as an adhesin that stabilizes biofilms of E. coli and other bacteria.

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Year:  2004        PMID: 15090514      PMCID: PMC387819          DOI: 10.1128/JB.186.9.2724-2734.2004

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


  65 in total

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6.  One-step inactivation of chromosomal genes in Escherichia coli K-12 using PCR products.

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Review 8.  Multidomain architecture of beta-glycosyl transferases: implications for mechanism of action.

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9.  Exopolysaccharide production is required for development of Escherichia coli K-12 biofilm architecture.

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10.  Global regulatory mutations in csrA and rpoS cause severe central carbon stress in Escherichia coli in the presence of acetate.

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Review 3.  Adhesins Involved in Attachment to Abiotic Surfaces by Gram-Negative Bacteria.

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4.  A CsgD-independent pathway for cellulose production and biofilm formation in Escherichia coli.

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5.  Campylobacter jejuni biofilms up-regulated in the absence of the stringent response utilize a calcofluor white-reactive polysaccharide.

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7.  Immunization with outer membrane vesicles displaying conserved surface polysaccharide antigen elicits broadly antimicrobial antibodies.

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8.  The Bordetella pertussis Bps polysaccharide enhances lung colonization by conferring protection from complement-mediated killing.

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9.  Molecular basis for preferential protective efficacy of antibodies directed to the poorly acetylated form of staphylococcal poly-N-acetyl-beta-(1-6)-glucosamine.

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