Biofilm Formation byStreptococcus pneumoniae: Role of Choline, Extracellular DNA, and Capsular Polysaccharide in Microbial Accretion
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- 15 November 2006
- journal article
- Published by American Society for Microbiology in Journal of Bacteriology
- Vol. 188 (22) , 7785-7795
- https://doi.org/10.1128/jb.00673-06
Abstract
Streptococcus pneumoniae colonizes the human upper respiratory tract, and this asymptomatic colonization is known to precede pneumococcal disease. In this report, chemically defined and semisynthetic media were used to identify the initial steps of biofilm formation by pneumococcus during growth on abiotic surfaces such as polystyrene or glass. Unencapsulated pneumococci adhered to abiotic surfaces and formed a three-dimensional structure about 25 microm deep, as observed by confocal laser scanning microscopy and low-temperature scanning electron microscopy. Choline residues of cell wall teichoic acids were found to play a fundamental role in pneumococcal biofilm development. The role in biofilm formation of choline-binding proteins, which anchor to the teichoic acids of the cell envelope, was determined using unambiguously characterized mutants. The results showed that LytA amidase, LytC lysozyme, LytB glucosaminidase, CbpA adhesin, PcpA putative adhesin, and PspA (pneumococcal surface protein A) mutants had a decreased capacity to form biofilms, whereas no such reduction was observed in Pce phosphocholinesterase or CbpD putative amidase mutants. Moreover, encapsulated, clinical pneumococcal isolates were impaired in their capacity to form biofilms. In addition, a role for extracellular DNA and proteins in the establishment of S. pneumoniae biofilms was demonstrated. Taken together, these observations provide information on conditions that favor the sessile mode of growth by S. pneumoniae. The experimental approach described here should facilitate the study of bacterial genes that are required for biofilm formation. Those results, in turn, may provide insight into strategies to prevent pneumococcal colonization of its human host.Keywords
This publication has 89 references indexed in Scilit:
- Allelic Variation of Polymorphic Locus lytB , Encoding a Choline-Binding Protein, from Streptococci of the Mitis GroupApplied and Environmental Microbiology, 2005
- Choline-Binding Protein D (CbpD) inStreptococcus pneumoniaeIs Essential for Competence-Induced Cell LysisJournal of Bacteriology, 2005
- Analysis of the Genetic Structure of Nontypeable Pneumococcal Strains Isolated from ConjunctivaJournal of Clinical Microbiology, 2005
- Surfacing views of biofilm biologyTrends in Microbiology, 2005
- Quorum sensing in streptococcal biofilm formationTrends in Microbiology, 2005
- Recent trends on the molecular biology of pneumococcal capsules, lytic enzymes, and bacteriophageFEMS Microbiology Reviews, 2004
- Streptococcus pneumoniae colonisation: the key to pneumococcal diseaseThe Lancet Infectious Diseases, 2004
- Extracellular-peptide control of competence for genetic transformation in Streptococcus PneumoniaeFrontiers in Bioscience-Landmark, 2002
- Annotated Draft Genomic Sequence from aStreptococcus pneumoniaeType 19F Clinical IsolateMicrobial Drug Resistance, 2001
- Molecular basis of the optochin‐sensitive phenotype of pneumococcus: characterization of the genes encoding the F0 complex of the Streptococcus pneumoniaeStreptococcus oralis H+‐ATPasesMolecular Microbiology, 1994