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A major protein component of the <i>Bacillus subtilis</i> biofilm matrix

Molecular Microbiology · 2005 · Vol. 59(4) · pp. 1229–1238
Steven S. BrandaFrances ChuDaniel B. KearnsRichard LosickRoberto Kolter

Abstract

Microbes construct structurally complex multicellular communities (biofilms) through production of an extracellular matrix. Here we present evidence from scanning electron microscopy showing that a wild strain of the Gram positive bacterium Bacillus subtilis builds such a matrix. Genetic, biochemical and cytological evidence indicates that the matrix is composed predominantly of a protein component, TasA, and an exopolysaccharide component. The absence of TasA or the exopolysaccharide resulted in a residual matrix, while the absence of both components led to complete failure to form complex multicellular communities. Extracellular complementation experiments revealed that a functional matrix can be assembled even when TasA and the exopolysaccharide are produced by different cells, reinforcing the view that the components contribute to matrix formation in an extracellular manner. Having defined the major components of the biofilm matrix and the control of their synthesis by the global regulator SinR, we present a working model for how B. subtilis switches between nomadic and sedentary lifestyles.

Bacterial biofilms and quorum sensingBacterial Genetics and BiotechnologyBacteriophages and microbial interactionsBacillus subtilisBiofilmBiologyMulticellular organismExtracellular matrixMatrix (chemical analysis)BacteriaViral matrix proteinStrain (injury)Cell biology

MeSH terms

Bacillus subtilisBacterial ProteinsGenetic Complementation TestMutationOperonPolyglutamic AcidPolysaccharides, BacterialBiofilms

Funding

  • Charles A. King Trust
  • National Institutes of Health
Citations
704
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