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A master regulator for biofilm formation by <i>Bacillus subtilis</i>

Molecular Microbiology · 2004 · Vol. 55(3) · pp. 739–749
Daniel B. KearnsFrances ChuSteven S. BrandaRoberto KolterRichard Losick

Abstract

Wild strains of Bacillus subtilis are capable of forming architecturally complex communities of cells known as biofilms. Critical to biofilm formation is the eps operon, which is believed to be responsible for the biosynthesis of an exopolysaccharide that binds chains of cells together in bundles. We report that transcription of eps is under the negative regulation of SinR, a repressor that was found to bind to multiple sites in the regulatory region of the operon. Mutations in sinR bypassed the requirement in biofilm formation of two genes of unknown function, ylbF and ymcA, and sinI, which is known to encode an antagonist of SinR. We propose that these genes are members of a pathway that is responsible for counteracting SinR-mediated repression. We further propose that SinR is a master regulator that governs the transition between a planktonic state in which the bacteria swim as single cells in liquid or swarm in small groups over surfaces, and a sessile state in which the bacteria adhere to each other to form bundled chains and assemble into multicellular communities.

Bacterial biofilms and quorum sensingBacterial Genetics and BiotechnologyBacteriophages and microbial interactionsOperonBiofilmBiologyBacillus subtilisRepressorPsychological repressionRegulatorBacteriaGeneTranscription (linguistics)

MeSH terms

Amino Acid SequenceBacillus subtilisBacterial ProteinsBase SequenceMolecular Sequence DataMutationOperonPolysaccharides, BacterialGene Expression Regulation, BacterialBiofilms

Funding

  • Charles A. King Trust
  • National Institutes of Health
Citations
605
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96%
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References
Slipped-strand mispairing: a major mechanism for DNA sequence evolution.
Molecular Biology and Evolution · 1987 · 2,284 citations
Swarming motility in undomesticated <i>Bacillus subtilis</i>
Molecular Microbiology · 2003 · 547 citations
Bacterial biofilms: from the Natural environment to infectious diseases
Nature Reviews Microbiology · 2004 · 6,971 citations
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