DegU-P represses expression of the motility fla-che operon in Bacillus subtilis

J Bacteriol. 2004 Sep;186(18):6003-14. doi: 10.1128/JB.186.18.6003-6014.2004.

Abstract

Bacillus subtilis implements several adaptive strategies to cope with nutrient limitation experienced at the end of exponential growth. The DegS-DegU two-component system is part of the network involved in the regulation of postexponential responses, such as competence development, the production of exoenzymes, and motility. The degU32(Hy) mutation extends the half-life of the phosphorylated form of DegU (DegU-P); this in turn increases the production of alkaline protease, levan-sucrase, and other exoenzymes and inhibits motility and the production of flagella. The expression of the flagellum-specific sigma factor SigD, of the flagellin gene hag, and of the fla-che operon is strongly reduced in a degU32(Hy) genetic background. To investigate the mechanism of action of DegU-P on motility, we isolated mutants of degU32(Hy) that completely suppressed the motility deficiency. The mutations were genetically mapped and characterized by PCR and sequencing. Most of the mutations were found to delete a transcriptional termination signal upstream of the main flagellar operon, fla-che, thus allowing transcriptional readthrough from the cod operon. Two additional mutations improved the sigmaA-dependent promoter sequence of the fla-che operon. Using an electrophoretic mobility shift assay, we have demonstrated that purified DegU binds specifically to the PA promoter region of the fla-che operon. The data suggest that DegU represses transcription of the fla-che operon, and they indicate a central role of the operon in regulating the synthesis and assembly of flagella.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Adaptation, Physiological / genetics*
  • Artificial Gene Fusion
  • Bacillus subtilis / genetics
  • Bacillus subtilis / physiology*
  • Bacterial Proteins / metabolism*
  • Chemotaxis / genetics
  • DNA Mutational Analysis
  • DNA-Binding Proteins / genetics
  • DNA-Binding Proteins / physiology
  • Flagella / genetics
  • Flagella / metabolism
  • Gene Expression Regulation, Bacterial*
  • Genes, Bacterial
  • Genes, Reporter
  • Movement
  • Mutation
  • Operon*
  • Phosphorylation
  • Promoter Regions, Genetic
  • Repressor Proteins / genetics
  • Repressor Proteins / physiology
  • Sigma Factor / metabolism
  • Signal Transduction / genetics
  • Transcription, Genetic
  • beta-Galactosidase / genetics
  • beta-Galactosidase / metabolism

Substances

  • Bacterial Proteins
  • DNA-Binding Proteins
  • DegU protein, Bacteria
  • Repressor Proteins
  • Sigma Factor
  • beta-Galactosidase