Bacillus subtilisfunctional genomics: global characterization of the stringent response by proteome and transcriptome analysis
- 1 May 2002
- journal article
- research article
- Published by American Society for Microbiology in Journal of Bacteriology
- Vol. 184 (9) , 2500-2520
- https://doi.org/10.1128/jb.184.9.2500-2520.2002
Abstract
The stringent response in Bacillus subtilis was characterized by using proteome and transcriptome approaches. Comparison of protein synthesis patterns of wild-type and relA mutant cells cultivated under conditions which provoke the stringent response revealed significant differences. According to their altered synthesis patterns in response to dl-norvaline, proteins were assigned to four distinct classes: (i) negative stringent control, i.e., strongly decreased protein synthesis in the wild type but not in the relA mutant (e.g., r-proteins); (ii) positive stringent control, i.e., induction of protein synthesis in the wild type only (e.g., YvyD and LeuD); (iii) proteins that were induced independently of RelA (e.g., YjcI); and (iv) proteins downregulated independently of RelA (e.g., glycolytic enzymes). Transcriptome studies based on DNA macroarray techniques were used to complement the proteome data, resulting in comparable induction and repression patterns of almost all corresponding genes. However, a comparison of both approaches revealed that only a subset of RelA-dependent genes or proteins was detectable by proteomics, demonstrating that the transcriptome approach allows a more comprehensive global gene expression profile analysis. The present study presents the first comprehensive description of the stringent response of a bacterial species and an almost complete map of protein-encoding genes affected by (p)ppGpp. The negative stringent control concerns reactions typical of growth and reproduction (ribosome synthesis, DNA synthesis, cell wall synthesis, etc.). Negatively controlled unknown y-genes may also code for proteins with a specific function during growth and reproduction (e.g., YlaG). On the other hand, many genes are induced in a RelA-dependent manner, including genes coding for already-known and as-yet-unknown proteins. A passive model is preferred to explain this positive control relying on the redistribution of the RNA polymerase under the influence of (p)ppGpp.Keywords
This publication has 105 references indexed in Scilit:
- Control of a Family of Phosphatase Regulatory Genes ( phr ) by the Alternate Sigma Factor Sigma-H of Bacillus subtilisJournal of Bacteriology, 2001
- Involvement of Stringent Factor RelA in Expression of the Alkaline Protease Gene aprE in Bacillus subtilisJournal of Bacteriology, 2001
- Combined, Functional Genomic-Biochemical Approach to Intermediary Metabolism: Interaction of Acivicin, a Glutamine Amidotransferase Inhibitor, with Escherichia coli K-12Journal of Bacteriology, 2001
- The stringent response, σH-dependent gene expression and sporulation in Bacillus subtilisMolecular Genetics and Genomics, 2001
- Mechanism of regulation of transcription initiation by ppGpp. II. Models for positive control based on properties of RNAP mutants and competition for RNAPJournal of Molecular Biology, 2001
- Mechanism of regulation of transcription initiation by ppGpp. I. Effects of ppGpp on transcription initiation in vivo and in vitroJournal of Molecular Biology, 2001
- RNA polymerase mutants that destabilize RNA Polymerase-Promoter complexes alter NTP-sensing by rrn P1 promotersJournal of Molecular Biology, 1998
- Expression of the Bacillus subtilis gabP gene is regulated independently in response to nitrogen and amino acid availabilityMolecular Microbiology, 1996
- Genetic and transcriptional organization of the Bacillus subtilis spc-α regionGene, 1996
- Isolation and characterization of an RNA relaxed mutant of B. subtilisBiochemical and Biophysical Research Communications, 1972