Homologous pairs of regulatory proteins control activity of Bacillus subtilis transcription factor sigma(b) in response to environmental stress
- 1 July 1996
- journal article
- research article
- Published by American Society for Microbiology in Journal of Bacteriology
- Vol. 178 (13) , 3846-3853
- https://doi.org/10.1128/jb.178.13.3846-3853.1996
Abstract
In Bacillus subtilis, activity of the general stress transcription factor sigma B is controlled posttranslationally by a regulatory network that transmits signals of environmental and metabolic stress. These signals include heat, ethanol, or osmotic challenge, or a sharp decrease in cellular energy levels, and all ultimately control sigma B activity by influencing the binding decision of the RsbW anti-sigma factor. In the absence of stress, RsbW binds to sigma B and prevents its association with RNA polymerase core enzyme. However, following stress, RsbW binds instead to the RsbV anti-anti-sigma factor, thereby releasing sigma B to direct transcription of its target genes. These two principal regulators of sigmaB activity are encoded in the eight-gene sigB operon, which has the gene order rsbR-rsbS-rsbT-rsbU-rsbV-rsbW-sig B-rsbX (where rsb stands for regulator of sigma B). Notably, the predicted rsbS product has significant amino acid identity to the RsbV anti-anti-sigma factor and the predicted rsbT product resembles the RsbW anti-sigma factor. To determine the roles of rsbS and rsbT, null or missense mutations were constructed in the chromosomal copies or each and tested for their effects on expression of a sigma B-dependent reporter fusion. On the basis of this genetic analysis, our principal conclusions are that (i) the rsbS product is a negative regulator of or" activity, (ii) the rsbT product is a positive regulator, (iii) RsbS requires RsbT for function, and (iv) the RsbS-RsbT and RsbV-RsbW pairs act hierarchically by a common mechanism in which key protein-protein interactions are controlled by phosphorylation events.This publication has 36 references indexed in Scilit:
- CLUSTAL: a package for performing multiple sequence alignment on a microcomputerPublished by Elsevier ,2003
- Establishing differential gene expression in sporulating Bacillus subtilis: phosphorylation of SpoIIAA (anti‐anti‐σF) alters its conformation and prevents formation of a SpoIIAA/SpoIIAB/ADP complexMolecular Microbiology, 1996
- Activation of Cell-Specific Transcription by a Serine Phosphatase at the Site of Asymmetric DivisionScience, 1995
- Role of interactions between SpoIIAA and SpoIIAB in regulating cell-specific transcription factor σF of Bacillus subtilisGenes & Development, 1994
- Analysis of the induction of general stress proteins of Bacillus subtilisMicrobiology, 1994
- Multisensory activation of the phosphorelay initiating sporulation in Bacillus subtilis: identification and sequence of the protein kinase of the alternate pathwayMolecular Microbiology, 1993
- The minCD locus of Bacillus subtilis lacks the minE determinant that provides topological specificity to cell divisionMolecular Microbiology, 1993
- Site-directed mutagenesis by overlap extension using the polymerase chain reactionGene, 1989
- Close contacts between σ37-RNA polymerase and a Bacillus subtilis chromosomal promoterJournal of Molecular Biology, 1982
- Fate of transforming DNA following uptake by competent Bacillus subtilisJournal of Molecular Biology, 1971