New Family of Regulators in the Environmental Signaling Pathway Which Activates the General Stress Transcription Factor ς B of Bacillus subtilis
- 15 February 2001
- journal article
- research article
- Published by American Society for Microbiology in Journal of Bacteriology
- Vol. 183 (4) , 1329-1338
- https://doi.org/10.1128/jb.183.4.1329-1338.2001
Abstract
Expression of the general stress regulon of Bacillus subtilis is controlled by the alternative transcription factor ς B , which is activated when cells encounter growth-limiting energy or environmental stresses. The RsbT serine-threonine kinase is required to convey environmental stress signals to ς B , and this kinase activity is magnified in vitro by the RsbR protein, a positive regulator important for full in vivo response to salt or heat stress. Previous genetic analysis suggested that RsbR function is redundant with other unidentified regulators. A search of the translated B. subtilis genome found six paralogous proteins with significant similarity to RsbR: YetI, YezB, YkoB, YojH, YqhA, and YtvA. Their possible regulatory roles were investigated using three different approaches. First, genetic analysis found that null mutations in four of the six paralogous genes have marked effects on the ς B environmental signaling pathway, either singly or in combination. The two exceptions were yetI and yezB , adjacent genes which appear to encode a split paralog. Second, biochemical analysis found that YkoB, YojH, and YqhA are specifically phosphorylated in vitro by the RsbT environmental signaling kinase, as had been previously shown for RsbR, which is phosphorylated on two threonine residues in its C-terminal region. Both residues are conserved in the three phosphorylated paralogs but are absent in the ones that were not substrates of RsbT: YetI and YezB, each of which bears only one of the conserved residues; and YtvA, which lacks both residues and instead possesses an N-terminal PAS domain. Third, analysis in the yeast two-hybrid system suggested that all six paralogs interact with each other and with the RsbR and RsbS environmental regulators. Our data indicate that (i) RsbR, YkoB, YojH, YqhA, and YtvA function in the environmental stress signaling pathway; (ii) YtvA acts as a positive regulator; and (iii) RsbR, YkoB, YojH, and YqhA collectively act as potent negative regulators whose loss increases ς B activity more than 400-fold in unstressed cells.Keywords
This publication has 54 references indexed in Scilit:
- The Bacillus subtilis GTP Binding Protein Obg and Regulators of the ς B Stress Response Transcription Factor Cofractionate with RibosomesJournal of Bacteriology, 2000
- Threonine phosphorylation of modulator protein RsbR governs its ability to regulate a serine kinase in the environmental stress signaling pathway of Bacillus subtilisJournal of Molecular Biology, 1999
- Specific and general stress proteins in Bacillus subtilis a two-dimensional protein electrophoresis studyMicrobiology, 1997
- MOLECULAR GENETICS OF SPORULATION IN BACILLUS SUBTILISAnnual Review of Genetics, 1996
- Opposing pairs of serine protein kinases and phosphatases transmit signals of environmental stress to activate a bacterial transcription factor.Genes & Development, 1996
- SpoIIAA Governs the Release of the Cell-type Specific Transcription Factor σFFrom its Anti-sigma Factor SpoIIABJournal of Molecular Biology, 1996
- Role of Adenosine Nucleotides in the Regulation of a Stress-response Transcription Factor inBacillus subtilisJournal of Molecular Biology, 1996
- Role of interactions between SpoIIAA and SpoIIAB in regulating cell-specific transcription factor σF of Bacillus subtilisGenes & Development, 1994
- σF, the first compartment-specific transcription factor of B. subtilis, is regulated by an anti-σ factor that is also a protein kinaseCell, 1993
- Close contacts between σ37-RNA polymerase and a Bacillus subtilis chromosomal promoterJournal of Molecular Biology, 1982