Requirement of ClpX for CtsR dissociation from its operator elements upon heat stress in Bacillus subtilis
Harms, M.; Kaden, C.; Busch, L. M.; Dhople, V. M.; Gerth, U.; Salazar, M. G.; Michalik, S.; Zhatarova, Z.; Völker, U.; Reder, A.
Show abstract
A sudden increase in temperature triggers Bacillus subtilis to activate expression of stress-specific heat shock proteins of the CtsR (class three stress gene repressor) regulon to withstand the adverse conditions. Key members of this regulon, such as ATPases, proteolytic subunits and their adaptors, which can assemble to the functional Clp protease system, perform crucial roles in maintaining cellular proteostasis, while their transcription is repressed by CtsR during vegetative growth. Upon heat shock, a conformational change in a thermosensing glycine-rich loop causes CtsR to detach from its DNA operators, enabling the transcriptional activation of the regulon. Novel data from a clpX-deficient strain demonstrated that in addition, the presence of the ATPase ClpX is essential for the CtsR dissociation from its DNA binding site. To further elucidate this role of ClpX, we constructed a conditional clpX strain, in which clpX induction is decoupled from its native transcriptional control. This conditional expression system mimicked a clpX-deficient phenotype under non-inducing conditions and restored the wild-type phenotype upon induction. Our results indicate that the full induction of the CtsR regulon, particularly clpE, requires both heat and the presence of ClpX, thereby extending the current model for the transcriptional activation of genes repressed by CtsR.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- The stringent stress response controls proteases and global regulators under optimal growth conditions in Pseudomonas aeruginosa 96%
- Elucidation of regulatory modes for five two-component systems in Escherichia coli reveals novel relationships 96%
- Systems-wide analysis of the GATC-binding nucleoid-associated protein Gbn and its impact on Streptomyces development 96%
Similar papers in this journal
- Fructose Activates A Stress Response Shared By Methylglyoxal And Hydrogen Peroxide In Streptococcus Mutans 95%
- Roles of the EnvZ/OmpR Two-Component System and Porins in Iron Acquisition in Escherichia coli 95%
- Identification of a novel LysR-type transcriptional regulator in Staphylococcus aureus that is crucial for secondary tissue colonization during metastatic bloodstream infection 95%
Similar papers in this journal
- FrlP, an ABC type I importer component of Bacillus subtilis: regulation and impact in bacterial fitness 97%
- Regulatory involvement of the PerR and SloR metalloregulators in the Streptococcus mutans oxidative stress response 96%
- How to deal with toxic amino acids: the bipartite AzlCD complex exports histidine in Bacillus subtilis 96%
Similar papers in this journal
- Expression of the Bacillus thuringiensis vip3A insecticidal toxin gene is activated at the onset of stationary phase by VipR, an autoregulated transcription factor 95%
- Lysis cassette-mediated exoprotein release in Yersinia entomophaga is controlled by a PhoB-like regulator 95%
- C-di-AMP levels modulate Staphylococcus aureus cell wall thickness as well as virulence and contribute to antibiotic resistance and tolerance 95%
Similar papers in this journal
- Global analysis of the zinc homeostasis network in Pseudomonas aeruginosa and its gene expression dynamics 96%
- Responses of carbapenemase-producing and non-producing carbapenem-resistant Pseudomonas aeruginosa strains to meropenem revealed by quantitative tandem mass spectrometry proteomics 94%
- Functional insights from KpfR, a new transcriptional regulator of fimbrial expression that is crucial for Klebsiella pneumoniae pathogenicity 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.