Extracellular redox sensors control the protein secretion stress response in Streptomyces
McLean, T. C.; Beaton, A. D. M.; Holmes, N. A.; Saalbach, G.; Martins, C.; Chandra, G.; Batey, S. F. D.; China, J.; Wilkinson, B.; Hutchings, M. I.
Show abstract
Streptomyces secondary metabolites account for over half of all clinically used antibiotics, as well as numerous antifungal agents, anticancer compounds, and immunosuppressants. Two-component systems, which are widespread in bacteria, are key regulators of antibiotic production in Streptomyces species, yet their activating signals remain poorly understood. CutRS was the first two-component system identified in the genus Streptomyces and deletion of cutRS in Streptomyces coelicolor was shown to enhance antibiotic production, although its CutR regulon does not include any biosynthetic genes. Here, we used Streptomyces venezuelae to further investigate CutRS function. We show that deletion of cutRS leads to an increase in growth rate and a reversal of the typical glucose-mediated carbon catabolite repression typically observed in Streptomyces species. We also demonstrate that CutR DNA binding is glucose-dependent, but CutR does not directly regulate genes involved in growth, antibiotic biosynthesis, or glucose metabolism. The only CutR targets conserved in both S. coelicolor and S. venezuelae are the foldase genes htrA3 and htrB, which are involved in the protein secretion stress response. Consistent with this, we show that CutS homologues all contain two conserved cysteine residues in their extracellular sensor domains and that changing these residues to serine constitutively activates S. venezuelae CutRS. We propose that failure of a disulfide bond to form between these cysteine residues indicates secretion stress and leads to activation of the CutRS system and the secretion stress response. IMPORTANCEStreptomyces bacteria are the primary source of clinically useful antibiotics. While many two-component systems have been linked to antibiotic biosynthesis in Streptomyces species, few have been well characterized. Here, we characterize a secretion stress sensing two-component system called CutRS and propose a model for how the sensor kinase detects extracellular protein misfolding via two highly conserved cysteine residues. Importantly, we also show that deletion of cutRS triggers antibiotic overproduction in the presence of glucose. Since glucose normally represses antibiotic biosynthesis in Streptomyces species through carbon catabolite repression, this finding reveals a simple genetic route to bypass this barrier. This has significant implications for antibiotic discovery pipelines and industrial production, where glucose-rich media are preferred for cost and scalability. Our results position CutRS as a key target for future strain improvement strategies.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Streptococcus suis encodes multiple allelic variants of a phase-variable Type III DNA methyltransferase, ModS, that control distinct phasevarions 96%
- Streptococcus pneumoniae, S. mitis, and S. oralis produce a phosphatidylglycerol-dependent, ltaS-independent glycerophosphate-linked glycolipid 95%
- A secreted NlpC/P60 endopeptidase from Photobacterium damselae subsp. piscicida cleaves the peptidoglycan of potentially competing bacteria 95%
Similar papers in this journal
- The proteomic and transcriptomic landscapes altered by Rgg2/3 activity in Streptococcus pyogenes 98%
- Genome-wide identification of the LexA-mediated DNA damage response in Streptomyces venezuelae 97%
- Exploratory growth in Streptomyces venezuelae involves a unique transcriptional program, enhanced oxidative stress response, and profound acceleration in response to glycerol 97%
Similar papers in this journal
- Systems-wide analysis of the GATC-binding nucleoid-associated protein Gbn and its impact on Streptomyces development 97%
- Unraveling proteomic chaos by independent component analysis - ClpX proficiency promotes the iron and oxygen limitation responses of Staphylococcus aureus and affects the intracellular bacterial behavior 96%
- A complex regulatory network governs the production of an antibiotic with unusual cell-density-dependence 96%
Similar papers in this journal
- Lysis cassette-mediated exoprotein release in Yersinia entomophaga is controlled by a PhoB-like regulator 97%
- Characterization of TelE, an LXG effector exhibiting a conserved C-terminal glycine zipper motif required for toxicity 96%
- C-di-AMP levels modulate Staphylococcus aureus cell wall thickness as well as virulence and contribute to antibiotic resistance and tolerance 96%
"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.