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An Extracytoplasmic Function Sigma/Anti-Sigma Factor System Regulates Hypochlorous Acid Resistance and Impacts
Huoming Li1, Sen Hu1, Xin Yan1
1Key Laboratory of Veterinary Public Health of Ministry of Agriculture, State Key Laboratory of Veterinary Biotechnology, Harbin Veterinary Research Institute, Chinese Academy of Agricultural Sciences, Harbin, China.
Abstract:
The intracellular bacterial pathogen Brucella causes persistent infections in various mammalian species. To survive and replicate within macrophages, these bacteria must be able to withstand oxidative stresses and express the type IV secretion system (T4SS) to evade host immune responses. The extracytoplasmic function (ECF) sigma factor system is a major signal transduction mechanism in bacteria that senses environmental cues and responds by regulating gene expression. In this study, we defined an ECF σ bcrS and its cognate anti-σ factor abcS in Brucella melitensis M28 by conserved domain analysis and a protein interaction assay. BcrS directly activates an adjacent operon, bcrXQP, that encodes a methionine-rich peptide and a putative methionine sulfoxide reductase system, whereas AbcS is a negative regulator of bcrS and bcrXQP. The bcrS-abcS and bcrXQP operons can be induced by hypochlorous acid and contribute to hypochlorous acid resistance in vitro. Next, RNA sequencing analysis and genome-wide recognition sequence search identified the regulons of BcrS and AbcS. Interestingly, we found that BcrS positively influences T4SS expression in an AbcS-dependent manner and that AbcS also affects T4SS expression independently of BcrS. Last, we demonstrate that abcS is required for the maintenance of persistent infection, while bcrS is dispensable in a mouse infection model. Collectively, we conclude that BcrS and AbcS influence expression of multiple genes responsible for Brucella virulence traits. IMPORTANCEBrucella is a notorious intracellular pathogen that induces chronic infections in animals and humans. To survive and replicate within macrophages, these bacteria require a capacity to withstand oxidative stresses and to express the type IV secretion system (T4SS) to combat host immune responses. In this study, we characterized an extracytoplasmic function sigma/anti-sigma factor system that regulates resistance to reactive chlorine species and T4SS expression, thereby establishing a potential link between two crucial virulence traits of Brucella. Furthermore, the anti-sigma factor AbcS contributes to Brucella persistent infection of mice. Thus, this work provides novel insights into Brucella virulence regulation as well as a potential drug target for fighting Brucella infections.
Insights
Brucella
Area of Science:
- Microbiology
- Bacterial Pathogenesis
- Molecular Biology
Background:
- Brucella is an intracellular pathogen causing persistent infections.
- Survival within macrophages requires resistance to oxidative stress and Type IV Secretion System (T4SS) expression.
- Extracytoplasmic function (ECF) sigma factors regulate bacterial responses to environmental cues.
Purpose of the Study:
- To characterize the ECF sigma factor BcrS and its anti-sigma factor AbcS in Brucella melitensis.
- To investigate the role of BcrS and AbcS in oxidative stress resistance and T4SS regulation.
- To determine the contribution of BcrS and AbcS to Brucella virulence and persistent infection.
Main Methods:
- Conserved domain analysis and protein interaction assays to define BcrS and AbcS.
- Hypochlorous acid induction assays to assess resistance.
- RNA sequencing and genome-wide analysis to identify BcrS and AbcS regulons.
- Mouse infection models to evaluate virulence and persistence.
Main Results:
- BcrS activates the bcrXQP operon; AbcS negatively regulates BcrS and bcrXQP.
- BcrS-AbcS system confers resistance to hypochlorous acid.
- BcrS and AbcS regulate T4SS expression, with AbcS having both dependent and independent effects.
- AbcS is essential for persistent Brucella infection in mice, while BcrS is dispensable.
Conclusions:
- The BcrS-AbcS system links oxidative stress resistance and T4SS expression in Brucella.
- AbcS plays a critical role in maintaining persistent Brucella infections.
- This study provides insights into Brucella virulence regulation and potential therapeutic targets.
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