Cited 19 time in
- Title
- The fused methionine sulfoxide reductase MsrAB promotes oxidative stress defense and bacterial virulence in Fusobacterium nucleatum
- Author(s)
- M Scheible; C T Nguyen; T T Luong; Ju Huck Lee; Y W Chen; C Chang; M Wittchen; M I Camacho; B L Tiner; C Wu; A Tauch; A Das; H Ton-That
- Bibliographic Citation
- Mbio, vol. 13, no. 3, pp. e0302221-e0302221
- Publication Year
- 2022
- Abstract
- Fusobacterium nucleatum, an anaerobic Gram-negative bacterium frequently found in the human oral cavity and some extra-oral sites, is implicated in several important diseases: periodontitis, adverse pregnancy outcomes, and colorectal cancer. To date, how this obligate anaerobe copes with oxidative stress and host immunity within multiple human tissues remains unknown. Here, we uncovered a critical role in this process of a multigene locus encoding a single, fused methionine sulfoxide reductase (MsrAB), a two-component signal transduction system (ModRS), and thioredoxin (Trx)- and cytochrome c (CcdA)-like proteins, which are induced when fusobacterial cells are exposed to hydrogen peroxide. Comparative transcriptome analysis revealed that the response regulator ModR regulates a large regulon that includes trx, ccdA, and many metabolic genes. Significantly, specific mutants of the msrAB locus, including msrAB, are sensitive to reactive oxygen species and defective in adherence/invasion of colorectal epithelial cells. Strikingly, the msrAB mutant is also defective in survival in macrophages, and it is severely attenuated in virulence in a mouse model of preterm birth, consistent with its failure to spread to the amniotic fluid and colonize the placenta. Clearly, the MsrAB system regulated by the two-component system ModRS represents a major oxidative stress defense pathway that protects fusobacteria against oxidative damage in immune cells and confers virulence by enabling attachment and invasion of multiple target tissues.
- Keyword
- Fusobacterium nucleatumMsrABAdherenceCell invasionGene regulationOxidative stressPreterm birthVirulence
- ISSN
- 2150-7511
- Publisher
- Amer Soc Microb
- Full Text Link
- http://dx.doi.org/10.1128/mbio.03022-21
- Type
- Article
- Appears in Collections:
- Jeonbuk Branch Institute > Biological Resource Center > 1. Journal Articles
- Files in This Item:
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