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Published on: February 23, 2021
Elucidating the role of (p)ppGpp in mycobacterial persistence against antibiotics
Ashima Bhaskar1, Cyntia De Piano1, Ekaterina Gelman1
1Laboratory of Microbiology and Microtechnology, School of Life Sciences, Swiss Federal Institute of Technology in Lausanne (EPFL), Lausanne, Switzerland.
Abstract:
Bacterial persistence, the ability of bacteria to survive high concentrations of antibiotics for extended periods of time, is an important contributing factor to therapy failure and development of chronic and recurrent infections. Several recent studies have suggested that this persistence is mediated primarily by (p)ppGpp, through its interactions with toxin-antitoxin modules and polyphosphates. In this study, we address whether these key players play a role in mycobacterial persistence against antibiotics. We targeted these specific pathways in Mycobacterium smegmatis by constructing deletion strains of (p)ppGpp synthetase/hydrolase (relA), polyphosphate kinases (ppk1 and ppk2), exopolyphosphatases (ppx1 and ppx2), and the lon protease. None of these mutant strains exhibited altered levels of persisters against isoniazid and ciprofloxacin, when compared with wild-type strain. Even under conditions in which the stringent response usually gets activated, these strains displayed wild-type persister levels. Interestingly, we also found that unlike Escherichia coli, maintaining M. smegmatis in exponential phase by repeated passaging does not eliminate persisters suggesting that at least against the antibiotics tested, stationary-phase dependent persisters (type I) are not the major contributors. Thus, our data demonstrate that multiple mechanisms of antibiotic persistence exist and that these vary widely among different bacterial species. © 2018 IUBMB Life, 70(9):836-844, 2018.
Insights
Mycobacterial persistence against antibiotics is not mediated by (p)ppGpp, toxin-antitoxin modules, or polyphosphates. These key players in bacterial persistence do not influence antibiotic resistance in Mycobacterium smegmatis.
Area of Science:
- Microbiology
- Molecular Biology
- Drug Discovery
Background:
- Bacterial persistence contributes to antibiotic therapy failure and chronic infections.
- Recent studies implicate (p)ppGpp, toxin-antitoxin modules, and polyphosphates in bacterial persistence.
Purpose of the Study:
- To investigate the role of (p)ppGpp, polyphosphates, and lon protease in mycobacterial antibiotic persistence.
- To determine if these pathways are conserved mechanisms of persistence across bacterial species.
Main Methods:
- Construction of deletion strains for key persistence-related genes in Mycobacterium smegmatis.
- Assessment of persister levels against isoniazid and ciprofloxacin in mutant and wild-type strains.
- Evaluation of persister levels under stringent response conditions and during exponential phase.
Main Results:
- Deletion mutants for (p)ppGpp synthetase/hydrolase (relA), polyphosphate kinases (ppk1, ppk2), exopolyphosphatases (ppx1, ppx2), and lon protease showed no altered persister levels.
- Persister levels remained unchanged even under stringent response activation.
- Unlike E. coli, stationary-phase independent persisters were not the primary contributors in M. smegmatis.
Conclusions:
- The investigated pathways are not the primary drivers of antibiotic persistence in Mycobacterium smegmatis.
- Mechanisms of bacterial antibiotic persistence differ significantly between species.
- This highlights the need for diverse strategies to combat persistent bacterial infections.
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