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System for Efficacy and Cytotoxicity Screening of Inhibitors Targeting Intracellular Mycobacterium tuberculosis
Published on: April 5, 2017
Phosphorylation of VapB antitoxins affects intermolecular interactions to regulate VapC toxin activity in
Basanti Malakar1,2, Valdir Barth1,2, Julia Puffal3
1Division of Infectious Diseases, Boston Children's Hospital, Boston, MA, USA.
Abstract:
Toxin-antitoxin modules are present in many bacterial pathogens. The VapBC family is particularly abundant in members of the Mycobacterium tuberculosis complex, with 50 modules present in the M. tuberculosis genome. In type IIA modules the VapB antitoxin protein binds to and inhibits the activity of the co-expressed cognate VapC toxin protein. VapB proteins also bind to promoter region sequences and repress expression of the vapB-vapC operon. Though VapB-VapC interactions can control the amount of free VapC toxin in the bacterial cell, the mechanisms that affect this interaction are poorly understood. Based on our recent finding of Ser/Thr phosphorylation of VapB proteins in M. tuberculosis, we substituted phosphomimetic or phosphoablative amino acids at the phosphorylation sites of two VapB proteins. We found that phosphomimetic substitution of VapB27 and VapB46 resulted in decreased interaction with their respective cognate VapC proteins, whereas phosphoablative substitution did not alter binding. Similarly, we determined that phosphomimetic substitution interfered with VapB binding to promoter region DNA sequences. Both decreased VapB-VapC interaction and decreased VapB repression of vapB-vapC operon transcription would result in increased free VapC in the M. tuberculosis cell. M. tuberculosis strains expressing vapB46-vapC46 constructs containing a phosphoablative vapB mutation resulted in lower toxicity compared to a strain expressing native vapB46, whereas similar or greater toxicity was observed in the strain expressing the phosphomimetic vapB mutation. These results identify a novel mechanism by which VapC toxicity activity can be regulated by VapB phosphorylation, potentially in response to extracytoplasmic as well as intracellular signals.
Insights
Phosphorylation of VapB antitoxins in Mycobacterium tuberculosis regulates VapC toxin activity. This phosphorylation controls VapB-VapC interactions and gene expression, impacting bacterial toxicity.
Area of Science:
- Microbiology
- Molecular Biology
- Genetics
Background:
- Toxin-antitoxin modules, like VapBC, are crucial in bacterial pathogens such as Mycobacterium tuberculosis.
- The VapB antitoxin typically inhibits the VapC toxin and represses its own gene expression.
Purpose of the Study:
- To investigate the role of VapB protein phosphorylation in regulating VapB-VapC interactions and VapC toxicity in M. tuberculosis.
- To explore how phosphorylation affects VapB binding to its cognate VapC toxin and promoter DNA.
Main Methods:
- Site-directed mutagenesis was used to create phosphomimetic and phosphoablative VapB variants.
- VapB-VapC interaction was assessed through co-immunoprecipitation or similar assays.
- VapB binding to DNA promoter regions was analyzed.
- Toxicity assays were performed on M. tuberculosis strains expressing different VapB variants.
Main Results:
- Phosphomimetic VapB substitutions decreased interaction with VapC toxins and impaired VapB binding to promoter DNA.
- Phosphoablative substitutions did not significantly alter VapB-VapC binding or DNA binding.
- Increased VapC activity and toxicity were observed with phosphomimetic VapB mutations.
Conclusions:
- VapB phosphorylation is a novel regulatory mechanism controlling VapC toxin activity in M. tuberculosis.
- This phosphorylation influences VapB-VapC interaction and transcriptional repression, thereby modulating bacterial toxicity.
- VapB phosphorylation may serve as a response to both internal and external cellular signals.
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