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.

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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