MapZ deficiency leads to defects in the envelope structure and changes stress tolerance of Streptococcus mutans

Yongliang Li1,2, Dan Qiao3, Yifei Zhang2,4

  • 1Department of Geriatric Dentistry, Peking University Hospital of Stomatology, Beijing, P. R. China.

Insights

MapZ protein is crucial for maintaining Streptococcus mutans cell shape and stress resistance. Its absence impairs cell walls and increases susceptibility to antibiotics, suggesting MapZ as a potential drug target for preventing cavities.

Area of Science:

  • Bacteriology
  • Microbial Pathogenesis
  • Cell Biology

Background:

  • Cell division is essential for bacterial growth and pathogenicity.
  • MapZ protein regulates cell division in Streptococcus mutans.
  • The role of MapZ in virulence and stress tolerance is not well understood.

Purpose of the Study:

  • To investigate the function of MapZ in Streptococcus mutans.
  • To determine MapZ's role in cell envelope maintenance, biofilm formation, and stress tolerance.
  • To explore MapZ as a potential drug target for caries prevention.

Main Methods:

  • Phenotypic assays were used to assess cell morphology and biofilm formation.
  • RNA-sequencing (RNA-seq) was employed to analyze gene expression changes.
  • Stress tolerance assays (acid, osmotic, chlorhexidine) were performed on wild-type and mapZ mutant strains.

Main Results:

  • MapZ deletion resulted in abnormal cell shape, septum structure, and thin cell walls.
  • mapZ mutants showed increased cell death in early biofilms and reduced tolerance to acid and osmotic stress.
  • RNA-seq revealed significant alterations in genes related to transport, metabolism, competence, and bacteriocin synthesis in mapZ mutants.
  • mapZ mutation increased sensitivity to chlorhexidine.

Conclusions:

  • MapZ is vital for maintaining cell envelope integrity and stress tolerance in Streptococcus mutans.
  • MapZ deficiency impacts various cellular processes, including gene expression related to virulence factors.
  • Targeting MapZ could be a promising strategy for developing new anti-caries therapies.

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