The Streptococcus pyogenes mannose phosphotransferase system (Man-PTS) influences antimicrobial activity and

Amanda C Marple1, Blake A Shannon1, Aanchal Rishi1

  • 1Department of Microbiology and Immunology, University of Western Ontario, London, Ontario, Canada.

PubMed

Insights

Streptococcus pyogenes uses its mannose phosphotransferase system (Man-PTS) to compete with other microbes by producing antimicrobials. This sugar transporter is crucial for nasopharyngeal infections but not skin infections in mice.

Area of Science:

  • Microbiology
  • Pathogenesis
  • Bacterial Metabolism

Background:

  • Streptococcus pyogenes causes significant human disease, including pharyngitis and skin infections.
  • Understanding how S. pyogenes interacts with host microbiota is crucial for developing new treatment strategies.
  • The bacterium's ability to compete with commensal microbes is not fully understood.

Purpose of the Study:

  • To investigate the antimicrobial activity of S. pyogenes against other bacteria.
  • To identify the genetic basis of this antimicrobial activity and its role in host-pathogen interactions.
  • To determine the importance of sugar metabolism in S. pyogenes pathogenesis.

Main Methods:

  • Detection of antimicrobial activity against Micrococcus luteus.
  • Genome sequencing and transposon mutagenesis of S. pyogenes MGAS8232.
  • Analysis of sugar utilization in wild-type and mutant strains using RNA-seq.
  • Evaluation of S. pyogenes in mouse models of nasopharyngeal and skin infections.

Main Results:

  • S. pyogenes produced an antimicrobial substance not related to classical bacteriocins.
  • The mannose phosphotransferase system (Man-PTS) was essential for this antimicrobial activity.
  • Man-PTS mutants showed impaired utilization of galactose, mannose, and N-acetylglucosamine.
  • Deletion of Man-PTS impaired S. pyogenes in a nasopharyngeal infection model but not a skin infection model.

Conclusions:

  • The Man-PTS contributes to S. pyogenes' ability to compete with the host microbiota.
  • Alternative sugar metabolism via Man-PTS plays a role in S. pyogenes nasopharyngeal infections.
  • Targeting sugar metabolism could be a potential strategy against S. pyogenes infections.

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