Mechanisms of Pyocyanin Toxicity and Genetic Determinants of Resistance in Staphylococcus aureus

Michael J Noto1, William J Burns2, William N Beavers2

  • 1Department of Medicine, Division of Allergy, Pulmonary, and Critical Care Medicine, Vanderbilt University Medical Center, Nashville, Tennessee, USA.

Insights

Pseudomonas aeruginosa produces pyocyanin, which harms Staphylococcus aureus by inhibiting respiration and generating reactive oxygen species (ROS). Staphylococcus aureus develops resistance through mutations, particularly in the qsrR gene, enhancing its ability to detoxify pyocyanin.

Area of Science:

  • Microbiology
  • Bacterial Pathogenesis
  • Host-Microbe Interactions

Background:

  • Polymicrobial infections involving *Pseudomonas aeruginosa* and *Staphylococcus aureus* are common in conditions like cystic fibrosis.
  • *P. aeruginosa* produces pyocyanin, a toxin that inhibits *S. aureus* respiration, leading to a small-colony variant (SCV) phenotype.
  • The mechanisms of *S. aureus* survival and resistance in the presence of pyocyanin are not fully understood.

Purpose of the Study:

  • To elucidate the mechanisms of pyocyanin toxicity in *S. aureus*.
  • To identify *S. aureus* factors contributing to pyocyanin resistance.
  • To understand how *S. aureus* sustains infection during co-infection with *P. aeruginosa*.

Main Methods:

  • Induction of *S. aureus* small-colony variants (SCVs) under pyocyanin stress.
  • Genome sequencing of pyocyanin-resistant *S. aureus* isolates.
  • Gene inactivation studies to assess the role of specific genes (e.g., *qsrR*) in pyocyanin resistance.

Main Results:

  • Pyocyanin toxicity in *S. aureus* is mediated by respiratory inhibition and the production of reactive oxygen species (ROS).
  • Selection under pyocyanin pressure identified a menadione auxotrophic SCV with mutations in *saeS*, *menD*, NWMN_0006, and *qsrR*.
  • Inactivation of the *qsrR* gene conferred significant pyocyanin resistance, which was further enhanced by combined inactivation of *qsrR* and menadione biosynthesis genes.

Conclusions:

  • Pyocyanin induces toxicity in *S. aureus* through ROS generation, in addition to respiratory inhibition.
  • *S. aureus* develops resistance to pyocyanin, partly through the QsrR repressor controlling quinone detoxification and potentially pyocyanin degradation.
  • Understanding these resistance mechanisms is crucial for developing strategies to manage polymicrobial infections involving *P. aeruginosa* and *S. aureus*.

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