Detection and partial characterization of extracellular inducers of persistence in Staphylococcus epidermidis and

Elyse C Curry1, Ryan G Hart1,2, Danni Y Habtu1,3

  • 1The Department of Microbiology/Immunology, A. T. Still University of Health Sciences, Kirksville College of Osteopathic Medicine, 800 West Jefferson Street, Kirksville, USA.

Insights

Staphylococci produce extracellular persistence-inducing factors (PIFs) that are low-molecular-weight molecules. These factors increase bacterial persister cell numbers, aiding in antibiotic resistance.

Area of Science:

  • Microbiology
  • Bacterial persistence
  • Quorum sensing

Background:

  • Bacterial persister cells are a subpopulation tolerant to antibiotics.
  • Increases in persister numbers during mid-log phase suggest the involvement of signaling molecules.
  • Quorum-sensing factors are potential inducers of persister formation in staphylococci.

Purpose of the Study:

  • To identify and partially characterize persistence-inducing factors (PIFs) in *Staphylococcus epidermidis* and *Staphylococcus aureus*.
  • To investigate the role of quorum sensing in staphylococcal persister cell formation.
  • To develop a novel assay for PIF detection based on optical density.

Main Methods:

  • Developed a persistence-inducing factor (PIF) assay using optical density (OD600) to determine optimal growth phase for PIF production.
  • Collected concentrated culture filtrates (CCFs) from *S. epidermidis* and *S. aureus* at various OD600s and after overnight incubation.
  • Characterized PIF activity based on temperature sensitivity, protease sensitivity (Proteinase K), ultrafiltration (3000 MWCO), and inter-species activity.

Main Results:

  • Optimal PIF production for *S. epidermidis* and *S. aureus* was observed at OD600 of 2.0 and 0.5, respectively, with highest activity after 16h incubation.
  • PIF activity was heat-labile, with varying sensitivity to temperature and boiling, and passed through a 3000 MWCO ultrafilter, indicating low molecular weight.
  • Proteinase K treatment reduced *S. aureus* PIF activity but not *S. epidermidis* PIF activity; no inter-species PIF activity was observed.

Conclusions:

  • Both *S. epidermidis* and *S. aureus* produce extracellular, low-molecular-weight persistence-inducing factors.
  • The developed OD600-based PIF assay is effective for identifying these factors, overcoming limitations of time-based methods.
  • The identified PIFs are species-specific and suggest a role in regulating bacterial persistence.

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