Airway Corynebacterium interfere with Streptococcus pneumoniae and Staphylococcus aureus infection and express
Emily Tamkin1, Brian P Lorenz1, Arianna McCarty1
1Department of Otolaryngology, University of Colorado School of Medicine, Aurora, Colorado, USA.
Abstract:
The composition of the respiratory tract microbiome is a notable predictor of infection-related morbidities and mortalities among both adults and children. Species of Corynebacterium, which are largely present as commensals in the upper airway and other body sites, are associated with lower colonization rates of opportunistic bacterial pathogens such as Streptococcus pneumoniae and Staphylococcus aureus. In this study, Corynebacterium-mediated protective effects against S. pneumoniae and S. aureus were directly compared using in vivo and in vitro models. Pre-exposure to Corynebacterium pseudodiphtheriticum reduced the ability of S. aureus and S. pneumoniae to infect the lungs of mice, indicating a broadly protective effect. Adherence of both pathogens to human respiratory tract epithelial cells was significantly impaired following pre-exposure to C. pseudodiphtheriticum or Corynebacterium accolens, and this effect was dependent on live Corynebacterium colonizing the epithelial cells. However, Corynebacterium-secreted factors had distinct effects on each pathogen. Corynebacterium lipase activity was bactericidal against S. pneumoniae, but not S. aureus. Instead, the hemolytic activity of pore-forming toxins produced by S. aureus was directly blocked by a novel Corynebacterium-secreted factor with protease activity. Taken together, these results suggest diverse mechanisms by which Corynebacterium contribute to the protective effect of the airway microbiome against opportunistic bacterial pathogens.
Insights
Certain Corynebacterium species protect against respiratory infections by opportunistic pathogens like Streptococcus pneumoniae and Staphylococcus aureus. These bacteria prevent pathogen adherence and employ distinct secreted factors to combat infections.
Area of Science:
- Microbiology
- Immunology
- Respiratory Medicine
Background:
- The respiratory tract microbiome composition predicts infection-related outcomes.
- Commensal Corynebacterium species are associated with reduced opportunistic pathogen colonization.
- Understanding Corynebacterium's protective mechanisms is crucial for respiratory health.
Purpose of the Study:
- To directly compare Corynebacterium-mediated protective effects against Streptococcus pneumoniae and Staphylococcus aureus.
- To investigate the in vivo and in vitro mechanisms underlying Corynebacterium's pathogen inhibition.
Main Methods:
- Utilized in vivo mouse models and in vitro human respiratory epithelial cell cultures.
- Assessed pathogen infection rates and adherence following Corynebacterium pre-exposure.
- Analyzed the impact of Corynebacterium-secreted factors, including lipase and protease activity.
Main Results:
- Pre-exposure to Corynebacterium pseudodiphtheriticum reduced S. pneumoniae and S. aureus lung infections in mice.
- Corynebacterium accolens and C. pseudodiphtheriticum impaired pathogen adherence to epithelial cells.
- Corynebacterium lipase was bactericidal against S. pneumoniae, while a novel protease blocked S. aureus hemolysin activity.
Conclusions:
- Corynebacterium species exert broadly protective effects against common respiratory pathogens.
- Mechanisms include preventing pathogen adherence and secreting distinct antimicrobial factors.
- These findings highlight the role of Corynebacterium in maintaining airway microbiome-mediated defense.
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