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Published on: July 6, 2016
Identification of Key Determinants of Staphylococcus aureus Vaginal Colonization
Liwen Deng1,2, Katrin Schilcher1, Lindsey R Burcham1
1Department of Immunology and Microbiology, University of Colorado School of Medicine, Aurora, Colorado, USA.
Abstract:
Staphylococcus aureus is an important pathogen responsible for nosocomial and community-acquired infections in humans, and methicillin-resistant S. aureus (MRSA) infections have continued to increase despite widespread preventative measures. S. aureus can colonize the female vaginal tract, and reports have suggested an increase in MRSA infections in pregnant and postpartum women as well as outbreaks in newborn nurseries. Currently, little is known about specific factors that promote MRSA vaginal colonization and subsequent infection. To study S. aureus colonization of the female reproductive tract in a mammalian system, we developed a mouse model of S. aureus vaginal carriage and demonstrated that both hospital-associated and community-associated MRSA isolates can colonize the murine vaginal tract. Immunohistochemical analysis revealed an increase in neutrophils in the vaginal lumen during MRSA colonization. Additionally, we observed that a mutant lacking fibrinogen binding adhesins exhibited decreased persistence within the mouse vagina. To further identify novel factors that promote vaginal colonization, we performed RNA sequencing to determine the transcriptome of MRSA growing in vivo during vaginal carriage at 5 h, 1 day, and 3 days postinoculation. Over 25% of the bacterial genes were differentially regulated at all time points during colonization compared to laboratory cultures. The most highly induced genes were those involved in iron acquisition, including the Isd system and siderophore transport systems. Mutants deficient in these pathways did not persist as well during in vivo colonization. These results reveal that fibrinogen binding and the capacity to overcome host nutritional limitation are important determinants of MRSA vaginal colonization.IMPORTANCEStaphylococcus aureus is an opportunistic pathogen able to cause a wide variety of infections in humans. Recent reports have suggested an increasing prevalence of MRSA in pregnant and postpartum women, coinciding with the increased incidence of MRSA infections in neonatal intensive care units (NICUs) and newborn nurseries. Vertical transmission from mothers to infants at delivery is a likely route of MRSA acquisition by the newborn; however, essentially nothing is known about host and bacterial factors that influence MRSA carriage in the vagina. Here, we established a mouse model of vaginal colonization and observed that multiple MRSA strains can persist in the vaginal tract. Additionally, we determined that MRSA interactions with fibrinogen and iron uptake can promote vaginal persistence. This study is the first to identify molecular mechanisms which govern vaginal colonization by MRSA, the critical initial step preceding infection and neonatal transmission.
Insights
Methicillin-resistant Staphylococcus aureus (MRSA) can colonize the female vagina. This study identified fibrinogen binding and iron acquisition as key factors promoting MRSA vaginal persistence and potential transmission.
Area of Science:
- Microbiology
- Infectious Diseases
- Pathogen Biology
Background:
- Staphylococcus aureus, including methicillin-resistant strains (MRSA), causes significant human infections.
- Increasing MRSA infections in pregnant women and neonates suggest a role for vaginal colonization.
- Factors influencing MRSA vaginal carriage remain largely unknown.
Purpose of the Study:
- To establish a mammalian model for studying MRSA vaginal colonization.
- To identify bacterial factors that promote MRSA persistence in the vaginal tract.
- To understand the initial steps of MRSA vaginal colonization and potential neonatal transmission.
Main Methods:
- Developed a mouse model of Staphylococcus aureus vaginal carriage.
- Utilized immunohistochemistry to analyze host response (neutrophils).
- Employed RNA sequencing to determine MRSA gene expression during vaginal colonization.
- Generated and tested mutant strains lacking specific adhesins or iron acquisition systems.
Main Results:
- MRSA successfully colonized the murine vaginal tract.
- Neutrophil infiltration was observed during colonization.
- Fibrinogen binding adhesins and iron acquisition systems (Isd system, siderophores) were crucial for MRSA persistence.
- Over 25% of MRSA genes were differentially regulated during vaginal colonization.
Conclusions:
- Fibrinogen binding and efficient iron acquisition are critical for MRSA vaginal colonization.
- This study provides insights into the molecular mechanisms of MRSA vaginal carriage.
- Understanding these factors is vital for preventing neonatal MRSA transmission.
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