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Updated: May 13, 2026

A Murine Model of Group B Streptococcus Vaginal Colonization
Published on: November 16, 2016
Murine vaginal colonization model for investigating asymptomatic mucosal carriage of Streptococcus pyogenes
Michael E Watson1, Hailyn V Nielsen, Scott J Hultgren
1Divison of Pediatric Infectious Diseases, Department of Pediatrics, Washington University School of Medicine, St. Louis, Missouri, USA.
Abstract:
While many virulence factors promoting Streptococcus pyogenes invasive disease have been described, specific streptococcal factors and host properties influencing asymptomatic mucosal carriage remain uncertain. To address the need for a refined model of prolonged S. pyogenes asymptomatic mucosal colonization, we have adapted a preestrogenized murine vaginal colonization model for S. pyogenes. In this model, derivatives of strains HSC5, SF370, JRS4, NZ131, and MEW123 established a reproducible, asymptomatic colonization of the vaginal mucosa over a period of typically 3 to 4 weeks' duration at a relatively high colonization efficiency. Prior treatment with estradiol prolonged streptococcal colonization and was associated with reduced inflammation in the colonized vaginal epithelium as well as a decreased leukocyte presence in vaginal fluid compared to the levels of inflammation and leukocyte presence in non-estradiol-treated control mice. The utility of our model for investigating S. pyogenes factors contributing to mucosal carriage was verified, as a mutant with a mutation in the transcriptional regulator catabolite control protein A (CcpA) demonstrated significant impairment in vaginal colonization. An assessment of in vivo transcriptional activity in the CcpA(-) strain for several known CcpA-regulated genes identified significantly elevated transcription of lactate oxidase (lctO) correlating with excessive generation of hydrogen peroxide to self-lethal levels. Deletion of lctO did not impair colonization, but deletion of lctO in a CcpA(-) strain prolonged carriage, exceeding even that of the wild-type strain. Thus, while LctO is not essential for vaginal colonization, its dysregulation is deleterious, highlighting the critical role of CcpA in promoting mucosal colonization. The vaginal colonization model should prove effective for future analyses of S. pyogenes mucosal colonization.
Insights
This study developed a new mouse model for Streptococcus pyogenes vaginal colonization. Estradiol prolonged carriage and reduced inflammation, while CcpA regulation of LctO is key for S. pyogenes mucosal colonization.
Area of Science:
- Microbiology
- Infectious Diseases
- Host-Pathogen Interactions
Background:
- Streptococcus pyogenes causes invasive disease, but factors for asymptomatic mucosal carriage are unclear.
- Understanding carriage is crucial for controlling S. pyogenes transmission and disease.
Purpose of the Study:
- To develop and validate a murine model for prolonged asymptomatic vaginal colonization by S. pyogenes.
- To investigate host and bacterial factors influencing S. pyogenes mucosal carriage.
Main Methods:
- Adapted a pre-estrogenized murine vaginal colonization model for S. pyogenes.
- Utilized estradiol treatment to modulate host environment and assessed its impact on colonization and inflammation.
- Generated and analyzed a catabolite control protein A (CcpA) mutant to evaluate its role in vaginal colonization.
Main Results:
- The model supported reproducible, asymptomatic S. pyogenes colonization for 3-4 weeks.
- Estradiol treatment prolonged colonization and reduced vaginal inflammation and leukocyte presence.
- A CcpA mutant showed impaired colonization, linked to dysregulated lactate oxidase (lctO) expression and hydrogen peroxide production.
Conclusions:
- The murine vaginal colonization model is effective for studying S. pyogenes mucosal carriage.
- Estradiol influences the host environment to promote prolonged S. pyogenes colonization.
- CcpA is critical for S. pyogenes mucosal colonization, partly through regulating lctO to prevent self-toxic hydrogen peroxide accumulation.
