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Updated: Feb 22, 2026

A Murine Model of Group B Streptococcus Vaginal Colonization
Published on: November 16, 2016
Mast cell chymase decreases the severity of group B Streptococcus infections
Claire Gendrin1, Nicholas J Shubin2, Erica Boldenow2
1Department of Pediatric Infectious Diseases, University of Washington, Seattle, Wash; Seattle Children's Research Institute, Seattle, Wash.
Background:
Group B Streptococcus (GBS) or Streptococcus agalactiae are β-hemolytic gram-positive bacteria that colonize the lower genital tracts of women and are frequently associated with infections during pregnancy. Innate immune defenses are critical for controlling GBS dissemination and systemic infection. Mast cells are resident sentinel cells that come into contact with pathogens early during colonization and infection.
Objective:
We aimed to investigate the contribution of chymase to systemic GBS infection and rates of preterm birth.
Methods:
Pharmacologic and genetic approaches using mice deficient in mast cell protease (MCPT) 4, the mouse functional homologue of human chymase, were used.
Results:
Our studies show that mast cells release a protease with chymotrypsin-like cleavage specificity in response to GBS. Additionally, increased GBS systemic infection and preterm births were observed in MCPT4-deficient mice versus MCPT4-sufficient mice. Furthermore, we observed that proteolytic cleavage of the host extracellular matrix protein fibronectin by peritoneal cell-derived mast cell lysates diminished GBS adherence. Consistent with this observation, the increase in GBS dissemination and preterm births observed in MCPT4-deficient mice was abolished when GBS was deficient in expression of the fibronectin-binding protein SfbA.
Conclusions:
Taken together, our results suggest that the protective effect of MCPT4 against GBS dissemination and preterm labor can be attributed in part to MCPT4-mediated proteolysis of fibronectin. Our studies reveal a novel role of mast cells in defense against bacterial infections.
Insights
Mast cells release chymase, which protects against Group B Streptococcus (GBS) infection and preterm birth by degrading fibronectin. This reveals a new role for mast cells in fighting bacterial infections.
Area of Science:
- Immunology
- Microbiology
- Obstetrics
Background:
- Group B Streptococcus (GBS) colonizes the female genital tract and causes pregnancy-related infections.
- Innate immunity, particularly mast cells, is crucial for controlling GBS.
- Mast cells are early responders to pathogens during colonization and infection.
Purpose of the Study:
- To investigate the role of chymase in GBS systemic infection.
- To determine chymase's contribution to preterm birth rates.
Main Methods:
- Utilized pharmacologic and genetic approaches in mice.
- Employed mice deficient in mast cell protease (MCPT) 4, the mouse homolog of human chymase.
- Analyzed GBS infection and preterm birth rates in MCPT4-deficient and sufficient mice.
Main Results:
- Mast cells release chymase in response to GBS.
- MCPT4-deficient mice exhibited increased GBS systemic infection and preterm births.
- Proteolytic cleavage of fibronectin by mast cell lysates reduced GBS adherence, particularly when GBS lacked SfbA.
Conclusions:
- MCPT4-mediated fibronectin proteolysis partially explains the protective effect against GBS dissemination and preterm labor.
- Mast cells play a novel role in host defense against bacterial infections.
- This study highlights a new mechanism of innate immunity against GBS.
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