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Updated: Jul 31, 2025

The Citrobacter rodentium Mouse Model: Studying Pathogen and Host Contributions to Infectious Colitis
Published on: February 19, 2013
Turicibacterales protect mice from severe Citrobacter rodentium infection
Kristen L Hoek1, Kathleen G McClanahan1, Yvonne L Latour1,2
1Department of Pathology, Microbiology, and Immunology, Vanderbilt University Medical Center, Nashville, TN, USA.
Abstract:
One of the major contributors to child mortality in the world is diarrheal diseases, with an estimated 800,000 deaths per year. Many pathogens are causative agents of these illnesses, including the enteropathogenic (EPEC) or enterohemorrhagic (EHEC) forms of Escherichia coli. These bacteria are characterized by their ability to cause attaching and effacing lesions in the gut mucosa. Although much has been learned about the pathogenicity of these organisms and the immune response against them, the role of the intestinal microbiota during these infections is not well characterized. Infection of mice with E. coli requires pre-treatment with antibiotics in most mouse models, which hinders the study of the microbiota in an undisturbed environment. Using Citrobacter rodentium as a murine model for attaching and effacing bacteria, we show that C57BL/6 mice deficient in granzyme B expression are highly susceptible to severe disease caused by C. rodentium infection. Although a previous publication from our group shows that granzyme B-deficient CD4+ T cells are partially responsible for this phenotype, in this report we present data demonstrating that the microbiota, in particular members of the order Turicibacterales, have an important role in conferring resistance. Mice deficient in Turicibacter sanguinis have increased susceptibility to severe disease. However, when these mice are co-housed with resistant mice, or colonized with T. sanguinis, susceptibility to severe infection is reduced. These results clearly suggest a critical role for this commensal in the protection against entero-pathogens.
Insights
The gut microbiota, specifically Turicibacter sanguinis, plays a crucial role in protecting against attaching and effacing bacterial infections. This commensal bacterium enhances resistance, reducing disease severity in mice.
Area of Science:
- Microbiology
- Immunology
- Gastroenterology
Background:
- Diarrheal diseases cause significant child mortality globally.
- Enteropathogenic and enterohemorrhagic Escherichia coli are key pathogens, inducing attaching and effacing lesions.
- The role of the intestinal microbiota in these infections remains poorly understood.
Approach:
- Utilized Citrobacter rodentium as a murine model for attaching and effacing bacteria.
- Investigated the susceptibility of granzyme B-deficient mice to C. rodentium infection.
- Examined the impact of specific microbiota members, particularly Turicibacterales, on infection outcomes.
Key Points:
- Granzyme B-deficient mice exhibit heightened susceptibility to severe C. rodentium infection.
- Mice deficient in Turicibacter sanguinis show increased disease severity.
- Co-housing with resistant mice or colonization with T. sanguinis reduces susceptibility in deficient mice.
Conclusions:
- The intestinal microbiota, especially Turicibacter sanguinis, is critical for conferring resistance against C. rodentium.
- This commensal bacterium plays a vital protective role against entero-pathogens.

