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Updated: Jan 22, 2026

The Citrobacter rodentium Mouse Model: Studying Pathogen and Host Contributions to Infectious Colitis
Published on: February 19, 2013
EspF is crucial for Citrobacter rodentium-induced tight junction disruption and lethality in immunocompromised
Xue Xia1, Yue Liu1, Andrea Hodgson1
1Department of Biochemistry and Molecular Biology, Bloomberg School of Public Health, Johns Hopkins University, Baltimore, MD, United States of America.
Abstract:
Attaching/Effacing (A/E) bacteria include human pathogens enteropathogenic Escherichia coli (EPEC), enterohemorrhagic E. coli (EHEC), and their murine equivalent Citrobacter rodentium (CR), of which EPEC and EHEC are important causative agents of foodborne diseases worldwide. While A/E pathogen infections cause mild symptoms in the immunocompetent hosts, an increasing number of studies show that they produce more severe morbidity and mortality in immunocompromised and/or immunodeficient hosts. However, the pathogenic mechanisms and crucial host-pathogen interactions during A/E pathogen infections under immunocompromised conditions remain elusive. We performed a functional screening by infecting interleukin-22 (IL-22) knockout (Il22-/-) mice with a library of randomly mutated CR strains. Our screen reveals that interruption of the espF gene, which encodes the Type III Secretion System effector EspF (E. coli secreted protein F) conserved among A/E pathogens, completely abolishes the high mortality rates in CR-infected Il22-/- mice. Chromosomal deletion of espF in CR recapitulates the avirulent phenotype without impacting colonization and proliferation of CR, and EspF complement in ΔespF strain fully restores the virulence in mice. Moreover, the expression levels of the espF gene are elevated during CR infection and CR induces disruption of the tight junction (TJ) strands in colonic epithelium in an EspF-dependent manner. Distinct from EspF, chromosomal deletion of other known TJ-damaging effector genes espG and map failed to impede CR virulence in Il22-/- mice. Hence our findings unveil a critical pathophysiological function for EspF during CR infection in the immunocompromised host and provide new insights into the complex pathogenic mechanisms of A/E pathogens.
Insights
The bacterial effector EspF is critical for severe disease caused by Citrobacter rodentium in immunocompromised mice. Deleting the espF gene prevents mortality by maintaining gut barrier integrity, highlighting EspF
Area of Science:
- Microbiology
- Immunology
- Pathogenesis
Background:
- Attaching/effacing (A/E) bacteria like EPEC, EHEC, and Citrobacter rodentium (CR) cause foodborne illnesses.
- While generally mild in immunocompetent individuals, A/E pathogen infections lead to severe outcomes in immunocompromised hosts.
- The precise mechanisms of A/E pathogen virulence in immunocompromised individuals remain unclear.
Purpose of the Study:
- To identify key virulence factors of A/E pathogens in immunocompromised hosts.
- To investigate the role of the Type III Secretion System effector EspF in Citrobacter rodentium pathogenesis.
- To elucidate host-pathogen interactions contributing to severe disease.
Main Methods:
- Functional screening of randomly mutated Citrobacter rodentium strains in interleukin-22 (IL-22) knockout mice.
- Genetic manipulation of Citrobacter rodentium, including espF gene deletion and complementation.
- Assessment of bacterial colonization, proliferation, mortality rates, and colonic epithelial tight junction integrity.
Main Results:
- Disruption of the espF gene completely abolished high mortality rates in IL-22 knockout mice infected with Citrobacter rodentium.
- Deletion of espF rendered Citrobacter rodentium avirulent without affecting its colonization or proliferation.
- EspF was found to be essential for Citrobacter rodentium-induced disruption of tight junctions in the colonic epithelium.
Conclusions:
- The bacterial effector EspF plays a critical role in the severe pathogenesis of Citrobacter rodentium infection in immunocompromised hosts.
- EspF contributes to virulence by disrupting intestinal epithelial barrier function.
- Targeting EspF may offer a therapeutic strategy for managing A/E bacterial infections in vulnerable populations.
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