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The Citrobacter rodentium Mouse Model: Studying Pathogen and Host Contributions to Infectious Colitis
Published on: February 19, 2013
Distinct Molecular Features of NleG Type 3 Secreted Effectors Allow for Different Roles during Citrobacter rodentium
Georgy Popov1, Aline Fiebig-Comyn2,3, Lukas Syriste1
1Department of Microbiology, Immunology and Infectious Diseases, University of Calgary, Calgary, Alberta, Canada.
Abstract:
The NleGs are the largest family of type 3 secreted effectors in attaching and effacing (A/E) pathogens, such as enterohemorrhagic Escherichia coli (EHEC), enteropathogenic E. coli, and Citrobacter rodentium. NleG effectors contain a conserved C-terminal U-box domain acting as a ubiquitin protein ligase and target host proteins via a variable N-terminal portion. The specific roles of these effectors during infection remain uncertain. Here, we demonstrate that the three NleG effectors-NleG1Cr, NleG7Cr, and NleG8Cr-encoded by C. rodentium DBS100 play distinct roles during infection in mice. Using individual nleG knockout strains, we show that NleG7Cr contributes to bacterial survival during enteric infection while NleG1Cr promotes the expression of diarrheal symptoms and NleG8Cr contributes to accelerated lethality in susceptible mice. Furthermore, the NleG8Cr effector contains a C-terminal PDZ domain binding motif that enables interaction with the host protein GOPC. Both the PDZ domain binding motif and the ability to engage with host ubiquitination machinery via the intact U-box domain proved to be necessary for NleG8Cr function, contributing to the observed phenotype during infection. We also establish that the PTZ binding motif in the EHEC NleG8 (NleG8Ec) effector, which shares 60% identity with NleG8Cr, is engaged in interactions with human GOPC. The crystal structure of the NleG8Ec C-terminal peptide in complex with the GOPC PDZ domain, determined to 1.85 Å, revealed a conserved interaction mode similar to that observed between GOPC and eukaryotic PDZ domain binding motifs. Despite these common features, nleG8 does not complement the ΔnleG8 phenotype during infection, revealing functional diversification between these NleG effectors.
Insights
Citrobacter rodentium NleG effectors have distinct roles in mouse infections. NleG7 aids survival, NleG1 causes diarrhea, and NleG8 accelerates lethality by interacting with host protein GOPC.
Area of Science:
- Microbiology
- Molecular Biology
- Pathogen-Host Interactions
Background:
- NleGs are a large family of type 3 secreted effectors in attaching and effacing (A/E) pathogens.
- These effectors possess a U-box domain for ligase activity and a variable N-terminal region for host targeting.
- The precise functions of NleG effectors during infection are not fully understood.
Purpose of the Study:
- To investigate the distinct roles of three NleG effectors (NleG1Cr, NleG7Cr, NleG8Cr) from Citrobacter rodentium during mouse infection.
- To elucidate the molecular mechanisms underlying the function of NleG8Cr, including its interaction with host proteins.
Main Methods:
- Generation and analysis of individual nleG knockout strains in C. rodentium.
- Biochemical and structural studies, including crystal structure determination of NleG8Ec peptide complexed with GOPC PDZ domain.
- In vivo infection models in mice to assess bacterial survival, symptom development, and lethality.
Main Results:
- NleG7Cr enhances bacterial survival, NleG1Cr promotes diarrhea, and NleG8Cr contributes to accelerated lethality.
- NleG8Cr interacts with host protein GOPC via a C-terminal PDZ domain binding motif.
- Both the PDZ binding motif and the U-box domain are crucial for NleG8Cr function.
- NleG8Ec also interacts with human GOPC, with a conserved binding mode.
Conclusions:
- C. rodentium NleG effectors exhibit functional diversification in host infection.
- NleG8Cr utilizes a PDZ domain binding motif to interact with GOPC, contributing to its virulence.
- Despite conserved interaction motifs, NleG8 effectors from different strains show functional divergence.

