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Updated: May 5, 2026

A Novel Human Epithelial Enteroid Model of Necrotizing Enterocolitis
Published on: April 10, 2019
NLRC4 expression in intestinal epithelial cells mediates protection against an enteric pathogen
S Nordlander1, J Pott1, K J Maloy1
1Sir William Dunn School of Pathology, University of Oxford, Oxford, UK.
Abstract:
The inflammasomes have an important role in connecting the detection of endogenous and microbial danger signals to caspase-1 activation and induction of protective immune responses. NLRC4 is a cytosolic NOD (nucleotide binding and oligomerization domain)-like receptor (NLR) that can trigger inflammasome formation in response to bacterial flagellin, an immunodominant antigen in the intestine. To characterize the role of NLRC4 in bacterially triggered intestinal inflammation, we used the murine pathogen Citrobacter rodentium, an extracellular, attaching/effacing bacterium similar to enterohemorrhagic Escherichia coli and enteropathogenic E. coli. Following infection with C. rodentium, we found that Nlrc4(-/-) mice developed more severe weight loss, increased bacterial colonization levels, and exacerbated intestinal inflammation compared with wild-type counterparts. Nlrc4(-/-) mice mounted robust adaptive immune responses but were unable to control early colonization by C. rodentium, suggesting that a defect in innate immunity was responsible. Experiments using bone marrow (BM) chimeras revealed that the protective effects of NLRC4 were dependent on its expression in non-hematopoietic cells, and quantitative PCR (Q-PCR) analyses revealed that NLRC4 was highly expressed in epithelial crypts but not in intestinal stroma. Thus, early NLRC4 sensing in intestinal epithelial cells regulates colonization by an extracellular bacterial pathogen and limits subsequent intestinal damage.
Insights
NLRC4 inflammasome sensing in intestinal epithelial cells is crucial for controlling bacterial infections and limiting inflammation. Its absence exacerbates disease, highlighting its role in innate immunity.
Area of Science:
- Immunology
- Microbiology
- Gastroenterology
Background:
- Inflammasomes link danger signal detection to immune responses.
- NLRC4 (NOD-like receptor family CARD domain-containing protein 4) is a cytosolic receptor sensing bacterial flagellin.
- NLRC4 activation triggers inflammasome formation and caspase-1 activation.
Purpose of the Study:
- To investigate the role of NLRC4 in intestinal inflammation triggered by bacterial infection.
- To understand how NLRC4 influences the control of Citrobacter rodentium colonization and subsequent pathology.
Main Methods:
- Used the murine pathogen Citrobacter rodentium model.
- Compared Nlrc4(-/-) mice with wild-type counterparts.
- Employed bone marrow chimeras and quantitative PCR (Q-PCR) for cellular localization studies.
Main Results:
- Nlrc4(-/-) mice showed increased weight loss, bacterial colonization, and intestinal inflammation.
- NLRC4 deficiency impaired early control of C. rodentium despite robust adaptive immunity.
- NLRC4 expression in non-hematopoietic cells, particularly intestinal epithelial cells, was critical for protection.
Conclusions:
- NLRC4 sensing in intestinal epithelial cells is essential for regulating colonization by extracellular bacteria.
- Early NLRC4 activation limits bacterial pathogen burden and reduces intestinal damage.
- NLRC4 plays a vital role in innate immune defense against intestinal bacterial infections.
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