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NOD2 is dispensable for ATG16L1 deficiency-mediated resistance to urinary tract infection
Caihong Wang1, Xuejun Yuan1, Emily Ma1
1Department of Obstetrics and Gynecology; Washington University School of Medicine; St Louis, MO USA.
Abstract:
NOD2 (nucleotide-binding oligomerization domain containing 2) functions as a pathogen sensor and is involved in development of Crohn disease, a form of inflammatory bowel disease. NOD2 functions in concert with the autophagy protein ATG16L1, which is also implicated in Crohn disease. Recently, we identified a novel protective role of ATG16L1 deficiency in uropathogenic Escherichia coli-induced urinary tract infections (UTIs), which are common infectious diseases in humans. Given the known roles of NOD2 in recruiting ATG16L1 to the bacterial entry site, autophagy induction, and Crohn disease, we hypothesized that NOD2 may also play an important role in UTI pathogenesis. Instead, we found evidence that NOD2 is dispensable in the pathogenesis of UTIs in mice and humans. First, loss of Nod2 did not affect the clearance of bacteriuria and the recruitment of innate immune cells to the bladder. Second, we showed that, although nod2(-/-) mice display increased kidney abscesses in the upper urinary tract, there were no increased bacterial loads or persistence in this niche. Third, although a previous study indicates that loss of Nod2 reverses the protection from intestinal infection afforded by loss of ATG16L1 in mice, we found NOD2 deficiency did not reverse the ATG16L1-deficiency-induced protection from UTI. Finally, a population-based study of a cohort of 1819 patients did not reveal any association of NOD2 polymorphisms with UTI incidence. Together, our data indicated that NOD2 is dispensable for UTI pathogenesis in both mice and humans and does not contribute to ATG16L1-deficiency-induced resistance to UTI in mice.
Insights
Nucleotide-binding oligomerization domain containing 2 (NOD2) is not essential for urinary tract infection (UTI) development in mice or humans. NOD2 deficiency does not impact bacterial clearance or immune cell response during UTIs.
Area of Science:
- Immunology
- Microbiology
- Genetics
Background:
- Nucleotide-binding oligomerization domain containing 2 (NOD2) is a pathogen sensor linked to Crohn disease.
- NOD2 interacts with ATG16L1, another protein implicated in Crohn disease.
- ATG16L1 deficiency shows a protective role in urinary tract infections (UTIs).
Purpose of the Study:
- To investigate the role of NOD2 in the pathogenesis of uropathogenic Escherichia coli-induced UTIs.
- To determine if NOD2 influences the protective effect of ATG16L1 deficiency against UTIs.
Main Methods:
- Utilized mouse models with Nod2 deficiency (nod2(-/-)) to assess UTI outcomes.
- Analyzed bacteriuria clearance, immune cell recruitment, and kidney abscess formation.
- Conducted a population-based study of 1819 patients to examine NOD2 polymorphisms and UTI incidence.
Main Results:
- NOD2 deficiency did not affect bacteriuria clearance or innate immune cell recruitment to the bladder.
- While nod2(-/-) mice showed more kidney abscesses, bacterial loads were not increased.
- NOD2 deficiency did not reverse the protection conferred by ATG16L1 deficiency against UTIs.
- No association was found between NOD2 polymorphisms and UTI incidence in the patient cohort.
Conclusions:
- NOD2 is dispensable for UTI pathogenesis in both murine models and humans.
- NOD2 does not play a significant role in the host's defense against UTIs.
- The findings suggest NOD2 is not a key factor in ATG16L1-deficiency-induced resistance to UTIs.
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