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Updated: May 9, 2026

Three-dimensional Quantification of Intestinal Mucus Using Whole-mount Tissue Imaging
Published on: September 12, 2025
The mucin Muc2 limits pathogen burdens and epithelial barrier dysfunction during Salmonella enterica serovar
Maryam Zarepour1, Kirandeep Bhullar, Marinieve Montero
1Department of Pediatrics, Division of Gastroenterology, Child and Family Research Institute, Vancouver, British Columbia, Canada.
Abstract:
Salmonella enterica serovar Typhimurium is a model organism used to explore the virulence strategies underlying Salmonella pathogenesis. Although intestinal mucus is the first line of defense in the intestine, its role in protection against Salmonella is still unclear. The intestinal mucus layer is composed primarily of the Muc2 mucin, a heavily O-glycosylated glycoprotein. The core 3-derived O-glycans of Muc2 are synthesized by core 3 β1,3-N-acetylglucosaminyltransferase (C3GnT). Mice lacking these glycans still produce Muc2 but display a thinner intestinal mucus barrier. We began our investigations by comparing Salmonella-induced colitis and mucus dynamics in Muc2-deficient (Muc2(-/-)) mice, C3GnT(-/-) mice, and wild-type C57BL/6 (WT) mice. Salmonella infection led to increases in luminal Muc2 secretion in WT and C3GnT(-/-) mice. When Muc2(-/-) mice were infected with Salmonella, they showed dramatic susceptibility to infection, carrying significantly higher cecal and liver pathogen burdens, and developing significantly higher barrier disruption and higher mortality rates, than WT mice. We found that the exaggerated barrier disruption in infected Muc2(-/-) mice was invA dependent. We also tested the susceptibility of C3GnT(-/-) mice and found that they carried pathogen burdens similar to those of WT mice but developed exaggerated barrier disruption. Moreover, we found that Muc2(-/-) mice were impaired in intestinal alkaline phosphatase (IAP) expression and lipopolysaccharide (LPS) detoxification activity in their ceca, potentially explaining their high mortality rates during infection. Our data suggest that the intestinal mucus layer (Muc2) and core 3 O-glycosylation play critical roles in controlling Salmonella intestinal burdens and intestinal epithelial barrier function, respectively.
Insights
The intestinal mucus layer (Muc2) is crucial for controlling Salmonella burdens. Core 3 O-glycosylation of Muc2 is vital for maintaining intestinal epithelial barrier function during Salmonella infection.
Area of Science:
- Microbiology
- Immunology
- Gastroenterology
Background:
- Salmonella enterica serovar Typhimurium is a model for studying bacterial pathogenesis.
- The role of intestinal mucus, primarily Muc2 mucin, in Salmonella protection is not fully understood.
- Core 3 O-glycans, synthesized by C3GnT, are key components of Muc2.
Purpose of the Study:
- To investigate the roles of Muc2 and core 3 O-glycosylation in Salmonella pathogenesis.
- To compare Salmonella-induced colitis and mucus dynamics in wild-type, Muc2-deficient, and C3GnT-deficient mice.
Main Methods:
- Comparative analysis of Salmonella infection outcomes in Muc2(-/-), C3GnT(-/-), and WT mice.
- Assessment of pathogen burden, intestinal barrier disruption, and mortality rates.
- Evaluation of intestinal alkaline phosphatase (IAP) expression and lipopolysaccharide (LPS) detoxification.
Main Results:
- Muc2(-/-) mice exhibited significantly higher susceptibility, pathogen burdens, barrier disruption, and mortality.
- C3GnT(-/-) mice showed similar pathogen burdens to WT but exaggerated barrier disruption.
- Muc2(-/-) mice had impaired IAP expression and LPS detoxification.
Conclusions:
- The intestinal mucus layer (Muc2) is critical for controlling Salmonella intestinal burdens.
- Core 3 O-glycosylation plays a vital role in maintaining intestinal epithelial barrier function.
- Muc2 and its glycosylation are essential for host defense against Salmonella Typhimurium.
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