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Published on: January 19, 2024
The human transmembrane mucin MUC17 responds to TNFα by increased presentation at the plasma membrane
Hannah Schneider1, Evelin Berger1, Brendan Dolan1
1Department of Medical Biochemistry, University of Gothenburg, SE-405 30 Gothenburg, Sweden.
Abstract:
Transmembrane mucin MUC17 is an integral part of the glycocalyx as it covers the brush border membrane of small intestinal enterocytes and presents an extended O-glycosylated mucin domain to the intestinal lumen. Here, we identified two unknown phosphorylated serine residues, S4428 and S4492, in the cytoplasmic tail of human MUC17. We have previously demonstrated that MUC17 is anchored to the apical membrane domain via an interaction with the scaffolding protein PDZK1. S4492, localized in the C-terminal PDZ binding motif of MUC17, was mutated to generate phosphomimetic and phosphodeficient variants of MUC17. Using Caco-2 cells as a model system, we found that induction of an inflammatory state by long-term stimulation with the proinflammatory cytokine TNFα resulted in an increase of MUC17 protein levels and enhanced insertion of MUC17 and its two phospho-variants into apical membranes. Up-regulation and apical insertion of MUC17 was followed by shedding of MUC17-containing vesicles. Transmembrane mucins have previously been shown to play a role in the prevention of bacterial colonization by acting as sheddable decoys for encroaching bacteria. Overexpression and increased presentation at the plasma membrane of wild-type MUC17 and its phosphodeficient variant MUC17 S-4492A protected Caco-2 cells against adhesion of enteropathogenic Escherichia coli, indicating that C-terminal phosphorylation of MUC17 may play a functional role in epithelial cell protection. We propose a new function for MUC17 in inflammation, where MUC17 acts as a second line of defense by preventing attachment of bacteria to the epithelial cell glycocalyx in the small intestine.
Insights
Mucin MUC17, crucial for the small intestine
Area of Science:
- Cell biology
- Gastroenterology
- Immunology
Background:
- MUC17 is a transmembrane mucin on small intestinal enterocytes.
- It forms part of the protective glycocalyx.
- Its cytoplasmic tail interacts with PDZK1.
Purpose of the Study:
- To investigate the role of MUC17 phosphorylation in inflammation and epithelial protection.
- To identify novel phosphorylation sites in MUC17.
- To explore MUC17's function against bacterial adhesion.
Main Methods:
- Identification of phosphorylated serine residues (S4428, S4492) in MUC17.
- Site-directed mutagenesis to create phosphomimetic and phosphodeficient MUC17 variants.
- Caco-2 cell culture and stimulation with TNFα to model inflammation.
- Analysis of MUC17 protein levels, apical insertion, and vesicle shedding.
- Assessment of enteropathogenic Escherichia coli adhesion to MUC17-expressing cells.
Main Results:
- TNFα stimulation increased MUC17 protein levels and apical membrane insertion.
- MUC17 shedding via vesicles was observed post-up-regulation.
- Overexpression of wild-type and phosphodeficient MUC17 (S4492A) protected cells against E. coli adhesion.
- C-terminal phosphorylation of MUC17 appears crucial for epithelial cell protection.
Conclusions:
- MUC17 plays a role in the inflammatory response.
- MUC17 acts as a second line of defense against bacterial attachment.
- Phosphorylation at S4492 may regulate MUC17's protective function.
- MUC17 contributes to maintaining intestinal barrier integrity during inflammation.
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