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.

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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