Relationship between pathogenic E.coli O78-induced intestinal epithelial barrier damage and Zonulin expression levels

Xiaoli Ren1, Bin Shi1,2, Zhenyu Chang1

  • 1Key Laboratory of Clinical Veterinary Medicine, Tibet Agriculture and Animal Husbandry University, Linzhi, China.

Insights

Yak intestinal damage from E. coli infection is linked to Zonulin. Increased Zonulin disrupts intestinal barrier function, leading to higher bacterial translocation and permeability, impacting yak health.

Area of Science:

  • Veterinary Medicine
  • Microbiology
  • Cell Biology

Background:

  • Yak colibacillosis can cause intestinal damage.
  • The role of Zonulin in this process is not fully understood.

Purpose of the Study:

  • To investigate if pathogenic bacteria regulate Zonulin expression, contributing to intestinal damage in yak colibacillosis.
  • To elucidate the mechanism by which Zonulin affects intestinal barrier function.

Main Methods:

  • Constructed Zonulin gene overexpression and interference yak intestinal epithelial cell lines.
  • Exposed cell lines to E. coli O78 and measured trans-epithelial electrical resistance (TEER).
  • Assessed intestinal permeability using FD4 fluorescence and bacterial translocation via CFU counting.
  • Quantified mRNA levels of epithelial mucins (MUC1, MUC2) and tight junction proteins (FABP2, Occludin, ZO-1) using qRT-PCR.

Main Results:

  • Zonulin overexpression and interference cell lines showed decreased TEER values after E. coli O78 exposure.
  • FD4 permeability and bacterial translocation were significantly higher in Zonulin-overexpressing cells compared to controls.
  • E. coli O78 exposure led to decreased MUC2, Occludin, and ZO-1 mRNA levels and increased FABP2 mRNA in Zonulin-overexpressing cells.

Conclusions:

  • Pathogenic bacteria stimulate epithelial cells to secrete Zonulin.
  • Zonulin disrupts tight junctions, reduces barrier resistance, and increases intestinal permeability and bacterial translocation.
  • These findings highlight Zonulin's critical role in yak intestinal damage during colibacillosis.