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Updated: Mar 27, 2026

Investigating Mast Cell Secretory Granules; from Biosynthesis to Exocytosis
Published on: January 26, 2015
Pasteurella multocida toxin: Targeting mast cell secretory granules during kiss-and-run secretion
Elisabeth M Danielsen1, Nina Christiansen1, E Michael Danielsen1
1Department of Cellular and Molecular Medicine, The Panum Institute, Faculty of Health Sciences, University of Copenhagen, Denmark.
Abstract:
Pasteurella multocida toxin (PMT), a virulence factor of the pathogenic Gram-negative bacterium P. multocida, is a 146 kDa protein belonging to the A-B class of toxins. Once inside a target cell, the A domain deamidates the α-subunit of heterotrimeric G-proteins, thereby activating downstream signaling cascades. However, little is known about how PMT selects and enters its cellular targets. We therefore studied PMT binding and uptake in porcine cultured intestinal mucosal explants to identify susceptible cells in the epithelium and underlying lamina propria. In comparison with Vibrio cholera B-subunit, a well-known enterotoxin taken up by receptor-mediated endocytosis, PMT binding to the epithelial brush border was scarce, and no uptake into enterocytes was detected by 2h, implying that none of the glycolipids in the brush border are a functional receptor for PMT. However, in the lamina propria, PMT distinctly accumulated in the secretory granules of mast cells. This also occurred at 4 °C, ruling out endocytosis, but suggestive of uptake via pores that connect the granules to the cell surface. Mast cell granules are known to secrete their contents by a "kiss-and-run" mechanism, and we propose that PMT may exploit this secretory mechanism to gain entry into this particular cell type.
Insights
Pasteurella multocida toxin (PMT) enters intestinal cells differently than expected. Instead of binding to enterocytes, PMT accumulates in mast cell granules, suggesting a novel entry mechanism.
Area of Science:
- Microbiology
- Cell Biology
- Toxicology
Background:
- Pasteurella multocida toxin (PMT) is a key virulence factor from P. multocida.
- PMT activates host cell signaling by modifying G-proteins.
- The cellular targets and entry mechanisms of PMT remain largely unknown.
Purpose of the Study:
- To investigate the cellular targets and uptake mechanisms of PMT in porcine intestinal mucosa.
- To compare PMT's cellular interactions with those of Vibrio cholera B-subunit.
Main Methods:
- Utilized porcine cultured intestinal mucosal explants.
- Examined PMT binding and uptake in epithelial and lamina propria cells.
- Assessed PMT interaction at 4°C to differentiate between endocytosis and other mechanisms.
Main Results:
- PMT showed minimal binding to the intestinal epithelial brush border.
- No significant uptake of PMT into enterocytes was observed within 2 hours.
- PMT distinctly accumulated in the secretory granules of lamina propria mast cells, even at 4°C.
Conclusions:
- Glycolipids in the brush border are unlikely to be functional receptors for PMT.
- PMT uptake does not appear to involve classical receptor-mediated endocytosis in enterocytes.
- PMT may exploit the "kiss-and-run" secretory pathway of mast cells for cellular entry.
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