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Different Munc18 proteins mediate baseline and stimulated airway mucin secretion
Ana M. Jaramillo, Lucia Piccotti, Walter V. Velasco, Anna Sofia Huerta Delgado, Zoulikha Azzegagh, Felicity Chung, Usman Nazeer, Junaid Farooq, Josh Brenner, Jan Parker-Thornburg, Brenton L. Scott, Christopher M. Evans, Roberto Adachi, Alan R. Burns, Silvia M. Kreda, Michael J. Tuvim, Burton F. Dickey
Ana M. Jaramillo, Lucia Piccotti, Walter V. Velasco, Anna Sofia Huerta Delgado, Zoulikha Azzegagh, Felicity Chung, Usman Nazeer, Junaid Farooq, Josh Brenner, Jan Parker-Thornburg, Brenton L. Scott, Christopher M. Evans, Roberto Adachi, Alan R. Burns, Silvia M. Kreda, Michael J. Tuvim, Burton F. Dickey
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Research Article Cell biology Pulmonology

Different Munc18 proteins mediate baseline and stimulated airway mucin secretion

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Abstract

Airway mucin secretion is necessary for ciliary clearance of inhaled particles and pathogens but can be detrimental in pathologies such as asthma and cystic fibrosis. Exocytosis in mammals requires a Munc18 scaffolding protein, and airway secretory cells express all 3 Munc18 isoforms. Using conditional airway epithelial cell–deletant mice, we found that Munc18a has the major role in baseline mucin secretion, Munc18b has the major role in stimulated mucin secretion, and Munc18c does not function in mucin secretion. In an allergic asthma model, Munc18b deletion reduced airway mucus occlusion and airflow resistance. In a cystic fibrosis model, Munc18b deletion reduced airway mucus occlusion and emphysema. Munc18b deficiency in the airway epithelium did not result in any abnormalities of lung structure, particle clearance, inflammation, or bacterial infection. Our results show that regulated secretion in a polarized epithelial cell may involve more than one exocytic machine at the apical plasma membrane and that the protective roles of mucin secretion can be preserved while therapeutically targeting its pathologic roles.

Authors

Ana M. Jaramillo, Lucia Piccotti, Walter V. Velasco, Anna Sofia Huerta Delgado, Zoulikha Azzegagh, Felicity Chung, Usman Nazeer, Junaid Farooq, Josh Brenner, Jan Parker-Thornburg, Brenton L. Scott, Christopher M. Evans, Roberto Adachi, Alan R. Burns, Silvia M. Kreda, Michael J. Tuvim, Burton F. Dickey

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Figure 3

Stimulated mucin secretion measured by residual intracellular mucin content.

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Stimulated mucin secretion measured by residual intracellular mucin cont...
(A) High-magnification views of representative fields of PAFS-stained bronchial airways from mice sensitized and challenged with OVA to increase mucin production (OVA+/ATP-, top row), then exposed to aerosolized 100 mM ATP to stimulate mucin secretion (OVA+/ATP+, bottom row). Scale bar: 20 μm. (B) Quantification of the volume density (expressed as nl mucin per mm2 basement membrane) of intracellular mucin in mice with or without ATP stimulation as in A (representative experiment of 3 separate experiments with all genotypes, n = 5–8 mice per group). 18a/bΔ/Δ (ATP-) versus WT (ATP-), P < 0.0001, versus 18aF/F (ATP-), P<0.0001, versus 18bF/F (ATP-), P < 0.0001, Tukey’s test. 18bΔ/Δ (ATP+) versus 18bF/F (ATP+), P < 0.0001; 18a/bΔ/Δ (ATP+) versus WT (ATP+), P < 0.0001, versus 18aF/F (ATP+), P = 0.0001, versus 18bF/F (ATP+), P < 0.0001, Student’s 2-tailed t test. (C) The percentage of mucin released for each genotype (3 independent experiments like those in B, combined). 18bΔ/Δ versus 18bF/F, P < 0.0001; 18a/bΔ/Δ versus WT, P = 0.001, versus 18aF/F, P < 0.0001, versus 18bF/F, P < 0.0001, Mann-Whitney test. *P < 0.05 versus floxed littermate; #P < 0.05 versus WT.

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