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Updated: May 18, 2026

Mucin Agarose Gel Electrophoresis: Western Blotting for High-molecular-weight Glycoproteins
Published on: June 14, 2016
Overexpressing mouse model demonstrates the protective role of Muc5ac in the lungs
Camille Ehre1, Erin N Worthington, Rachael M Liesman
1Cystic Fibrosis/Pulmonary Research and Treatment Center, University of North Carolina, Chapel Hill, NC 27599, USA. cehre@med.unc.edu
Abstract:
MUC5AC, a major gel-forming mucin expressed in the lungs, is secreted at increased rates in response to infectious agents, implying that mucins exert a protective role against inhaled pathogens. However, epidemiological and pathological studies suggest that excessive mucin secretion causes airways obstruction and inflammation. To determine whether increased MUC5AC secretion alone produces airway obstruction and/or inflammation, we generated a mouse model overexpressing Muc5ac mRNA ~20-fold in the lungs, using the rCCSP promoter. The Muc5ac cDNA was cloned from mouse lungs and tagged internally with GFP. Bronchoalveolar lavage fluid (BALF) analysis demonstrated an approximate 18-fold increase in Muc5ac protein, which formed high-molecular-weight polymers. Histopathological studies and cell counts revealed no airway mucus obstruction or inflammation in the lungs of Muc5ac-transgenic (Muc5ac-Tg) mice. Mucus clearance was preserved, implying that the excess Muc5ac secretion produced an "expanded" rather than more concentrated mucus layer, a prediction confirmed by electron microscopy. To test whether the larger mucus barrier conferred increased protection against pathogens, Muc5ac-Tg animals were challenged with PR8/H1N1 influenza viruses and showed significant decreases in infection and neutrophilic responses. Plaque assay experiments demonstrated that Muc5ac-Tg BALF and purified Muc5ac reduced infection, likely via binding to α2,3-linked sialic acids, consistent with influenza protection in vivo. In conclusion, the normal mucus transport and absence of a pulmonary phenotype in Muc5ac-Tg mice suggests that mucin hypersecretion alone is not sufficient to trigger luminal mucus plugging or airways inflammation/goblet cell hyperplasia. In contrast, increased Muc5ac secretion appears to exhibit a protective role against influenza infection.
Insights
Increased MUC5AC mucin secretion in mice did not cause airway obstruction or inflammation. However, this enhanced mucus barrier provided significant protection against influenza virus infection.
Area of Science:
- Pulmonary Medicine
- Immunology
- Molecular Biology
Background:
- Mucin hypersecretion is linked to airway obstruction and inflammation.
- Mucins play a role in defense against inhaled pathogens.
Purpose of the Study:
- To investigate if elevated MUC5AC mucin secretion alone causes airway obstruction or inflammation.
- To determine the protective role of increased MUC5AC against influenza infection.
Main Methods:
- Generated a mouse model overexpressing Muc5ac mRNA using the rCCSP promoter.
- Analyzed bronchoalveolar lavage fluid (BALF) for Muc5ac protein levels and mucus properties.
- Performed histopathological analysis and challenged mice with influenza virus.
Main Results:
- Muc5ac-transgenic mice showed a ~18-fold increase in Muc5ac protein without airway obstruction or inflammation.
- Excess mucin formed an expanded mucus layer, preserving mucus clearance.
- Transgenic mice exhibited reduced influenza infection and neutrophilic response.
Conclusions:
- MUC5AC hypersecretion alone does not induce airway obstruction or inflammation.
- Increased MUC5AC secretion enhances protection against influenza infection, likely by binding to sialic acids.

