MUC1 mediates Pneumocystis murina binding to airway epithelial cells
Yueqin Liu1, A Sally Davis2, Liang Ma1
1Critical Care Medicine Department, NIH Clinical Center, National Institutes of Health, Bethesda, Maryland.
Abstract:
Previous studies have shown that Pneumocystis binds to pneumocytes, but the proteins responsible for binding have not been well defined. Mucins are the major glycoproteins present in mucus, which serves as the first line of defence during airway infection. MUC1 is the best characterised membrane-tethered mucin and is expressed on the surface of most airway epithelial cells. Although by electron microscopy Pneumocystis primarily binds to type I pneumocytes, it can also bind to type II pneumocytes. We hypothesized that Pneumocystis organisms can bind to MUC1 expressed by type II pneumocytes. Overexpression of MUC1 in human embryonic kidney HEK293 cells increased Pneumocystis binding, while knockdown of MUC1 expression by siRNA in A549 cells, a human adenocarcinoma-derived alveolar type II epithelial cell line, decreased Pneumocystis binding. Immunofluorescence labelling indicated that MUC1 and Pneumocystis were co-localised in infected mouse lung tissue. Incubation of A549 cells with Pneumocystis led to phosphorylation of ERK1/2 that increased with knockdown of MUC1 expression by siRNA. Pneumocystis caused increased IL-6 and IL-8 secretion by A549 cells, and knockdown of MUC1 further increased their secretion in A549 cells. Taken together, these results suggest that binding of Pneumocystis to MUC1 expressed by airway epithelial cells may facilitate establishment of productive infection.
Insights
Pneumocystis binding to MUC1 on airway cells may aid infection. Reducing MUC1 lowers Pneumocystis attachment and alters inflammatory responses, suggesting MUC1
Area of Science:
- Pulmonary Medicine
- Cell Biology
- Immunology
Background:
- Pneumocystis pneumonia (PCP) is a serious opportunistic infection.
- The specific host cell proteins mediating Pneumocystis binding remain largely undefined.
- Mucins, like MUC1, are key glycoproteins in airway defense.
Purpose of the Study:
- To investigate the role of MUC1 in Pneumocystis binding to airway epithelial cells.
- To determine if MUC1 facilitates Pneumocystis infection establishment.
Main Methods:
- Overexpression and siRNA-mediated knockdown of MUC1 in cell lines (HEK293, A549).
- Assessing Pneumocystis binding to modified cells.
- Immunofluorescence staining in infected mouse lung tissue.
- Measuring ERK1/2 phosphorylation and IL-6/IL-8 secretion.
Main Results:
- MUC1 overexpression enhanced Pneumocystis binding; MUC1 knockdown decreased binding.
- MUC1 and Pneumocystis co-localization was observed in vivo.
- MUC1 knockdown altered Pneumocystis-induced ERK1/2 phosphorylation and pro-inflammatory cytokine secretion (IL-6, IL-8).
Conclusions:
- MUC1 expressed by airway epithelial cells is a key binding partner for Pneumocystis.
- MUC1 interaction may promote Pneumocystis infection establishment and modulate host inflammatory responses.
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