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Sialylation of MUC4? N-glycans by ST6GAL1 orchestrates human airway epithelial cell differentiation associated with type-2 inflammation.


ABSTRACT: Although type-2-induced (T2-induced) epithelial dysfunction is likely to profoundly alter epithelial differentiation and repair in asthma, the mechanisms for these effects are poorly understood. A role for specific mucins, heavily N-glycosylated epithelial glycoproteins, in orchestrating epithelial cell fate in response to T2 stimuli has not previously been investigated. Levels of a sialylated MUC4? isoform were found to be increased in airway specimens from asthmatic patients in association with T2 inflammation. We hypothesized that IL-13 would increase sialylation of MUC4?, thereby altering its function and that the ?-galactoside ?-2,6-sialyltransferase 1 (ST6GAL1) would regulate the sialylation. Using human biologic specimens and cultured primary human airway epithelial cells (HAECs),we demonstrated that IL-13 increases ST6GAL1-mediated sialylation of MUC4? and that both were increased in asthma, particularly in sputum supernatant and/or fresh isolated HAECs with elevated T2 biomarkers. ST6GAL1-induced sialylation of MUC4? altered its lectin binding and secretion. Both ST6GAL1 and MUC4? inhibited epithelial cell proliferation while promoting goblet cell differentiation. These in vivo and in vitro data provide strong evidence for a critical role for ST6GAL1-induced sialylation of MUC4? in epithelial dysfunction associated with T2-high asthma, thereby identifying specific sialylation pathways as potential targets in asthma.

SUBMITTER: Zhou X 

PROVIDER: S-EPMC6483602 | biostudies-literature | 2019 Mar

REPOSITORIES: biostudies-literature

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Sialylation of MUC4β N-glycans by ST6GAL1 orchestrates human airway epithelial cell differentiation associated with type-2 inflammation.

Zhou Xiuxia X   Kinlough Carol L CL   Hughey Rebecca P RP   Jin Mingzhu M   Inoue Hideki H   Etling Emily E   Modena Brian D BD   Kaminski Naftali N   Bleecker Eugene R ER   Meyers Deborah A DA   Jarjour Nizar N NN   Trudeau John B JB   Holguin Fernando F   Ray Anuradha A   Wenzel Sally E SE  

JCI insight 20190307 5


Although type-2-induced (T2-induced) epithelial dysfunction is likely to profoundly alter epithelial differentiation and repair in asthma, the mechanisms for these effects are poorly understood. A role for specific mucins, heavily N-glycosylated epithelial glycoproteins, in orchestrating epithelial cell fate in response to T2 stimuli has not previously been investigated. Levels of a sialylated MUC4β isoform were found to be increased in airway specimens from asthmatic patients in association wit  ...[more]

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