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Publication : Role of Snai2 and Notch signaling in salivary gland myoepithelial cell fate.

First Author  Yasuhara R Year  2022
Journal  Lab Invest Volume  102
Issue  11 Pages  1245-1256
PubMed ID  35810235 Mgi Jnum  J:347055
Mgi Id  MGI:7520723 Doi  10.1038/s41374-022-00814-7
Citation  Yasuhara R, et al. (2022) Role of Snai2 and Notch signaling in salivary gland myoepithelial cell fate. Lab Invest 102(11):1245-1256
abstractText  Myoepithelial (ME) cells in exocrine glands exhibit both epithelial and mesenchymal features, contributing to fluid secretion through contraction. However, the regulation mechanism of behind this unique phenotype in salivary glands remains unclear. We established a flow cytometry-based purification method using cell surface molecules, epithelial cell adhesion molecule (EpCAM) and alpha 6 integrin (CD49f), to characterize ME cells. EpCAM(+)CD49f(high) cells showed relatively high expression of ME cell-marker genes, such as alpha-smooth muscle actin (alpha-SMA). For lineage tracing and strict isolation, tdTomato(+)EpCAM(+)CD49f(high)-ME cells were obtained from myosin heavy chain 11 (Myh11) -CreER(T2)/tdTomato mice. Transcriptome analysis revealed that expression of genes involved in the epithelial-mesenchymal transition, including Snai2, were upregulated in the ME cell-enriched subset. Snai2 suppression in stable ME cells decreased alpha-SMA and increased Krt14 expression, suggesting that ME cell features may be controlled by the epithelial-mesenchymal balance regulated by Snai2. In contrast, ME cells showed reduced ME properties and expressed the ductal markers Krt18/19 under sphere culture conditions. Notch signaling was activated under sphere culture conditions; excessive activation of Notch signaling accelerated Krt18/19 expression, but reduced alpha-SMA and Snai2 expression, suggesting that the behavior of Snai2-expressing ME cells may be controlled by Notch signaling.
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