4.7 Article

A critical role for miR-142 in alveolar epithelial lineage formation in mouse lung development

Journal

CELLULAR AND MOLECULAR LIFE SCIENCES
Volume 76, Issue 14, Pages 2817-2832

Publisher

SPRINGER BASEL AG
DOI: 10.1007/s00018-019-03067-8

Keywords

Alveolar epithelium; microRNA-142; Lung; EP300; Beta-catenin

Funding

  1. Cardio Pulmonary Institute (CPI)
  2. University Hospital Giessen and Marburg (UKGM)
  3. German Center for Lung Research (DZL)
  4. Deutsche Forschungsgemeinschaft (DFG) [BE4443/1-1, BE4443/4-1, BE4443/6-1, BE4443/14-1, KFO309 P7, SFB1213]
  5. UKGM
  6. Deutsche Zentrum fur Lungenforschung (DZL)
  7. Wenzhou Medical University
  8. National Natural Science Foundation of China [81472601]
  9. University Hospital Giessen and Marburg (FOKOOPV)
  10. DFG [KFO309 P2/8, SFB1021 C05, SFB TR84 B2]
  11. Universities of Giessen and Marburg Lung Center (UGMLC)
  12. Interventional Pulmonary Key Laboratory of Zhejiang Province
  13. Interventional Pulmonology Key Laboratory of Wenzhou City
  14. Interventional Pulmonology Innovation Subject of Zhejiang Province
  15. National Nature Science Foundation of China [81570075, 81770074]
  16. Zhejiang Provincial Natural Science Foundation [LZ15H010001]
  17. Zhejiang Provincial Science Technology Department Foundation [2015103253]
  18. National Key Research and Development Program of China [2016YFC1304000]
  19. [ANR-18-CE92-0009-01]

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The respiratory epithelium arises from alveolar epithelial progenitors which differentiate into alveolar epithelial type 1 (AT1) and type 2 (AT2) cells. AT2 cells are stem cells in the lung critical for the repair process after injury. Mechanisms regulating AT1 and AT2 cell maturation are poorly defined. We report that the activation of the glucocorticoid pathway in an in vitro alveolar epithelial lineage differentiation assay led to increased AT2 marker Sftpc and decreased miR-142 expression. Using miR-142 KO mice, we demonstrate an increase in the AT2/AT1 cell number ratio. Overexpression of miR-142 in alveolar progenitor cells in vivo led to the opposite effect. Examination of the KO lungs at E18.5 revealed enhanced expression of miR-142 targets Apc, Ep300 and Kras associated with increased -catenin and p-Erk signaling. Silencing of miR-142 expression in lung explants grown in vitro triggers enhanced Sftpc expression as well as increased AT2/AT1 cell number ratio. Pharmacological inhibition of Ep300--catenin but not Erk in vitro prevented the increase in Sftpc expression triggered by loss of miR-142. These results suggest that the glucocorticoid-miR-142-Ep300--catenin signaling axis controls pneumocyte maturation.

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