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TGF-β1 induces human alveolar epithelial to mesenchymal cell transition (EMT)

Kasai H, Allen J, Mason R +2 more2005Respiratory ResearchJournal Article
10.1186/1465-9921-6-56PubMedFree full text
Respiratory/Sinus

Abstract

Abstract Background Fibroblastic foci are characteristic features in lung parenchyma of patients with idiopathic pulmonary fibrosis (IPF). They comprise aggregates of mesenchymal cells which underlie sites of unresolved epithelial injury and are associated with progression of fibrosis. However, the cellular origins of these mesenchymal phenotypes remain unclear. We examined whether the potent fibrogenic cytokine TGF-β1 could induce epithelial mesenchymal transition (EMT) in the human alveolar epithelial cell line, A549, and investigated the signaling pathway of TGF-β1-mediated EMT. Methods A549 cells were examined for evidence of EMT after treatment with TGF-β1. EMT was assessed by: morphology under phase-contrast microscopy; Western analysis of cell lysates for expression of mesenchymal phenotypic markers including fibronectin EDA (Fn-EDA), and expression of epithelial phenotypic markers including E-cadherin (E-cad). Markers of fibrogenesis, including collagens and connective tissue growth factor (CTGF) were also evaluated by measuring mRNA level using RT-PCR, and protein by immunofluorescence or Western blotting. Signaling pathways for EMT were characterized by Western analysis of cell lysates using monoclonal antibodies to detect phosphorylated Erk1/2 and Smad2 after TGF-β1 treatment in the presence or absence of MEK inhibitors. The role of Smad2 in TGF-β1-mediated EMT was investigated using siRNA. Results The data showed that TGF-β1, but not TNF-α or IL-1β, induced A549 cells with an alveolar epithelial type II cell phenotype to undergo EMT in a time-and concentration-dependent manner. The process of EMT was accompanied by morphological alteration and expression of the fibroblast phenotypic markers Fn-EDA and vimentin, concomitant with a downregulation of the epithelial phenotype marker E-cad. Furthermore, cells that had undergone EMT showed enhanced expression of markers of fibrogenesis including collagens type I and III and CTGF. MMP-2 expression was also evidenced. TGF-β1-induced EMT occurred through phosphorylation of Smad2 and was inhibited by Smad2 gene silencing; MEK inhibitors failed to attenuate either EMT-associated Smad2 phosphorylation or the observed phenotypic changes. Conclusion Our study shows that TGF-β1 induces A549 alveolar epithelial cells to undergo EMT via Smad2 activation. Our data support the concept of EMT in lung epithelial cells, and suggest the need for further studies to investigate the phenomenon.

Key Biomarkers

Collagen Type ICollagen Type IIICTGFE-cadherinERK1/2Fibronectin EDAMMP-2Smad2TGF-β1Vimentin

Symptom Clusters

Epithelial-mesenchymal transitionFibroblastic foci formationPulmonary fibrosis

Cited By (5)

  • TGF-β-induced EMT: mechanisms and implications for fibrotic lung diseaseAmerican Journal of Physiology-Lung Cellular and Molecular Physiology · 2007
  • Induction of Epithelial–Mesenchymal Transition in Primary Airway Epithelial Cells from Patients with Asthma by Transforming Growth Factor-β1American Journal of Respiratory and Critical Care Medicine · 2009
  • Endothelial progenitor cells undergo an endothelial-to-mesenchymal transition-like process mediated by TGFβRICardiovascular Research · 2010
  • Epithelial origin of myofibroblasts during fibrosis in the lungProceedings of the American Thoracic Society · 2006
  • Exploring the role of granzyme B in subretinal fibrosis of age-related macular degenerationFrontiers in Immunology · 2024

References (4)

  • Re-evaluation of fibrogenic cytokines in lung fibrosisCurrent Pharmaceutical Design · 2003

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