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Snail and Slug Promote Epithelial-Mesenchymal Transition through β-Catenin–T-Cell Factor-4-dependent Expression of Transforming Growth Factor-β3

Molecular Biology of the Cell · 2008 · Vol. 19(11) · pp. 4875–4887
Damian MediciElizabeth D. HayBjørn R. Olsen

Abstract

Members of the Snail family of transcription factors have been shown to induce epithelial-mesenchymal transition (EMT), a fundamental mechanism of embryogenesis and progressive disease. Here, we show that Snail and Slug promote formation of beta-catenin-T-cell factor (TCF)-4 transcription complexes that bind to the promoter of the TGF-beta3 gene to increase its transcription. Subsequent transforming growth factor (TGF)-beta3 signaling increases LEF-1 gene expression causing formation of beta-catenin-lymphoid enhancer factor (LEF)-1 complexes that initiate EMT. TGF-beta1 or TGF-beta2 stimulates this signaling mechanism by up-regulating synthesis of Snail and Slug. TGF-beta1- and TGF-beta2-induced EMT were found to be TGF-beta3 dependent, establishing essential roles for multiple TGF-beta isoforms. Finally, we determined that beta-catenin-LEF-1 complexes can promote EMT without upstream signaling pathways. These findings provide evidence for a unified signaling mechanism driven by convergence of multiple TGF-beta and TCF signaling molecules that confers loss of cell-cell adhesion and acquisition of the mesenchymal phenotype.

Cancer Cells and MetastasisRenal and related cancersNeonatal Respiratory Health ResearchBiologySlugTranscription factorEpithelial–mesenchymal transitionCell biologyTransforming growth factorEnhancerSignal transductionSnailTransforming growth factor beta

MeSH terms

Snail Family Transcription FactorsAnimalsCell LineDogsEpitheliumHumansMesodermTranscription FactorsTranscription, GeneticSignal TransductionUp-Regulationbeta CateninTCF Transcription FactorsLymphoid Enhancer-Binding Factor 1Transforming Growth Factor beta1

Funding

  • Harvard School of Dental Medicine
  • National Institutes of Health
Citations
489
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