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Int J Mol Sci ; 21(8)2020 Apr 23.
Article de Anglais | MEDLINE | ID: mdl-32340328

RÉSUMÉ

Alterations in the composition and architecture of the extracellular matrix (ECM) can influence cancer growth and dissemination. During epithelial-mesenchymal transition (EMT), epithelial cells assume a mesenchymal cell phenotype, changing their adhesion profiles from cell-cell contacts to cell-matrix interactions, contributing to metastasis. Breast cancer cells present at different stages of differentiation, producing distinct ECMs in the same tumor mass. However, the contribution of ECM derived from metastatic tumor cells to EMT is unclear. Here, we showed the mechanisms involved in the interaction of MCF-7, a low-metastatic, epithelial breast cancer cell line, with the ECM produced by a high metastatic breast tumor cell, MDA-MB-231 (MDA-ECM). MDA-ECM induced morphological changes in MCF-7 cells, decreased the levels of E-cadherin, up-regulated mesenchymal markers, and augmented cell migration. These changes were accompanied by the activation of integrin-associated signaling, with increased phosphorylation of FAK, ERK, and AKT and activation canonical TGF-ß receptor signaling, enhancing phosphorylation of SMAD2 and SMAD4 nuclear translocation in MCF-7 cells. Treatment with Kistrin (Kr), a specific ligand of integrin αvß3 EMT induced by MDA-ECM, inhibited TGF-ß receptor signaling in treated MCF-7 cells. Our results revealed that after interaction with the ECM produced by a high metastatic breast cancer cell, MCF-7 cells lost their characteristic epithelial phenotype undergoing EMT, an effect modulated by integrin signaling in crosstalk with TGF-ß receptor signaling pathway. The data evidenced novel potential targets for antimetastatic breast cancer therapies.


Sujet(s)
Tumeurs du sein/métabolisme , Tumeurs du sein/anatomopathologie , Transition épithélio-mésenchymateuse , Matrice extracellulaire/métabolisme , Intégrine alphaVbêta3/métabolisme , Tumeurs du sein/génétique , Lignée cellulaire tumorale , Mouvement cellulaire , Prolifération cellulaire , Transition épithélio-mésenchymateuse/génétique , Femelle , Humains , Intégrine alphaVbêta3/génétique , Liaison aux protéines , Transduction du signal , Facteur de croissance transformant bêta/métabolisme
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