Discoidin Domain Receptor 2 orchestrates melanoma resistance combining phenotype switching and proliferation

Archive ouverte

Sala, Margaux | Allain, Nathalie | Moreau, Mélanie | Jabouille, Arnaud | Henriet, Elodie | Abou-Hammoud, Aya | Uguen, Arnaud | Di-Tommaso, Sylvaine | Dourthe, Cyril | Raymond, Anne-Aurélie | Dupuy, Jean-William | Gerard, Emilie | Dugot-Senant, Nathalie | Rousseau, Benoit | Merlio, Jean-Phillipe | Pham-Ledart, Anne | Vergier, Béatrice | Tartare-Deckert, Sophie | Moreau, Violaine | Saltel, Frédéric

Edité par CCSD ; Nature Publishing Group [1987-....] -

International audience. Combined therapy with anti-BRAF plus anti-MEK is currently used as first-line treatment of patients with metastatic melanomas harboring the somatic BRAF V600E mutation. However, the main issue with targeted therapy is the acquisition of tumor cell resistance. In a majority of resistant melanoma cells, the resistant process consists in epithelial-to-mesenchymal transition (EMT). This process called phenotype switching makes melanoma cells more invasive. Its signature is characterized by MITF low, AXL high, and actin cytoskeleton reorganization through RhoA activation. In parallel of this phenotype switching phase, the resistant cells exhibit an anarchic cell proliferation due to hyper-activation of the MAP kinase pathway. We show that a majority of human melanoma overexpress discoidin domain receptor 2 (DDR2) after treatment. The same result was found in resistant cell lines presenting phenotype switching compared to the corresponding sensitive cell lines. We demonstrate that DDR2 inhibition induces a decrease in AXL expression and reduces stress fiber formation in resistant melanoma cell lines. In this phenotype switching context, we report that DDR2 control cell and tumor proliferation through the MAP kinase pathway in resistant cells in vitro and in vivo. Therefore, inhibition of DDR2 could be a new and promising strategy for countering this resistance mechanism.

Consulter en ligne

Suggestions

Du même auteur

Src promotes tumor cell invasion by hijacking the translation machinery

Archive ouverte | Bonnard, Benjamin | CCSD

International audience. Abstract The Src oncogene controls cancer cell invasiveness by promoting invadosome formation and extracellular matrix degradation (ECM). Invadosomes are enriched in the eukaryotic translatio...

Combining laser capture microdissection and proteomics reveals an active translation machinery controlling invadosome formation

Archive ouverte | Ezzoukhry, Zakaria | CCSD

Invadosomes are F-actin-based structures involved in extracellular matrix degradation, cell invasion, and metastasis formation. Analyzing their proteome is crucial to decipher their molecular composition, to understand their mecha...

The Proteome of Antibody-Mediated Rejection: From Glomerulitis to Transplant Glomerulopathy

Archive ouverte | Chauveau, Bertrand | CCSD

International audience. Antibody-mediated rejection (ABMR) is the leading cause of allograft failure in kidney transplantation. Its histological hallmark is represented by lesions of glomerulitis i.e., inflammatory ...

Chargement des enrichissements...