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Sox9 Controls Self-Renewal of Oncogene Targeted Cells and Links Tumor Initiation and Invasion.

Authors :
Larsimont, Jean-Christophe
Kass, Youssef Khalil
Sanchez Danes, Adriana
Sukumaran, Vijayakumar
Defrance, Matthieu
Delatte, Benjamin
Liagre, Mélanie
Baatsen, Pieter
Marine, Jean-Christophe
Lippens, Saskia
Guerin, Christopher
Del Marmol, Véronique
Vanderwinden, Jean-Marie
Fuks, François
Blanpain, Cédric
Larsimont, Jean-Christophe
Kass, Youssef Khalil
Sanchez Danes, Adriana
Sukumaran, Vijayakumar
Defrance, Matthieu
Delatte, Benjamin
Liagre, Mélanie
Baatsen, Pieter
Marine, Jean-Christophe
Lippens, Saskia
Guerin, Christopher
Del Marmol, Véronique
Vanderwinden, Jean-Marie
Fuks, François
Blanpain, Cédric
Source :
Cell stem cell, 17 (1
Publication Year :
2015

Abstract

Sox9 is a transcription factor expressed in most solid tumors. However, the molecular mechanisms underlying Sox9 function during tumorigenesis remain unclear. Here, using a genetic mouse model of basal cell carcinoma (BCC), the most frequent cancer in humans, we show that Sox9 is expressed from the earliest step of tumor formation in a Wnt/β-catenin-dependent manner. Deletion of Sox9 together with the constitutive activation of Hedgehog signaling completely prevents BCC formation and leads to a progressive loss of oncogene-expressing cells. Transcriptional profiling of oncogene-expressing cells with Sox9 deletion, combined with in vivo ChIP sequencing, uncovers a cancer-specific gene network regulated by Sox9 that promotes stemness, extracellular matrix deposition, and cytoskeleton remodeling while repressing epidermal differentiation. Our study identifies the molecular mechanisms regulated by Sox9 that link tumor initiation and invasion.<br />info:eu-repo/semantics/published

Details

Database :
OAIster
Journal :
Cell stem cell, 17 (1
Notes :
1 full-text file(s): application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1021239275
Document Type :
Electronic Resource