| Literature DB >> 22516263 |
Saïda Dadi1, Sandrine Le Noir, Dominique Payet-Bornet, Ludovic Lhermitte, Joaquin Zacarias-Cabeza, Julie Bergeron, Patrick Villarèse, Elodie Vachez, Willem A Dik, Corinne Millien, Isabelle Radford, Els Verhoeyen, François-Loïc Cosset, Arnaud Petit, Norbert Ifrah, Hervé Dombret, Olivier Hermine, Salvatore Spicuglia, Anton W Langerak, Elizabeth A Macintyre, Bertrand Nadel, Pierre Ferrier, Vahid Asnafi.
Abstract
Acute lymphoblastic leukemias (ALLs) are characterized by multistep oncogenic processes leading to cell-differentiation arrest and proliferation. Specific abrogation of maturation blockage constitutes a promising therapeutic option in cancer, which requires precise understanding of the underlying molecular mechanisms. We show that the cortical thymic maturation arrest in T-lineage ALLs that overexpress TLX1 or TLX3 is due to binding of TLX1/TLX3 to ETS1, leading to repression of T cell receptor (TCR) α enhanceosome activity and blocked TCR-Jα rearrangement. TLX1/TLX3 abrogation or enforced TCRαβ expression leads to TCRα rearrangement and apoptosis. Importantly, the autoextinction of clones carrying TCRα-driven TLX1 expression supports TLX "addiction" in TLX-positive leukemias and provides further rationale for targeted therapy based on disruption of TLX1/TLX3.Entities:
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Year: 2012 PMID: 22516263 DOI: 10.1016/j.ccr.2012.02.013
Source DB: PubMed Journal: Cancer Cell ISSN: 1535-6108 Impact factor: 31.743