Contrasting roles of histone 3 lysine 27 demethylases in acute lymphoblastic leukaemia Journal Article


Authors: Ntziachristos, P.; Tsirigos, A.; Welstead, G. G.; Trimarchi, T.; Bakogianni, S.; Xu, L. Y.; Loizou, E.; Holmfeldt, L.; Strikoudis, A.; King, B.; Mullenders, J.; Becksfort, J.; Nedjic, J.; Paietta, E.; Tallman, M. S.; Rowe, J. M.; Tonon, G.; Satoh, T.; Kruidenier, L.; Prinjha, R.; Akira, S.; Van Vlierberghe, P.; Ferrando, A. A.; Jaenisch, R.; Mullighan, C. G.; Aifantis, I.
Article Title: Contrasting roles of histone 3 lysine 27 demethylases in acute lymphoblastic leukaemia
Abstract: T-cell acute lymphoblastic leukaemia (T-ALL) is a haematological malignancy with a dismal overall prognosis, including a relapse rate of up to 25%, mainly because of the lack of non-cytotoxic targeted therapy options. Drugs that target the function of key epigenetic factors have been approved in the context of haematopoietic disorders(1), and mutations that affect chromatin modulators in a variety of leukaemias have recently been identified(2,3); however, epigenetic drugs are not currently used for T-ALL treatment. Recently, we described that the polycomb repressive complex 2 (PRC2) has a tumour-suppressor role in T-ALL(4). Here we delineated the role of the histone 3 lysine 27 (H3K27) demethylases JMJD3 and UTX in T-ALL. We show that JMJD3 is essential for the initiation and maintenance of T-ALL, as it controls important oncogenic gene targets by modulating H3K27 methylation. By contrast, we found that UTX functions as a tumour suppressor and is frequently genetically inactivated in T-ALL. Moreover, we demonstrated that the small molecule inhibitor GSKJ4 (ref. 5) affects T-ALL growth, by targeting JMJD3 activity. These findings show that two proteins with a similar enzymatic function can have opposing roles in the context of the same disease, paving the way for treating haematopoietic malignancies with a new category of epigenetic inhibitors.
Keywords: genome; mutations; acute myeloid-leukemia; stem-cell; jmjd3 contributes; expression profiles; utx; cancer; initiating cell-activity; h3k27 demethylase
Journal Title: Nature
Volume: 514
Issue: 7523
ISSN: 0028-0836
Publisher: Nature Publishing Group  
Date Published: 2014-10-23
Start Page: 513
End Page: 517
Language: English
ACCESSION: WOS:000343775900045
DOI: 10.1038/nature13605
PROVIDER: wos
PMCID: PMC4209203
PUBMED: 25132549
Notes: Article -- Source: Wos
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  1. Martin Stuart Tallman
    649 Tallman