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Dissecting the role of aberrant DNA methylation in human leukaemia.

Giovanni Amabile ,
Annalisa Di Ruscio ,
Fabian Müller ,
Robert S Welner ,
Henry Yang ,
Alexander K Ebralidze ,
Hong Zhang ,
Elena Levantini ,
Lihua Qi ,
Giovanni Martinelli ,
Thijn Brummelkamp ,
Michelle M Le Beau ,
Maria E Figueroa ,
Christoph Bock ,
Daniel G Tenen

Abstract

Chronic myeloid leukaemia (CML) is a myeloproliferative disorder characterized by the genetic translocation t(9;22)(q34;q11.2) encoding for the BCR-ABL fusion oncogene. However, many molecular mechanisms of the disease progression still remain poorly understood. A growing body of evidence suggests that the epigenetic abnormalities are involved in tyrosine kinase resistance in CML, leading to leukaemic clone escape and disease propagation. Here we show that, by applying cellular reprogramming to primary CML cells, aberrant DNA methylation contributes to the disease evolution. Importantly, using a BCR-ABL inducible murine model, we demonstrate that a single oncogenic lesion triggers DNA methylation changes, which in turn act as a precipitating event in leukaemia progression.

More about this publication

Nature communications

Volume 6
Pages 7091
Publication date 22-05-2015

Full text links

Publisher website (DOI) 10.1038/ncomms8091
Europe PubMed Central 25997600
Pubmed 25997600

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