The epigenetic regulators CBP and p300 facilitate leukemogenesis and represent therapeutic targets in Acute Myeloid LeukemiaReportar como inadecuado


The epigenetic regulators CBP and p300 facilitate leukemogenesis and represent therapeutic targets in Acute Myeloid Leukemia


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Publication Date: 2015-04-20

Journal Title: Oncogene

Publisher: Nature Publishing Group

Volume: 35

Issue: 3

Pages: 279-289

Language: English

Type: Article

Metadata: Show full item record

Citation: Giotopoulos, G., Chan, W., Horton, S. J., Ruau, D., Gallipoli, P., Fowler, A., Crawley, C., et al. (2015). The epigenetic regulators CBP and p300 facilitate leukemogenesis and represent therapeutic targets in Acute Myeloid Leukemia. Oncogene, 35 (3), 279-289.

Description: This is the author accepted manuscript. The final version is available via NPG at http://dx.doi.org/10.1038/onc.2015.92

Abstract: Growing evidence links abnormal epigenetic control to the development of hematological malignancies. Accordingly, inhibition of epigenetic regulators is emerging as a promising therapeutic strategy. The acetylation status of lysine residues in histone tails is one of a number of epigenetic post-translational modifications that alter DNA-templated processes, such as transcription, to facilitate malignant transformation. Although histone deacetylases are already being clinically targeted, the role of histone lysine acetyltransferases (KAT) in malignancy is less well characterized. We chose to study this question in the context of acute myeloid leukemia (AML), where, using in vitro and in vivo genetic ablation and knockdown experiments in murine models, we demonstrate a role for the epigenetic regulators CBP and p300 in the induction and maintenance of AML. Furthermore, using selective small molecule inhibitors of their lysine acetyltransferase activity, we validate CBP/p300 as therapeutic targets in vitro across a wide range of human AML subtypes. We proceed to show that growth retardation occurs through the induction of transcriptional changes that induce apoptosis and cell-cycle arrest in leukemia cells and finally demonstrate the efficacy of the KAT inhibitors in decreasing clonogenic growth of primary AML patient samples. Taken together, these data suggest that CBP/p300 are promising therapeutic targets across multiple subtypes in AML.

Keywords: AML, epigenetic regulators, small molecule inhibitors

Sponsorship: Funding in the Huntly laboratory comes from Cancer Research UK, Leukemia Lymphoma Research, the Kay Kendal Leukemia Fund, the Leukemia lymphoma Society of America, the Wellcome Trust, The Medical Research Council and an NIHR Cambridge Biomedical Research Centre grant. Patient samples were processed in the Cambridge Blood and Stem Cell Biobank.

Identifiers:

This record's URL: http://dx.doi.org/10.1038/onc.2015.92http://www.repository.cam.ac.uk/handle/1810/247742





Autor: Giotopoulos, G.Chan, W.-I.Horton, S. J.Ruau, D.Gallipoli, P.Fowler, A.Crawley, C.Papaemmanuil, E.Campbell, P. J.Göttgens, B.Deurs

Fuente: https://www.repository.cam.ac.uk/handle/1810/247742



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