Scientific article
English

Functional interplay between the DNA-damage-response kinase ATM and ARF tumour suppressor protein in human cancer

Published inNature cell biology, vol. 15, no. 8, p. 967-977
Publication date2013-07-14
First online date2013-07-14
Abstract

The DNA damage response (DDR) pathway and ARF function as barriers to cancer development. Although commonly regarded as operating independently of each other, some studies proposed that ARF is positively regulated by the DDR. Contrary to either scenario, we found that in human oncogene-transformed and cancer cells, ATM suppressed ARF protein levels and activity in a transcription-independent manner. Mechanistically, ATM activated protein phosphatase 1, which antagonized Nek2-dependent phosphorylation of nucleophosmin (NPM), thereby liberating ARF from NPM and rendering it susceptible to degradation by the ULF E3-ubiquitin ligase. In human clinical samples, loss of ATM expression correlated with increased ARF levels and in xenograft and tissue culture models, inhibition of ATM stimulated the tumour-suppressive effects of ARF. These results provide insights into the functional interplay between the DDR and ARF anti-cancer barriers, with implications for tumorigenesis and treatment of advanced tumours.

Citation (ISO format)
VELIMEZI, Georgia et al. Functional interplay between the DNA-damage-response kinase ATM and ARF tumour suppressor protein in human cancer. In: Nature cell biology, 2013, vol. 15, n° 8, p. 967–977. doi: 10.1038/ncb2795
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Additional URL for this publicationhttps://www.nature.com/articles/ncb2795
Journal ISSN1465-7392
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