Replication Stress and Chromatin Context Link ATM Activation to a Role in DNA Replication

ATM-mediated signaling in response to DNA damage is a barrier to tumorigenesis. Here we asked whether replication stress could also contribute to ATM signaling. We demonstrate that, in the absence of DNA damage, ATM responds to replication stress in a hypoxia-induced heterochromatin-like context. In...

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Veröffentlicht in:Molecular cell 2013-12, Vol.52 (5), p.758-766
Hauptverfasser: Olcina, Monica M., Foskolou, Iosifina P., Anbalagan, Selvakumar, Senra, Joana M., Pires, Isabel M., Jiang, Yanyan, Ryan, Anderson J., Hammond, Ester M.
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Sprache:eng
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Zusammenfassung:ATM-mediated signaling in response to DNA damage is a barrier to tumorigenesis. Here we asked whether replication stress could also contribute to ATM signaling. We demonstrate that, in the absence of DNA damage, ATM responds to replication stress in a hypoxia-induced heterochromatin-like context. In certain hypoxic conditions, replication stress occurs in the absence of detectable DNA damage. Hypoxia also induces H3K9me3, a histone modification associated with gene repression and heterochromatin. Hypoxia-induced replication stress together with increased H3K9me3 leads to ATM activation. Importantly, ATM prevents the accumulation of DNA damage in hypoxia. Most significantly, we describe a stress-specific role for ATM in maintaining DNA replication rates in a background of increased H3K9me3. Furthermore, the ATM-mediated response to oncogene-induced replication stress is enhanced in hypoxic conditions. Together, these data indicate that hypoxia plays a critical role in the activation of the DNA damage response, therefore contributing to this barrier to tumorigenesis. •In the absence of damage, ATM responds to replication stress in H3K9me3-rich contexts•The levels of ATM-S1981, H3K9me3, and hypoxia correlate well in vivo•ATM maintains DNA replication rates in hypoxia•ATM prevents the accumulation of DNA damage in hypoxic conditions
ISSN:1097-2765
1097-4164
DOI:10.1016/j.molcel.2013.10.019