| Literature DB >> 24825921 |
Sharon Rashi-Elkeles1, Hans-Jörg Warnatz2, Ran Elkon1, Ana Kupershtein1, Yuliya Chobod1, Arnon Paz1, Vyacheslav Amstislavskiy2, Marc Sultan2, Hershel Safer3, Wilfried Nietfeld2, Hans Lehrach2, Ron Shamir3, Marie-Laure Yaspo2, Yosef Shiloh4.
Abstract
The DNA damage response (DDR) is a vast signaling network that is robustly activated by DNA double-strand breaks, the critical lesion induced by ionizing radiation (IR). Although much of this response operates at the protein level, a critical component of the network sustains many DDR branches by modulating the cellular transcriptome. Using deep sequencing, we delineated three layers in the transcriptional response to IR in human breast cancer cells: changes in the expression of genes encoding proteins or long noncoding RNAs, alterations in genomic binding by key transcription factors, and dynamics of epigenetic markers of active promoters and enhancers. We identified protein-coding and previously unidentified noncoding genes that were responsive to IR, and demonstrated that IR-induced transcriptional dynamics was mediated largely by the transcription factors p53 and nuclear factor κB (NF-κB) and was primarily dependent on the kinase ataxia-telangiectasia mutated (ATM). The resultant data set provides a rich resource for understanding a basic, underlying component of a critical cellular stress response.Entities:
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Year: 2014 PMID: 24825921 DOI: 10.1126/scisignal.2005032
Source DB: PubMed Journal: Sci Signal ISSN: 1945-0877 Impact factor: 8.192