4.5 Article

The ATM Substrate KAP1 Controls DNA Repair in Heterochromatin: Regulation by HP1 Proteins and Serine 473/824 Phosphorylation

Journal

MOLECULAR CANCER RESEARCH
Volume 10, Issue 3, Pages 401-414

Publisher

AMER ASSOC CANCER RESEARCH
DOI: 10.1158/1541-7786.MCR-11-0134

Keywords

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Funding

  1. Wistar Institute
  2. National Cancer Institute
  3. Wistar Institute Cancer Center
  4. NIH/NCI [CA126283, CA129833, CA010815]
  5. Samuel Waxman Cancer Research Foundation
  6. NIH [P20 RR16440]
  7. American Cancer Society [122300-IRG-09-061-04-IRG]
  8. Susan G. Komen for the Cure [KG110350]
  9. Swiss National Science Foundation
  10. European Research Council

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The repair of DNA damage in highly compact, transcriptionally silent heterochromatin requires that repair and chromatin packaging machineries be tightly coupled and regulated. KAP1 is a heterochromatin protein and corepressor that binds to HP1 during gene silencing but is also robustly phosphorylated by Ataxia telangiectasia mutated (ATM) at serine 824 in response to DNA damage. The interplay between HP1-KAP1 binding/ATM phosphorylation during DNA repair is not known. We show that HP1 alpha and unmodified KAP1 are enriched in endogenous heterochromatic loci and at a silent transgene prior to damage. Following damage, gamma H2AX and pKAP1-s824 rapidly increase and persist at these loci. Cells that lackHP1 fail to form discreet pKAP1-s824 foci after damage but levels are higher and more persistent. KAP1 is phosphorylated at serine 473 in response to DNA damage and its levels are also modulated by HP1. Unlike pKAP1-s824, pKAP1-s473 does not accumulate at damage foci but is diffusely localized in the nucleus. While HP1 association tempers KAP1 phosphorylation, this interaction also slows the resolution of gamma H2AX foci. Thus, HP1-dependent regulation of KAP1 influences DNA repair in heterochromatin. Mol Cancer Res; 10(3); 401-14. (C)2011 AACR.

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