Evidence for the direct binding of phosphorylated p53 to sites of DNA breaks in vivo.

نویسندگان

  • Shahnaz T Al Rashid
  • Graham Dellaire
  • Andrew Cuddihy
  • Farid Jalali
  • Mita Vaid
  • Carla Coackley
  • Melvyn Folkard
  • Yang Xu
  • Benjamin P C Chen
  • David J Chen
  • Lothar Lilge
  • Kevin M Prise
  • David P Bazett Jones
  • Robert G Bristow
چکیده

Despite a clear link between ataxia-telangiectasia mutated (ATM)-dependent phosphorylation of p53 and cell cycle checkpoint control, the intracellular biology and subcellular localization of p53 phosphoforms during the initial sensing of DNA damage is poorly understood. Using G0-G1 confluent primary human diploid fibroblast cultures, we show that endogenous p53, phosphorylated at Ser15 (p53Ser15), accumulates as discrete, dose-dependent and chromatin-bound foci within 30 minutes following induction of DNA breaks or DNA base damage. This biologically distinct subpool of p53Ser15 is ATM dependent and resistant to 26S-proteasomal degradation. p53Ser15 colocalizes and coimmunoprecipitates with gamma-H2AX with kinetics similar to that of biochemical DNA double-strand break (DNA-dsb) rejoining. Subnuclear microbeam irradiation studies confirm p53Ser15 is recruited to sites of DNA damage containing gamma-H2AX, ATM(Ser1981), and DNA-PKcs(Thr2609) in vivo. Furthermore, studies using isogenic human and murine cells, which express Ser15 or Ser18 phosphomutant proteins, respectively, show defective nuclear foci formation, decreased induction of p21WAF, decreased gamma-H2AX association, and altered DNA-dsb kinetics following DNA damage. Our results suggest a unique biology for this p53 phosphoform in the initial steps of DNA damage signaling and implicates ATM-p53 chromatin-based interactions as mediators of cell cycle checkpoint control and DNA repair to prevent carcinogenesis.

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عنوان ژورنال:
  • Cancer research

دوره 65 23  شماره 

صفحات  -

تاریخ انتشار 2005