4.8 Article

Dephosphorylation Enables the Recruitment of 53BP1 to Double-Strand DNA Breaks

期刊

MOLECULAR CELL
卷 54, 期 3, 页码 512-525

出版社

CELL PRESS
DOI: 10.1016/j.molcel.2014.03.020

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资金

  1. NCI [R01CA142698]
  2. NIAID [R01 AI101897-01]
  3. Basic Scholar Grant (American Cancer Society)
  4. Ann-Fuller Foundation
  5. Mary Kay Foundation
  6. DFCI
  7. National Foundation of Korea (NRF) - Ministry of Science, ICT and Future Planning [NRF-2013R1A1A1061207]
  8. Chonnam National University

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Excluding 53BP1 from chromatin is required to attenuate the DNA damage response during mitosis, yet the functional relevance and regulation of this exclusion are unclear. Here we show that 53BP1 is phosphorylated during mitosis on two residues, T1609 and S1618, located in its well-conserved ubiquitination-dependent recruitment (UDR) motif. Phosphorylating these sites blocks the interaction of the UDR motif with mononuclesomes containing ubiquitinated histone H2A and impedes binding of 53BP1 to mitotic chromatin. Ectopic recruitment of 53BP1-T1609A/S1618A to mitotic DNA lesions was associated with significant mitotic defects that could be reversed by inhibiting nonhomologous end-joining. We also reveal that protein phosphatase complex PP4C/R3 beta dephosphorylates T1609 and S1618 to allow the recruitment of 53BP1 to chromatin in G1 phase. Our results identify key sites of 53BP1 phosphorylation during mitosis, identify the counteracting phosphatase complex that restores the potential for DDR during interphase, and establish the physiological importance of this regulation.

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