4.8 Article

ZMYM2 restricts 53BP1 at DNA double-strand breaks to favor BRCA1 loading and homologous recombination

Journal

NUCLEIC ACIDS RESEARCH
Volume 50, Issue 7, Pages 3922-3943

Publisher

OXFORD UNIV PRESS
DOI: 10.1093/nar/gkac160

Keywords

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Funding

  1. VIDI grant from the Dutch Research Council (NWO) [ALW.016.161.320]
  2. National Institutes of Health, National Cancer Institute [R01CA244261, R01CA1982279, R01CA201268]
  3. National Institute General Medical Sciences [R35GM137798]
  4. American Cancer Society [RSG-20-131-01-DMC, RSG-16-042-01-DMC]
  5. Arkansas Breast Cancer Research Program [AWD00053730, AWD00054499]
  6. National Institutes of Health

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The inability to repair DNA double-strand breaks (DSBs) can lead to genome instability and human diseases, such as cancer. This study identifies zinc-finger proteins ZMYM2 and ZMYM3 as antagonizers of 53BP1 recruitment, which enhances the recruitment and function of HR proteins in DNA repair. Depletion of these proteins leads to genome instability, increased sensitivity to PARP inhibitors and ionizing radiation, and reduced HR repair.
An inability to repair DNA double-strand breaks (DSBs) threatens genome integrity and can contribute to human diseases, including cancer. Mammalian cells repair DSBs mainly through homologous recombination (HR) and nonhomologous end-joining (NHEJ). The choice between these pathways is regulated by the interplay between 53BP1 and BRCA1, whereby BRCA1 excludes 53BP1 to promote HR and 53BP1 limits BRCA1 to facilitate NHEJ. Here, we identify the zinc-finger proteins (ZnF), ZMYM2 and ZMYM3, as antagonizers of 53BP1 recruitment that facilitate HR protein recruitment and function at DNA breaks. Mechanistically, we show that ZMYM2 recruitment to DSBs and suppression of break-associated 53BP1 requires the SUMO E3 ligase PIAS4, as well as SUMO binding by ZMYM2. Cells deficient for ZMYM2/3 display genome instability, PARP inhibitor and ionizing radiation sensitivity and reduced HR repair. Importantly, depletion of 53BP1 in ZMYM2/3-deficient cells rescues BRCA1 recruitment to and HR repair of DSBs, suggesting that ZMYM2 and ZMYM3 primarily function to restrict 53BP1 engagement at breaks to favor BRCA1 loading that functions to channel breaks to HR repair. Identification of DNA repair functions for these poorly characterized ZnF proteins may shed light on their unknown contributions to human diseases, where they have been reported to be highly dysregulated, including in several cancers.

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