4.8 Article

PALB2 chromatin recruitment restores homologous recombination in BRCA1-deficient cells depleted of 53BP1

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NATURE COMMUNICATIONS
卷 11, 期 1, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/s41467-020-14563-y

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资金

  1. Cancer Research UK (CRUK) Program [C6/A18796]
  2. Wellcome Investigator Award [206388/Z/17/Z]
  3. CRUK [C6946/A24843]
  4. Wellcome [WT203144, 210493, 203149]
  5. CRUK Program [C6/A18796]
  6. Action for A-T
  7. A-T Children's Project
  8. University of Edinburgh
  9. Multi-User Equipment [101527]
  10. Wellcome Trust [206388/Z/17/Z] Funding Source: Wellcome Trust

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Loss of functional BRCA1 protein leads to defects in DNA double-strand break (DSB) repair by homologous recombination (HR) and renders cells hypersensitive to poly (ADP-ribose) polymerase (PARP) inhibitors used to treat BRCA1/2-deficient cancers. However, upon chronic treatment of BRCA1-mutant cells with PARP inhibitors, resistant clones can arise via several mechanisms, including loss of 53BP1 or its downstream co-factors. Defects in the 53BP1 axis partially restore the ability of a BRCA1-deficient cell to form RAD51 filaments at resected DSBs in a PALB2- and BRCA2-dependent manner, and thereby repair DSBs by HR. Here we show that depleting 53BP1 in BRCA1-null cells restores PALB2 accrual at resected DSBs. Moreover, we demonstrate that PALB2 DSB recruitment in BRCA1/53BP1-deficient cells is mediated by an interaction between PALB2's chromatin associated motif (ChAM) and the nucleosome acidic patch region, which in 53BP1-expressing cells is bound by 53BP1's ubiquitin-directed recruitment (UDR) domain.

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