4.6 Article

Mutations in the BRCT binding site of BRCA1 result in hyper-recombination

期刊

AGING-US
卷 3, 期 5, 页码 515-532

出版社

IMPACT JOURNALS LLC
DOI: 10.18632/aging.100325

关键词

DNA repair; DNA damage; ubiquitination; radiation; PML bodies; breast cancer

资金

  1. NIH [P01CA72955, R21ES016636, R01NS064593]
  2. American Brain Tumor Association [T32CA085159]
  3. Virginia Commonwealth University Massey Cancer Center Flow Cytometry and Imaging Shared Resource Facility [P30CA16059]
  4. NIH-NINDS Center [5P30NS047463]
  5. [R01CA40615]
  6. [R01CA133093]
  7. [R01ES016354]
  8. [R21NS061748]

向作者/读者索取更多资源

We introduced a K1702M mutation in the BRCA1 BRCT domain known to prevent the binding of proteins harboring pS-X-X-F motifs such as Abraxas-RAP80, BRIP1, and CtIP. Surprisingly, rather than impairing homologous recombination repair (HRR), expression of K1702M resulted in hyper-recombination coinciding with an accumulation of cells in S-G2 and no effect on nonhomologous end-joining. These cells also showed increased RAD51 and RPA nuclear staining. More pronounced effects were seen with a naturally occurring BRCT mutant (M1775R) that also produced elevated levels of ssDNA, in part co-localizing with RPA, in line with excessive DNA resection. M1775R induced unusual, thread-like promyelocytic leukemia (PML) nuclear bodies and clustered RPA foci rather than the typical juxtaposed RPA-PML foci seen with wild-type BRCA1. Interestingly, K1702M hyper-recombination diminished with a second mutation in the BRCA1 RING domain (I26A) known to reduce BRCA1 ubiquitin-ligase activity. These in vitro findings correlated with elevated nuclear RAD51 and RPA staining of breast cancer tissue from a patient with the M1775R mutation. Altogether, the disruption of BRCA1 (BRCT)-pS-X-X-F protein binding results in ubiquitination-dependent hyper-recombination via excessive DNA resection and the appearance of atypical PML-NBs. Thus, certain BRCA1 mutations that cause hyper-recombination instead of reduced DSB repair might lead to breast cancer.

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