4.8 Article

BRCA1 ensures genome integrity by eliminating estrogen-induced pathological topoisomerase II-DNA complexes

出版社

NATL ACAD SCIENCES
DOI: 10.1073/pnas.1803177115

关键词

BRCA1; estradiol (E2); topoisomerase II; HBOC syndrome; breast cancer

资金

  1. Basis for Supporting Innovative Drug Discovery and Life Science Research (BINDS) from AMED [JP18am0101092]
  2. Ministry of Education, Science, Sport and Culture [KAKENHI 23310133, KAKENHI 25650006, 23221005, 16H06306, KAKENHI 16H02953, 18H04900]
  3. Takeda Research and Mitsubishi Foundation
  4. Japan Society for the Promotion of Science Core-to-Core Program, Advanced Research Networks
  5. NATIONAL CANCER INSTITUTE [ZIABC010959] Funding Source: NIH RePORTER

向作者/读者索取更多资源

Women having BRCA1 germ-linemutations develop cancer in breast and ovary, estrogen-regulated tissues, with high penetrance. Binding of estrogens to the estrogen receptor (ER) transiently induces DNA double-strand breaks (DSBs) by topoisomerase II (TOP2) and controls gene transcription. TOP2 resolves catenated DNA by transiently generating DSBs, TOP2-cleavage complexes (TOP2ccs), where TOP2 covalently binds to 5' ends of DSBs. TOP2 frequently fails to complete its catalysis, leading to formation of pathological TOP2ccs. We have previously shown that the endonucleolytic activity of MRE11 plays a key role in removing 5' TOP2 adducts in G(1) phase. We show here that BRCA1 promotes MRE11-mediated removal of TOP2 adducts in G(1) phase. We disrupted the BRCA1 gene in 53BP1-deficient ER-positive breast cancer and B cells. The loss of BRCA1 caused marked increases of pathological TOP2ccs in G1 phase following exposure to etoposide, which generates pathological TOP2ccs. We conclude that BRCA1 promotes the removal of TOP2 adducts from DSB ends for subsequent nonhomologous end joining. BRCA1-deficient cells showed a decrease in etoposide-induced MRE11 foci in G(1) phase, suggesting that BRCA1 repairs pathological TOP2ccs by promoting the recruitment of MRE11 to TOP2cc sites. BRCA1 depletion also leads to the increase of unrepaired DSBs upon estrogen treatment both in vitro in G(1)-arrested breast cancer cells and in vivo in epithelial cells of mouse mammary glands. BRCA1 thus plays a critical role in removing pathological TOP2ccs induced by estrogens aswell as etoposide. We propose that BRCA1 suppresses tumorigenesis by removing estrogen-induced pathological TOP2ccs throughout the cell cycle.

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