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PMID: 24638981 Published · ppublish English

BRCA1 deficiency exacerbates estrogen-induced DNA damage and genomic instability.

Cancer research ·Vol. 74 ·No. 10 ·2014-08-07

Savage Kienan I, Matchett Kyle B, Barros Eliana M, Cooper Kevin M, Irwin Gareth W, Gorski Julia J, Orr Katy S, Vohhodina Jekaterina, Kavanagh Joy N, Madden Angelina F, Powell Alexander, Manti Lorenzo, McDade Simon S, Park Ben Ho, Prise Kevin M, McIntosh Stuart A, Salto-Tellez Manuel, Richard Derek J, Elliott Christopher T, Harkin D Paul

Abstract

Germline mutations in BRCA1 predispose carriers to a high incidence of breast and ovarian cancers. BRCA1 functions to maintain genomic stability through critical roles in DNA repair, cell-cycle arrest, and transcriptional control. A major question has been why BRCA1 loss or mutation leads to tumors mainly in estrogen-regulated tissues, given that BRCA1 has essential functions in all cell types. Here, we report that estrogen and estrogen metabolites can cause DNA double-strand breaks (DSB) in estrogen receptor-α-negative breast cells and that BRCA1 is required to repair these DSBs to prevent metabolite-induced genomic instability. We found that BRCA1 also regulates estrogen metabolism and metabolite-mediated DNA damage by repressing the transcription of estrogen-metabolizing enzymes, such as CYP1A1, in breast cells. Finally, we used a knock-in human cell model with a heterozygous BRCA1 pathogenic mutation to show how BRCA1 haploinsufficiency affects these processes. Our findings provide pivotal new insights into why BRCA1 mutation drives the formation of tumors in estrogen-regulated tissues, despite the general role of BRCA1 in DNA repair in all cell types.

Article Info
Journal
Cancer research
Abbr.
Cancer Res
Published
2014-08-07
Indexed
2014-05-16
Updated
2016-12-06
Language
English
Country/Region
United States
NLM ID
2984705R
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