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PMID: 26320175 已发表 · ppublish 英语

Mutation of the BRCA1 SQ-cluster results in aberrant mitosis, reduced homologous recombination, and a compensatory increase in non-homologous end joining.

Oncotarget ·第 6 卷 ·第 29 期 ·2016-08-16

Beckta Jason M, Dever Seth M, Gnawali Nisha, Khalil Ashraf, Sule Amrita, Golding Sarah E, Rosenberg Elizabeth, Narayanan Aarthi, Kehn-Hall Kylene, Xu Bo, Povirk Lawrence F, Valerie Kristoffer

摘要

Mutations in the breast cancer susceptibility 1 (BRCA1) gene are catalysts for breast and ovarian cancers. Most mutations are associated with the BRCA1 N- and C-terminal domains linked to DNA double-strand break (DSB) repair. However, little is known about the role of the intervening serine-glutamine (SQ) - cluster in the DNA damage response beyond its importance in regulating cell cycle checkpoints. We show that serine-to-alanine alterations at critical residues within the SQ-cluster known to be phosphorylated by ATM and ATR result in reduced homologous recombination repair (HRR) and aberrant mitosis. While a S1387A BRCA1 mutant - previously shown to abrogate S-phase arrest in response to radiation - resulted in only a modest decrease in HRR, S1387A together with an additional alteration, S1423A (BRCA12P), reduced HRR to vector control levels and similar to a quadruple mutant also including S1457A and S1524A (BRCA14P). These effects appeared to be independent of PALB2. Furthermore, we found that BRCA14P promoted a prolonged and struggling HRR late in the cell cycle and shifted DSB repair from HRR to non-homologous end joining which, in the face of irreparable chromosomal damage, resulted in mitotic catastrophe. Altogether, SQ-cluster phosphorylation is critical for allowing adequate time for completing normal HRR prior to mitosis and preventing cells from entering G1 prematurely resulting in gross chromosomal aberrations.

关键词
DNA damage DNA repair cell cycle phosphorylation radiation
文献信息
期刊
Oncotarget
期刊简称
Oncotarget
发表日期
2016-08-16
收录日期
2015-10-09
更新日期
2016-10-19
语言
英语
国家/地区
United States
NLM ID
101532965
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