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PMID: 24847116 已发表 · epublish 英语

Targeting poly(ADP-ribose) polymerase and the c-Myb-regulated DNA damage response pathway in castration-resistant prostate cancer.

Science signaling ·第 7 卷 ·第 326 期 ·2015-02-12

Li Likun, Chang Wenjun, Yang Guang, Ren Chengzhen, Park Sanghee, Karantanos Theodoros, Karanika Styliani, Wang Jianxiang, Yin Jianhua, Shah Parantu K, Takahiro Hirayama, Dobashi Masato, Zhang Wenling, Efstathiou Eleni, Maity Sankar N, Aparicio Ana M, Li Ning Tapia Elsa M, Troncoso Patricia, Broom Bradley, Xiao Lianchun, Lee Hyun-Sung, Lee Ju-Seog, Corn Paul G, Navone Nora, Thompson Timothy C

摘要

Androgen deprivation is the standard treatment for advanced prostate cancer (PCa), but most patients ultimately develop resistance and tumor recurrence. We found that MYB is transcriptionally activated by androgen deprivation therapy or genetic silencing of the androgen receptor (AR). MYB silencing inhibited PCa growth in culture and xenografts in mice. Microarray data revealed that c-Myb and AR shared a subset of target genes that encode DNA damage response (DDR) proteins, suggesting that c-Myb may supplant AR as the dominant regulator of their common DDR target genes in AR inhibition-resistant or AR-negative PCa. Gene signatures including AR, MYB, and their common DDR-associated target genes positively correlated with metastasis, castration resistance, tumor recurrence, and decreased survival in PCa patients. In culture and in xenograft-bearing mice, a combination strategy involving the knockdown of MYB, BRCA1, or TOPBP1 or the abrogation of cell cycle checkpoint arrest with AZD7762, an inhibitor of the checkpoint kinase Chk1, increased the cytotoxicity of the poly[adenosine 5'-diphosphate (ADP)-ribose] polymerase (PARP) inhibitor olaparib in PCa cells. Our results reveal new mechanism-based therapeutic approaches for PCa by targeting PARP and the DDR pathway involving c-Myb, TopBP1, ataxia telangiectasia mutated- and Rad3-related (ATR), and Chk1.

文献信息
期刊
Science signaling
期刊简称
Sci Signal
发表日期
2015-02-12
收录日期
2014-05-21
更新日期
2016-10-19
语言
英语
国家/地区
United States
NLM ID
101465400
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