合成致死
PARP1
奥拉帕尼
癌症研究
生物
PARP抑制剂
聚ADP核糖聚合酶
同源重组
聚合酶
DNA修复
遗传学
DNA
作者
Ewa Gogola,Alexandra A. Duarte,Julian R. de Ruiter,Wouter W. Wiegant,Jonas Schmid,Roebi de Bruijn,Dominic I. James,Sergi Guerrero Llobet,Daniël J. Vis,Stefano Annunziato,Bram van den Broek,Marco Barazas,Ariena Kersbergen,Marieke van de Ven,Madalena Tarsounas,Donald Ogilvie,Marcel A.T.M. van Vugt,Lodewyk F.A. Wessels,Jiřina Bártková,Irina Gromova
出处
期刊:Cancer Cell
[Cell Press]
日期:2018-06-01
卷期号:33 (6): 1078-1093.e12
被引量:381
标识
DOI:10.1016/j.ccell.2018.05.008
摘要
Inhibitors of poly(ADP-ribose) (PAR) polymerase (PARPi) have recently entered the clinic for the treatment of homologous recombination (HR)-deficient cancers. Despite the success of this approach, drug resistance is a clinical hurdle, and we poorly understand how cancer cells escape the deadly effects of PARPi without restoring the HR pathway. By combining genetic screens with multi-omics analysis of matched PARPi-sensitive and -resistant Brca2-mutated mouse mammary tumors, we identified loss of PAR glycohydrolase (PARG) as a major resistance mechanism. We also found the presence of PARG-negative clones in a subset of human serous ovarian and triple-negative breast cancers. PARG depletion restores PAR formation and partially rescues PARP1 signaling. Importantly, PARG inactivation exposes vulnerabilities that can be exploited therapeutically.
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