Oncogenic activity of poly (ADP-ribose) glycohydrolase

被引:0
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作者
Maud Marques
Maika Jangal
Li-Chun Wang
Anna Kazanets
Sabrina Daniela da Silva
Tiejun Zhao
Amanda Lovato
Henry Yu
Su Jie
Sonia del Rincon
John Mackey
Sambasivarao Damaraju
Moulay Alaoui-Jamali
Michael Witcher
机构
[1] McGill University,Departments of Oncology and Experimental Medicine, The Lady Davis Institute of the Jewish General Hospital
[2] McGill University,Department of Otolaryngology/Head and Neck Surgery, Sir Mortimer B. Davis
[3] University of Alberta,Jewish General Hospital
[4] University of Alberta,Department of Oncology, Division of Medical Oncology, Cross Cancer Institute
来源
Oncogene | 2019年 / 38卷
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摘要
Poly (ADP-ribosylation), known as PARylation, is a post-translational modification catalyzed by poly (ADP-ribose) polymerases (PARP) and primarily removed by the enzyme poly (ADP-ribose) glycohydrolase (PARG). While the aberrant removal of post-translation modifications including phosphorylation and methylation has known tumorigenic effects, deregulation of PARylation has not been widely studied. Increased hydrolysis of PARylation chains facilitates cancer growth through enhancing estrogen receptor (ER)-driven proliferation, but oncogenic transformation has not been linked to increased PARG expression. In this study, we find that elevated PARG levels are associated with a poor prognosis in breast cancers, especially in HER2-positive and triple-negative subtypes. Using both in vitro and in vivo models, we demonstrate that heightened expression of catalytically active PARG facilitates cell transformation and invasion of normal mammary epithelial cells. Catalytically inactive PARG mutants did not recapitulate these phenotypes. Consistent with clinical data showing elevated PARG predicts poor outcomes in HER2+ patients, we observed that PARG acts in synergy with HER2 to promote neoplastic growth of immortalized mammary cells. In contrast, PARG depletion significantly impairs the growth and metastasis of triple-negative breast tumors. Mechanistically, we find that PARG interacts with SMAD2/3 and significantly decreases their PARylation in non-transformed cells, leading to enhanced expression of SMAD target genes. Further linking SMAD-mediated transcription to the oncogenicity of PARG, we show that PARG-mediated anchorage-independent growth and invasion are dependent, at least in part, on SMAD expression. Overall, our study underscores the oncogenic impact of aberrant protein PARylation and highlights the therapeutic potential of PARG inhibition in breast cancer.
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页码:2177 / 2191
页数:14
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