Regulation of c-Myc expression by the histone demethylase JMJD1A is essential for prostate cancer cell growth and survival

被引:0
|
作者
L Fan
G Peng
N Sahgal
L Fazli
M Gleave
Y Zhang
A Hussain
J Qi
机构
[1] University of Maryland School of Medicine,Department of Biochemistry and Molecular Biology
[2] Marlene and Stewart Greenebaum Cancer Center,Department of Epidemiology and Public Health
[3] University of Maryland School of Medicine,undefined
[4] University of Maryland School of Medicine,undefined
[5] Centre for Molecular Oncology,undefined
[6] Barts Cancer Institute,undefined
[7] Queen Mary University of London,undefined
[8] Vancouver Prostate Centre,undefined
[9] University of British Columbia,undefined
[10] University of Maryland School of Medicine,undefined
[11] Baltimore VA Medical Center,undefined
来源
Oncogene | 2016年 / 35卷
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摘要
The histone demethylase JMJD1A, which controls gene expression by epigenetic regulation of H3K9 methylation marks, functions in diverse activities, including spermatogenesis, metabolism and stem cell self-renewal and differentiation. Here, we found that JMJD1A knockdown in prostate cancer cells antagonizes their proliferation and survival. Profiling array analyses revealed that JMJD1A-dependent genes function in cellular growth, proliferation and survival, and implicated that the c-Myc transcriptional network is deregulated following JMJD1A inhibition. Biochemical analyses confirmed that JMJD1A enhances c-Myc transcriptional activity by upregulating c-Myc expression levels. Mechanistically, JMJD1A activity promoted recruitment of androgen receptor (AR) to the c-Myc gene enhancer and induced H3K9 demethylation, increasing AR-dependent transcription of c-Myc mRNA. In parallel, we found that JMJD1A regulated c-Myc stability, likely by inhibiting HUWE1, an E3 ubiquitin ligase known to target degradation of several substrates including c-Myc. JMJD1A (wild type or mutant lacking histone demethylase activity) bound to HUWE1, attenuated HUWE1-dependent ubiquitination and subsequent degradation of c-Myc, increasing c-Myc protein levels. Furthermore, c-Myc knockdown in prostate cancer cells phenocopied effects of JMJD1A knockdown, and c-Myc re-expression in JMJD1A-knockdown cells partially rescued prostate cancer cell growth in vitro and in vivo. c-Myc protein levels were positively correlated with those of JMJD1A in a subset of human prostate cancer specimens. Collectively, our findings identify a critical role for JMJD1A in regulating proliferation and survival of prostate cancer cells by controlling c-Myc expression at transcriptional and post-translational levels.
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页码:2441 / 2452
页数:11
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