NF-κB-HOTAIR axis links DNA damage response, chemoresistance and cellular senescence in ovarian cancer

被引:0
|
作者
A R Özeş
D F Miller
O N Özeş
F Fang
Y Liu
D Matei
T Huang
K P Nephew
机构
[1] Indiana University,Molecular and Cellular Biochemistry Department
[2] Medical Sciences Program,Department of Medical Biology and Genetics
[3] Indiana University School of Medicine,Department of Medical and Molecular Genetics
[4] Akdeniz University,Department of Medicine
[5] Indiana University School of Medicine,Department of Obstetrics and Gynecology
[6] Center for Computational Biology and Bioinformatics,Department of Molecular Medicine/Institute of Biotechnology
[7] Indiana University Melvin and Bren Simon Cancer Center,Department of Cellular and Integrative Physiology
[8] Indiana University School of Medicine,undefined
[9] Indiana University School of Medicine,undefined
[10] The University of Texas Health Science Center at San Antonio,undefined
[11] Indiana University School of Medicine,undefined
来源
Oncogene | 2016年 / 35卷
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摘要
The transcription factor nuclear factor kappa B (NF-κB) and the long non-coding RNA (lncRNA) HOTAIR (HOX transcript antisense RNA) have diverse functional roles in cancer. In this study, we show that upregulation of HOTAIR induced platinum resistance in ovarian cancer, and increased HOTAIR levels were observed in recurrent platinum-resistant ovarian tumors vs primary ovarian tumors. To investigate the role of HOTAIR during DNA damage induced by platinum, we monitored double-strand breaks and show that HOTAIR expression results in sustained activation of DNA damage response (DDR) after platinum treatment. We demonstrate that ectopic expression of HOTAIR induces NF-κB activation during DDR and interleukin-6 and interleukin-6 expression, both key NF-κB target genes. We show that HOTAIR regulates activation of NF-κB by decreasing Iκ-Bα (NF-κB inhibitor) and establish that by inducing prolonged NF-κB activation and expression of NF-κB target genes during DNA damage, HOTAIR has a critical role in cellular senescence and platinum sensitivity. Our findings suggest that an NF-κB-HOTAIR axis drives a positive-feedback loop cascade during DDR and contributes to cellular senescence and chemotherapy resistance in ovarian and other cancers.
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页码:5350 / 5361
页数:11
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