Involvement of aberrantly activated HOTAIR/EZH2/miR-193a feedback loop in progression of prostate cancer
Abstract Background Though androgen deprivation therapy is the standard treatment for prostate cancer (PCa), most patients would inevitably progress to castration-resistant prostate cancer (CRPC) which is the main cause of PCa death. Therefore, the identification of novel molecular mechanism regulat...
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doaj-d27c19d762334feca82dfa4fc480bf452020-11-24T23:21:57ZengBMCJournal of Experimental & Clinical Cancer Research1756-99662017-11-0136111510.1186/s13046-017-0629-7Involvement of aberrantly activated HOTAIR/EZH2/miR-193a feedback loop in progression of prostate cancerZhixin Ling0Xiaoyan Wang1Tao Tao2Lei Zhang3Han Guan4Zonghao You5Kai Lu6Guangyuan Zhang7Shuqiu Chen8Jianping Wu9Jinke Qian10Hui Liu11Bin Xu12Ming Chen13Department of Urology, Affiliated Zhongda Hospital of Southeast UniversityDepartment of Nursing, Affiliated Zhongda Hospital of Southeast UniversityDepartment of Urology, Anhui Provincial Hospital, Anhui Medical UniversityDepartment of Urology, Affiliated Zhongda Hospital of Southeast UniversityDepartment of Urology, the First Affiliated Hospital of Bengbu Medical CollegeDepartment of Urology, Affiliated Zhongda Hospital of Southeast UniversityDepartment of Urology, Affiliated Zhongda Hospital of Southeast UniversityDepartment of Urology, Affiliated Zhongda Hospital of Southeast UniversityDepartment of Urology, Affiliated Zhongda Hospital of Southeast UniversityDepartment of Urology, Affiliated Zhongda Hospital of Southeast UniversityDepartment of Urology, Binhai People’s HospitalDepartment of Urology, Binhai People’s HospitalDepartment of Urology, Affiliated Zhongda Hospital of Southeast UniversityDepartment of Urology, Affiliated Zhongda Hospital of Southeast UniversityAbstract Background Though androgen deprivation therapy is the standard treatment for prostate cancer (PCa), most patients would inevitably progress to castration-resistant prostate cancer (CRPC) which is the main cause of PCa death. Therefore, the identification of novel molecular mechanism regulating cancer progression and achievement of new insight into target therapy would be necessary for improving the benefits of PCa patients. This study aims to study the function and regulatory mechanism of HOTAIR/EZH2/miR-193a feedback loop in PCa progression. Methods MSKCC and TCGA datasets were used to identify miR-193a expression profile in PCa. Cell Counting Kit-8 (CCK-8) assays, colony formation, invasion, migration, flow cytometry, a xenograft model and Gene Set Enrichment Analysis were used to detect and analyze the biological function of miR-193a. Then, we assessed the role of HOTAIR and EZH2 in regulation of miR-193a expression by using plasmid, lentivirus and small interfering RNA (siRNA). Luciferase reporter assays and chromatin immunoprecipitation assays were performed to detect the transcriptional activation of miR-193a by EZH2 and HOTAIR. Further, qRT-PCR and luciferase reporter assays were conducted to examine the regulatory role of miR-193a controlling the HOTAIR expression in PCa. Finally, the correlation between HOTAIR, EZH2 and miR-193a expression were analyzed using In situ hybridization and immunohistochemistry. Results We found that miR-193a was significantly downregulated in metastatic PCa through mining MSKCC and TCGA datasets. In vitro studies revealed that miR-193a inhibited PCa cell growth, suppressed migration and invasion, and promoted apoptosis; in vivo results demonstrated that overexpression of miR-193a mediated by lentivirus dramatically reduced PCa xenograft tumor growth. Importantly, we found EZH2 coupled with HOTAIR to repress miR-193a expression through trimethylation of H3K27 at miR-193a promoter in PC3 and DU145 cells. Interestingly, further evidence illustrated that miR-193a directly targets HOTAIR showing as significantly reduced HOTAIR level in miR-193a overexpressed cells and tissues. The expression level of miR-193a was inversely associated with that of HOTAIR and EZH2 in PCa. Conclusion This study firstly demonstrated that miR-193a acted as tumor suppressor in CRPC and the autoregulatory feedback loop of HOTAIR/EZH2/miR-193a served an important mechanism in PCa development. Targeting this aberrantly activated feedback loop may provide a potential therapeutic strategy.http://link.springer.com/article/10.1186/s13046-017-0629-7Prostate cancerMiR-193aHOTAIREZH2Progression |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Zhixin Ling Xiaoyan Wang Tao Tao Lei Zhang Han Guan Zonghao You Kai Lu Guangyuan Zhang Shuqiu Chen Jianping Wu Jinke Qian Hui Liu Bin Xu Ming Chen |
spellingShingle |
Zhixin Ling Xiaoyan Wang Tao Tao Lei Zhang Han Guan Zonghao You Kai Lu Guangyuan Zhang Shuqiu Chen Jianping Wu Jinke Qian Hui Liu Bin Xu Ming Chen Involvement of aberrantly activated HOTAIR/EZH2/miR-193a feedback loop in progression of prostate cancer Journal of Experimental & Clinical Cancer Research Prostate cancer MiR-193a HOTAIR EZH2 Progression |
author_facet |
Zhixin Ling Xiaoyan Wang Tao Tao Lei Zhang Han Guan Zonghao You Kai Lu Guangyuan Zhang Shuqiu Chen Jianping Wu Jinke Qian Hui Liu Bin Xu Ming Chen |
author_sort |
Zhixin Ling |
title |
Involvement of aberrantly activated HOTAIR/EZH2/miR-193a feedback loop in progression of prostate cancer |
title_short |
Involvement of aberrantly activated HOTAIR/EZH2/miR-193a feedback loop in progression of prostate cancer |
title_full |
Involvement of aberrantly activated HOTAIR/EZH2/miR-193a feedback loop in progression of prostate cancer |
title_fullStr |
Involvement of aberrantly activated HOTAIR/EZH2/miR-193a feedback loop in progression of prostate cancer |
title_full_unstemmed |
Involvement of aberrantly activated HOTAIR/EZH2/miR-193a feedback loop in progression of prostate cancer |
title_sort |
involvement of aberrantly activated hotair/ezh2/mir-193a feedback loop in progression of prostate cancer |
publisher |
BMC |
series |
Journal of Experimental & Clinical Cancer Research |
issn |
1756-9966 |
publishDate |
2017-11-01 |
description |
Abstract Background Though androgen deprivation therapy is the standard treatment for prostate cancer (PCa), most patients would inevitably progress to castration-resistant prostate cancer (CRPC) which is the main cause of PCa death. Therefore, the identification of novel molecular mechanism regulating cancer progression and achievement of new insight into target therapy would be necessary for improving the benefits of PCa patients. This study aims to study the function and regulatory mechanism of HOTAIR/EZH2/miR-193a feedback loop in PCa progression. Methods MSKCC and TCGA datasets were used to identify miR-193a expression profile in PCa. Cell Counting Kit-8 (CCK-8) assays, colony formation, invasion, migration, flow cytometry, a xenograft model and Gene Set Enrichment Analysis were used to detect and analyze the biological function of miR-193a. Then, we assessed the role of HOTAIR and EZH2 in regulation of miR-193a expression by using plasmid, lentivirus and small interfering RNA (siRNA). Luciferase reporter assays and chromatin immunoprecipitation assays were performed to detect the transcriptional activation of miR-193a by EZH2 and HOTAIR. Further, qRT-PCR and luciferase reporter assays were conducted to examine the regulatory role of miR-193a controlling the HOTAIR expression in PCa. Finally, the correlation between HOTAIR, EZH2 and miR-193a expression were analyzed using In situ hybridization and immunohistochemistry. Results We found that miR-193a was significantly downregulated in metastatic PCa through mining MSKCC and TCGA datasets. In vitro studies revealed that miR-193a inhibited PCa cell growth, suppressed migration and invasion, and promoted apoptosis; in vivo results demonstrated that overexpression of miR-193a mediated by lentivirus dramatically reduced PCa xenograft tumor growth. Importantly, we found EZH2 coupled with HOTAIR to repress miR-193a expression through trimethylation of H3K27 at miR-193a promoter in PC3 and DU145 cells. Interestingly, further evidence illustrated that miR-193a directly targets HOTAIR showing as significantly reduced HOTAIR level in miR-193a overexpressed cells and tissues. The expression level of miR-193a was inversely associated with that of HOTAIR and EZH2 in PCa. Conclusion This study firstly demonstrated that miR-193a acted as tumor suppressor in CRPC and the autoregulatory feedback loop of HOTAIR/EZH2/miR-193a served an important mechanism in PCa development. Targeting this aberrantly activated feedback loop may provide a potential therapeutic strategy. |
topic |
Prostate cancer MiR-193a HOTAIR EZH2 Progression |
url |
http://link.springer.com/article/10.1186/s13046-017-0629-7 |
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