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Updated: Oct 31, 2025

MicroRNA Detection in Prostate Tumors by Quantitative Real-time PCR qPCR
Published on: May 16, 2012
Long noncoding RNA GAS5 interacts and suppresses androgen receptor activity in prostate cancer cells
Shidong Lv1, Xiaochun Pu2, Mayao Luo1
1Department of Urology, Nanfang Hospital, Southern Medical University, Guangzhou, Guangdong, China.
Abstract:
The androgen receptor (AR) plays an important role in the progression of prostate cancer and is the most important therapeutic target. However, androgen deprivation therapy will finally lead patients to progress to castration-resistant prostate cancer (CRPC). Here, we confirmed that GAS5, a long noncoding RNA, could interact and suppress AR transactivation in CRPC C4-2 cells. Knockdown GAS5 by short hairpin RNA would enhance the transcription of AR via promote AR recruitment to the promoter of its downstream target genes. Functionally, GAS5 overexpression inhibits cell proliferation partially through inhibiting AR transactivation in C4-2 cells. Moreover, knocking down GAS5 protects C4-2 cells from the docetaxel-induced cell apoptosis. In return, the suppressed AR was found to downregulate the GAS5 expression, which forms a feedback loop resulted in AR high transcription activity in CRPC. Collectively, our findings revealed the important role of GAS5 in AR axis activity regulation and CRPC progression. Targeting GAS5 to intervene the feedback loop might be a new potential therapeutic approach for the patients at CRPC stage.
Insights
Long noncoding RNA GAS5 suppresses androgen receptor (AR) activity, inhibiting prostate cancer progression. Targeting GAS5 may offer new therapeutic strategies for castration-resistant prostate cancer (CRPC).
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Androgen receptor (AR) is crucial in prostate cancer progression and a key therapeutic target.
- Androgen deprivation therapy often leads to castration-resistant prostate cancer (CRPC).
Purpose of the Study:
- To investigate the role of the long noncoding RNA GAS5 in regulating AR activity in CRPC.
- To explore GAS5 as a potential therapeutic target for CRPC.
Main Methods:
- Studied GAS5 interaction with AR transactivation in CRPC C4-2 cells.
- Utilized short hairpin RNA to knockdown GAS5.
- Assessed effects of GAS5 modulation on AR transcription, cell proliferation, and docetaxel-induced apoptosis.
Main Results:
- GAS5 suppresses AR transactivation in CRPC cells.
- GAS5 knockdown enhances AR transcription and cell proliferation.
- GAS5 knockdown protects CRPC cells from docetaxel-induced apoptosis.
- A feedback loop exists where suppressed AR downregulates GAS5, maintaining high AR transcription.
Conclusions:
- GAS5 plays a significant role in regulating AR axis activity and CRPC progression.
- Targeting the GAS5-AR feedback loop presents a potential therapeutic strategy for CRPC patients.
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