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Published on: October 30, 2013
Androgen Receptor Signaling Induces Cisplatin Resistance via Down-Regulating GULP1 Expression in Bladder Cancer
Yuki Teramoto1,2, Guiyang Jiang1,2,3, Takuro Goto1,2
1Department of Pathology & Laboratory Medicine, University of Rochester Medical Center, Rochester, NY 14642, USA.
Abstract:
The underlying molecular mechanisms of resistance to cisplatin-based systemic chemotherapy in bladder cancer patients remain to be elucidated, while the link between androgen receptor (AR) activity and chemosensitivity in urothelial cancer has been implicated. Our DNA microarray analysis in control vs. AR knockdown bladder cancer lines identified GULP1 as a potential target of AR signaling. We herein determined the relationship between AR activity and GULP1 expression in bladder cancer cells and then assessed the functional role of GULP1 in cisplatin sensitivity. Androgen treatment in AR-positive cells or AR overexpression in AR-negative cells considerably reduced the levels of GULP1 expression. Chromatin immunoprecipitation further showed direct interaction of AR with the promoter region of GULP1. Meanwhile, GULP1 knockdown sublines were significantly more resistant to cisplatin treatment compared with respective controls. GULP1 knockdown also resulted in a significant decrease in apoptosis, as well as a significant increase in G2/M phases, when treated with cisplatin. In addition, GULP1 was immunoreactive in 74% of muscle-invasive bladder cancers from patients who had subsequently undergone neoadjuvant chemotherapy, including 53% of responders showing moderate (2+)/strong (3+) expression vs. 23% of non-responders showing 2+/3+ expression (P = 0.044). These findings indicate that GULP1 represents a key downstream effector of AR signaling in enhancing sensitivity to cisplatin treatment.
Insights
GULP1, a target of androgen receptor (AR) signaling, enhances cisplatin sensitivity in bladder cancer. Reduced GULP1 expression correlates with increased resistance to chemotherapy, suggesting GULP1 as a potential therapeutic target.
Area of Science:
- Oncology
- Molecular Biology
- Urothelial Carcinomas
Background:
- Mechanisms of cisplatin resistance in bladder cancer are not fully understood.
- Androgen receptor (AR) activity is implicated in urothelial cancer chemosensitivity.
Purpose of the Study:
- To investigate the relationship between AR activity and GULP1 expression in bladder cancer.
- To determine the functional role of GULP1 in cisplatin sensitivity.
Main Methods:
- DNA microarray analysis in AR knockdown bladder cancer cell lines.
- Androgen treatment and AR overexpression experiments.
- Chromatin immunoprecipitation assays.
- Assessment of cisplatin sensitivity, apoptosis, and cell cycle progression in GULP1 knockdown cells.
- Immunohistochemical analysis of GULP1 expression in patient tumor samples.
Main Results:
- AR signaling directly regulates GULP1 expression, with androgen treatment or AR overexpression reducing GULP1 levels.
- GULP1 knockdown significantly increased resistance to cisplatin, decreased apoptosis, and promoted G2/M phase arrest.
- High GULP1 expression (2+/3+) was observed in 53% of chemotherapy responders versus 23% of non-responders in muscle-invasive bladder cancer patients.
Conclusions:
- GULP1 is a key downstream target of AR signaling that enhances sensitivity to cisplatin treatment in bladder cancer.
- GULP1 expression levels may serve as a predictive biomarker for response to neoadjuvant chemotherapy in bladder cancer patients.
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