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Evaluating the Effectiveness of Cancer Drug Sensitization In Vitro and In Vivo
Published on: February 6, 2015
GABBR2 as a Downstream Effector of the Androgen Receptor Induces Cisplatin Resistance in Bladder Cancer
Mohammad Amin Elahi Najafi1,2, Masato Yasui1,2, Yuki Teramoto1,2
1Department of Pathology and Laboratory Medicine, University of Rochester Medical Center, Rochester, NY 14642, USA.
Abstract:
The precise molecular mechanisms responsible for resistance to cisplatin-based chemotherapy in patients with bladder cancer remain elusive, while we have indicated that androgen receptor (AR) activity in urothelial cancer is associated with its sensitivity. Our DNA microarray analysis in control vs. AR-knockdown bladder cancer sublines suggested that the expression of a GABA B receptor GABBR2 and AR was correlated. The present study aimed to determine the functional role of GABBR2 in modulating cisplatin sensitivity in bladder cancer. AR knockdown and dihydrotestosterone treatment considerably reduced and induced, respectively, GABBR2 expression, and the effect of dihydrotestosterone was at least partially restored by an antiandrogen hydroxyflutamide. A chromatin immunoprecipitation assay further revealed the binding of AR to the promoter region of GABBR2 in bladder cancer cells. Meanwhile, GABBR2 expression was significantly elevated in a cisplatin-resistant bladder cancer subline, compared with control cells. In AR-positive bladder cancer cells, knockdown of GABBR2 or treatment with a selective GABA B receptor antagonist, CGP46381, considerably enhanced the cytotoxic activity of cisplatin. However, no additional effect of CGP46381 on cisplatin-induced growth suppression was seen in GABBR2-knockdown cells. Moreover, in the absence of cisplatin, CGP46381 treatment and GABBR2 knockdown showed no significant changes in cell proliferation or migration. These findings suggest that GABBR2 represents a key downstream effector of AR signaling in inducing resistance to cisplatin treatment. Accordingly, inhibition of GABBR2 has the potential of being a means of chemosensitization, especially in patients with AR/GABBR2-positive bladder cancer.
Insights
Androgen receptor (AR) signaling promotes cisplatin resistance in bladder cancer by upregulating GABA B receptor GABBR2. Inhibiting GABBR2 may enhance chemotherapy effectiveness in AR/GABBR2-positive bladder cancers.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Mechanisms of cisplatin resistance in bladder cancer are not fully understood.
- Androgen receptor (AR) activity influences urothelial cancer sensitivity to chemotherapy.
- GABA B receptor GABBR2 expression correlates with AR activity.
Purpose of the Study:
- To investigate the functional role of GABBR2 in modulating cisplatin sensitivity in bladder cancer.
- To determine if GABBR2 is a downstream effector of AR signaling in cisplatin resistance.
Main Methods:
- AR knockdown and dihydrotestosterone treatment to assess GABBR2 expression.
- Chromatin immunoprecipitation assay to confirm AR binding to the GABBR2 promoter.
- GABBR2 knockdown and GABA B receptor antagonist (CGP46381) treatment to evaluate cisplatin sensitivity.
Main Results:
- AR knockdown reduced, while dihydrotestosterone induced, GABBR2 expression, partially reversed by hydroxyflutamide.
- AR binds to the GABBR2 promoter region.
- GABBR2 expression is elevated in cisplatin-resistant bladder cancer cells.
- GABBR2 knockdown or CGP46381 enhanced cisplatin cytotoxicity in AR-positive cells.
Conclusions:
- GABBR2 is a key downstream mediator of AR signaling in conferring cisplatin resistance.
- Inhibiting GABBR2 shows potential for chemosensitization in AR/GABBR2-positive bladder cancer.
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