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Published on: November 15, 2013
Interplay between Cytoplasmic and Nuclear Androgen Receptor Splice Variants Mediates Castration Resistance
Yang Zhan1,2, Guanyi Zhang3, Xiaojie Wang1
1College of Life Sciences, National Engineering Laboratory for AIDS Vaccine, Jilin University, Changchun, China.
Abstract:
Androgen receptor splice variants (AR-V) are implicated in resistance of prostate cancer to androgen-directed therapies. When expressed alone in cells, some AR-Vs (e.g., AR-V7) localize primarily to the nucleus, whereas others (e.g., AR-V1, AR-V4, and AR-V6) localize mainly to the cytoplasm. Significantly, the latter are often coexpressed with the nucleus-predominant AR-Vs and the full-length AR (AR-FL). An important question to be addressed is whether the cytoplasmic-localized AR-Vs play a role in castration-resistant prostate cancer (CRPC) through interaction with the nucleus-predominant AR-Vs and AR-FL. Here, it is demonstrated that AR-V1, -V4, and -V6 can dimerize with both AR-V7 and AR-FL. Consequently, AR-V7 and androgen-bound AR-FL induced nuclear localization of AR-V1, -V4, and -V6, and these variants, in turn, mitigated the ability of the antiandrogen enzalutamide to inhibit androgen-induced AR-FL nuclear localization. Interestingly, the impact of nuclear localization of AR-V4 and -V6 on AR transactivation differs from that of AR-V1. Nuclear localization leads to an increased ability of AR-V4 and -V6 to transactivate both canonical AR targets and AR-V-specific targets and to confer castration-resistant cell growth. However, although AR-V1, which lacks inherent transcriptional activity, appears to activate AR-FL in an androgen-independent manner, it significantly antagonizes AR-V7 transactivation. Together, these data demonstrate that the complex interactions among different AR-Vs and AR-FL play a significant role in castration-resistant disease.
Implications:
This study suggests important consequences for clinical castration resistance due to simultaneous expression of AR-FL and AR-Vs in patient tumors and suggests that dissecting these interactions should help develop effective strategies to disrupt AR-V signaling. Mol Cancer Res; 15(1); 59-68. ©2016 AACR.
Insights
Androgen receptor splice variants (AR-Vs) interact with full-length AR (AR-FL) to drive castration-resistant prostate cancer. Understanding these complex interactions is key to developing new therapies targeting AR-V signaling.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Androgen receptor splice variants (AR-Vs) are key drivers of resistance in prostate cancer treated with androgen-directed therapies.
- AR-Vs can localize to the nucleus or cytoplasm, and are often coexpressed with full-length AR (AR-FL).
Purpose of the Study:
- To investigate the role of cytoplasmic AR-Vs in castration-resistant prostate cancer (CRPC) through interactions with nuclear AR-Vs and AR-FL.
- To determine if AR-V interactions influence treatment resistance and disease progression.
Main Methods:
- Cellular localization studies of AR-Vs and AR-FL.
- Dimerization assays to assess AR-V and AR-FL interactions.
- Enzalutamide sensitivity assays.
- AR transactivation assays for canonical and AR-V-specific targets.
Main Results:
- AR-V1, AR-V4, and AR-V6 dimerize with AR-V7 and AR-FL.
- AR-V7 and AR-FL induce nuclear localization of AR-V1, AR-V4, and AR-V6.
- Nuclear AR-V4 and AR-V6 enhance AR transactivation and promote castration-resistant growth.
- AR-V1 antagonizes AR-V7 transactivation but activates AR-FL in an androgen-independent manner.
- AR-V interactions mitigate enzalutamide's efficacy.
Conclusions:
- Complex interactions among AR-Vs and AR-FL are critical in the development of castration-resistant prostate cancer.
- Dissecting these AR-V signaling pathways is essential for developing effective therapeutic strategies.
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