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.

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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