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Androgen Receptor-Interacting Proteins in Prostate Cancer Development and Therapy Resistance
1Experimental Urology, Department of Urology, Medical University of Innsbruck, Innsbruck, Austria.
Abstract:
Endocrine therapy for prostate cancer is based on the use of drugs that diminish androgen concentration and androgen receptor (AR) signaling inhibitors and is limited by the functional consequences of AR point mutations and increased expression of constitutively active receptors. Many coactivators (>280) interact with different AR regions. Most studies have determined the expression of coactivators and their effects in the presence of increasing concentrations of androgen or the antiandrogen enzalutamide. The p160 group of coactivators (SRC-1, SRC-2, and SRC-3) is highly expressed in prostate cancer and contributes to ligand-dependent activation of the receptor in models that represent therapy-sensitive and therapy-resistant cell lines. The transcriptional coactivators p300 and CREB-binding protein (CBP) are implicated in the regulation of a large number of cellular events, such as proliferation, apoptosis, migration, and invasion. AR coactivators also may predict biochemical and clinical recurrence. The AR coactivator expression, which is enhanced in enzalutamide resistance, includes growth regulating estrogen receptor binding 1 (GREB1) and GATA-binding protein 2 (GATA2). Several coactivators also activate AR-unrelated signaling pathways, such as those of insulin-like growth factors, which inhibit apoptosis in cancer cells. They are expressed in multiple models of resistance to therapy and can be targeted by various inhibitors in vitro and in vivo. The role of the glucocorticoid receptor in endocrine therapy-resistant prostate cancer has been documented previously. Specific coactivators may interact with the glucocorticoid receptor, thus contributing to therapy failure.
Insights
Prostate cancer endocrine therapy faces resistance due to androgen receptor (AR) mutations and coactivator activity. Targeting AR coactivators offers a new strategy to overcome treatment failure and improve outcomes.
Area of Science:
- Oncology
- Molecular Biology
- Endocrinology
Background:
- Endocrine therapy for prostate cancer targets androgen receptor (AR) signaling but is limited by AR mutations and overexpression.
- Coactivators are crucial for AR function, and their expression patterns are linked to therapy response and resistance.
Purpose of the Study:
- To explore the role of AR coactivators in prostate cancer endocrine therapy resistance.
- To identify potential therapeutic targets among coactivators that mediate resistance.
Main Methods:
- Analysis of coactivator expression in therapy-sensitive and resistant prostate cancer models.
- Investigating the interaction of coactivators with AR and other signaling pathways.
Main Results:
- Specific coactivators, including the p160 family, p300, CBP, GREB1, and GATA2, are highly expressed in prostate cancer and contribute to AR activation.
- Coactivator expression is enhanced in enzalutamide-resistant models and can activate AR-unrelated pathways like insulin-like growth factor signaling.
- Coactivators may predict recurrence and contribute to therapy failure by interacting with AR and potentially the glucocorticoid receptor.
Conclusions:
- AR coactivators play a significant role in prostate cancer endocrine therapy resistance.
- Targeting coactivators presents a promising strategy to overcome resistance and improve treatment efficacy in prostate cancer.
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