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Exploiting AR-Regulated Drug Transport to Induce Sensitivity to the Survivin Inhibitor YM155
Michael D Nyquist1, Alexandra Corella1, John Burns2
1Division of Human Biology, Fred Hutchinson Cancer Research Center, Seattle, Washington.
Abstract:
Androgen receptor (AR) signaling is fundamental to prostate cancer and is the dominant therapeutic target in metastatic disease. However, stringent androgen deprivation therapy regimens decrease quality of life and have been largely unsuccessful in curtailing mortality. Recent clinical and preclinical studies have taken advantage of the dichotomous ability of AR signaling to elicit growth-suppressive and differentiating effects by administering hyperphysiologic levels of testosterone. In this study, high-throughput drug screening identified a potent synergy between high-androgen therapy and YM155, a transcriptional inhibitor of survivin (BIRC5). This interaction was mediated by the direct transcriptional upregulation of the YM155 transporter SLC35F2 by the AR. Androgen-mediated YM155-induced cell death was completely blocked by the overexpression of multidrug resistance transporter ABCB1. SLC35F2 expression was significantly correlated with intratumor androgen levels in four distinct patient-derived xenograft models, and with AR activity score in a large gene expression dataset of castration-resistant metastases. A subset of tumors had significantly elevated SLC35F2 expression and, therefore, may identify patients who are highly responsive to YM155 treatment.
Implications:
The combination of androgen therapy with YM155 represents a novel drug synergy, and SLC35F2 may serve as a clinical biomarker of response to YM155.
Insights
High-androgen therapy combined with YM155 shows promise for prostate cancer treatment. This synergy is linked to the YM155 transporter SLC35F2, potentially serving as a biomarker for patient response.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Androgen receptor (AR) signaling is crucial in prostate cancer, making it a primary therapeutic target.
- Current androgen deprivation therapies have limitations in improving survival and quality of life.
Purpose of the Study:
- To investigate the synergistic effects of hyperphysiologic testosterone and YM155 in prostate cancer.
- To identify the molecular mechanisms underlying this drug synergy and potential biomarkers.
Main Methods:
- High-throughput drug screening to identify synergistic drug combinations.
- Investigated the role of AR in regulating YM155 transporter (SLC35F2) expression.
- Utilized patient-derived xenograft models and gene expression datasets to correlate SLC35F2 with AR activity and androgen levels.
Main Results:
- A potent synergy was identified between high-androgen therapy and YM155, a survivin inhibitor.
- AR directly upregulates the YM155 transporter SLC35F2.
- SLC35F2 expression correlates with intratumor androgen levels and AR activity in preclinical models and patient data.
- ABCB1 transporter activity blocks YM155-induced cell death.
Conclusions:
- The combination of androgen therapy and YM155 presents a novel therapeutic strategy for prostate cancer.
- SLC35F2 may function as a predictive biomarker for YM155 treatment response in patients.
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