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Published on: December 19, 2018
Darolutamide antagonizes androgen signaling by blocking enhancer and super-enhancer activation
Simon J Baumgart1, Ekaterina Nevedomskaya1, Ralf Lesche1
1Research and Development, Pharmaceuticals, Bayer AG, Berlin, Germany.
Abstract:
Prostate cancer (PCa) is one of the most frequent tumor types in the male Western population. Early-stage PCa and late-stage PCa are dependent on androgen signaling, and inhibitors of the androgen receptor (AR) axis represent the standard therapy. Here, we studied in detail the global impact of darolutamide, a newly approved AR antagonist, on the transcriptome and AR-bound cistrome in two PCa cell models. Darolutamide strongly depleted the AR from gene regulatory regions and abolished AR-driven transcriptional signaling. Enhancer activation was blocked at the chromatin level as evaluated by H3K27 acetylation (H3K27ac), H3K4 monomethylation (H3K4me1), and FOXA1, MED1, and BRD4 binding. We identified genomic regions with high affinities for the AR in androgen-stimulated, but also in androgen-depleted conditions. A similar AR affinity pattern was observed in healthy and PCa tissue samples. High FOXA1, BRD4, H3K27ac, and H3K4me1 levels were found to mark regions showing AR binding in the hormone-depleted setting. Conversely, low FOXA1, BRD4, and H3K27ac levels were observed at regulatory sites that responded strongly to androgen stimulation, and AR interactions at these sites were blocked by darolutamide. Beside marked loss of AR occupancy, FOXA1 recruitment to chromatin was also clearly reduced after darolutamide treatment. We furthermore identified numerous androgen-regulated super-enhancers (SEs) that were associated with hallmark androgen and cell proliferation-associated gene sets. Importantly, these SEs are also active in PCa tissues and sensitive to darolutamide treatment in our models. Our findings demonstrate that darolutamide is a potent AR antagonist blocking genome-wide AR enhancer and SE activation, and downstream transcription. We also show the existence of a dynamic AR cistrome that depends on the androgen levels and on high AR affinity regions present in PCa cell lines and also in tissue samples.
Insights
Darolutamide effectively blocks androgen receptor (AR) signaling in prostate cancer (PCa) by depleting AR from gene regulatory regions and inhibiting enhancer activation. This potent AR antagonist shows promise in PCa treatment by disrupting AR-driven transcription.
Area of Science:
- Oncology
- Molecular Biology
- Genomics
Background:
- Prostate cancer (PCa) is a prevalent malignancy in Western males, heavily reliant on androgen receptor (AR) signaling for growth.
- Androgen receptor (AR) axis inhibitors are standard therapy for both early and late-stage PCa.
Purpose of the Study:
- To investigate the global impact of darolutamide, a novel AR antagonist, on the transcriptome and AR-bound cistrome in PCa cell models.
- To elucidate the mechanisms by which darolutamide affects AR binding, enhancer activation, and downstream gene expression.
Main Methods:
- Analysis of transcriptome and AR-bound cistrome in two PCa cell models treated with darolutamide.
- Chromatin-level evaluation using H3K27 acetylation (H3K27ac), H3K4 monomethylation (H3K4me1), and binding of FOXA1, MED1, and BRD4.
- Identification of genomic regions with high AR affinity in various conditions and tissue samples.
Main Results:
- Darolutamide significantly depleted AR from gene regulatory regions, abolishing AR-driven transcription.
- Enhancer activation was blocked at the chromatin level, evidenced by reduced H3K27ac, H3K4me1, and binding of key factors.
- Androgen-regulated super-enhancers (SEs) associated with proliferation were identified, active in PCa tissues and sensitive to darolutamide.
Conclusions:
- Darolutamide is a potent AR antagonist that effectively blocks genome-wide AR enhancer and SE activation, as well as downstream transcription in PCa models.
- A dynamic AR cistrome exists, influenced by androgen levels and specific high-affinity regions found in PCa cell lines and tissues.
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