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Generation of Prostate Cancer Cell Models of Resistance to the Anti-mitotic Agent Docetaxel
Published on: September 8, 2017
Exploiting epigenetic targets to overcome taxane resistance in prostate cancer
Buse Cevatemre1, Ipek Bulut2, Beyza Dedeoglu3
1Koc University Research Center for Translational Medicine, Istanbul, Turkey.
Abstract:
The development of taxane resistance remains a major challenge for castration resistant prostate cancer (CR-PCa), despite the effectiveness of taxanes in prolonging patient survival. To uncover novel targets, we performed an epigenetic drug screen on taxane (docetaxel and cabazitaxel) resistant CR-PCa cells. We identified BRPF reader proteins, along with several epigenetic groups (CBP/p300, Menin-MLL, PRMT5 and SIRT1) that act as targets effectively reversing the resistance mediated by ABCB1. Targeting BRPFs specifically resulted in the resensitization of resistant cells, while no such effect was observed on the sensitive compartment. These cells were successfully arrested at the G2/M phase of cell cycle and underwent apoptosis upon BRPF inhibition, confirming the restoration of taxane susceptibility. Pharmacological inhibition of BRPFs reduced ABCB1 activity, indicating that BRPFs may be involved in an efflux-related mechanism. Indeed, ChIP-qPCR analysis confirmed binding of BRPF1 to the ABCB1 promoter suggesting direct regulation of the ABCB1 gene at the transcriptional level. RNA-seq analysis revealed that BRPF1 knockdown affects the genes enriched in mTORC1 and UPR signaling pathways, revealing potential mechanisms underlying its functional impact, which is further supported by the enhancement of taxane response through the combined inhibition of ABCB1 and mTOR pathways, providing evidence for the involvement of multiple BRPF1-regulated pathways. Beyond clinical attributes (Gleason score, tumor stage, therapy outcome, recurrence), metastatic PCa databases further supported the significance of BRPF1 in taxane resistance, as evidenced by its upregulation in taxane-exposed PCa patients.
Insights
Bromodomain and RING finger domain-containing protein (BRPF) inhibition resensitizes castration-resistant prostate cancer (CR-PCa) to taxanes by targeting ABCB1 efflux. This epigenetic strategy restores drug susceptibility and offers new therapeutic avenues for resistant prostate cancer.
Area of Science:
- Epigenetics and Cancer Therapeutics
- Prostate Cancer Research
- Drug Resistance Mechanisms
Background:
- Taxane resistance is a significant obstacle in treating castration-resistant prostate cancer (CR-PCa), limiting treatment efficacy.
- Identifying novel therapeutic targets is crucial for overcoming taxane resistance and improving patient outcomes in CR-PCa.
Purpose of the Study:
- To identify novel epigenetic targets that can reverse taxane resistance in CR-PCa.
- To investigate the role of BRPF reader proteins in taxane resistance mediated by ABCB1.
Main Methods:
- Conducted an epigenetic drug screen on taxane-resistant CR-PCa cells.
- Utilized BRPF inhibition, cell cycle analysis, apoptosis assays, and pharmacological inhibition.
- Performed Chromatin Immunoprecipitation followed by quantitative PCR (ChIP-qPCR) and RNA sequencing (RNA-seq).
Main Results:
- BRPF reader proteins were identified as key targets that reverse ABCB1-mediated taxane resistance.
- BRPF inhibition resensitized resistant CR-PCa cells, causing G2/M cell cycle arrest and apoptosis.
- BRPF1 was found to directly regulate the ABCB1 promoter, impacting mTORC1 and UPR signaling pathways.
Conclusions:
- Targeting BRPFs represents a promising strategy to overcome taxane resistance in CR-PCa by restoring drug sensitivity.
- BRPF1's role in regulating ABCB1 and associated signaling pathways offers new insights into taxane resistance mechanisms.
- Combined inhibition of ABCB1 and mTOR pathways, alongside BRPF targeting, may enhance therapeutic responses in resistant prostate cancer.
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