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.

Cell Death & Disease
|February 12, 2024
PubMed

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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