Exploitation of Castration-Resistant Prostate Cancer Transcription Factor Dependencies by the Novel BET Inhibitor

Emily J Faivre1, Denise Wilcox2, Xiaoyu Lin2

  • 1AbbVie Inc., North Chicago, Illinois. emily.faivre@abbvie.com yu.shen@abbvie.com.

Insights

BET inhibitor ABBV-075 targets BRD4 to block androgen receptor-driven gene expression in castration-resistant prostate cancer. This offers a new therapeutic strategy for patients resistant to current treatments.

Area of Science:

  • Oncology
  • Molecular Biology
  • Drug Discovery

Background:

  • BET (bromodomain and extra terminal) inhibitors are investigated for cancer treatment.
  • BRD4, a BET family member, sustains pathogenic gene expression in malignancies.
  • Castration-resistant prostate cancer (CRPC) progression is driven by transcription factors like the androgen receptor (AR).

Purpose of the Study:

  • To test if AR-driven CRPC progression depends on BRD4.
  • To evaluate the efficacy of BET inhibitor ABBV-075 in CRPC models.

Main Methods:

  • Assessed ABBV-075's effect on DHT-stimulated AR target gene transcription.
  • Investigated BRD4 recruitment to AR-occupied enhancers using ChIP.
  • Measured changes in enhancer composition and function (AR, H3K27Ac, eRNA).
  • Evaluated ABBV-075's antiproliferative activity in resistant CRPC models.

Main Results:

  • ABBV-075 inhibited DHT-stimulated AR target gene transcription without affecting AR protein levels.
  • ABBV-075 disrupted BRD4 recruitment to AR-occupied enhancers.
  • BET inhibition reduced AR and H3K27Ac signals and eRNA transcription.
  • ABBV-075 showed potent antiproliferative activity against resistant CRPC models, including those with AR-V7 and AR mutations.

Conclusions:

  • AR and BRD4 are critical for CRPC progression.
  • ABBV-075 effectively inhibits AR-driven transcription and proliferation in CRPC.
  • ABBV-075 is a promising therapeutic option for CRPC patients resistant to antiandrogens.

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