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Updated: Mar 14, 2026

A Bioluminescent and Fluorescent Orthotopic Syngeneic Murine Model of Androgen-dependent and Castration-resistant Prostate Cancer
Published on: March 6, 2018
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.
Abstract:
Competitive inhibitors of acetyl-lysine binding to the bromodomains of the BET (bromodomain and extra terminal) family are being developed for the treatment of solid and hematologic malignancies. The function of BET family member BRD4 at enhancers/superenhancers has been shown to sustain signal-dependent or pathogenic gene expression programs. Here, the hypothesis was tested that the transcription factor drivers of castration-resistant prostate cancer (CRPC) clinical progression, including the androgen receptor (AR), are critically dependent on BRD4 and thus represent a sensitive solid tumor indication for the BET inhibitor ABBV-075. DHT-stimulated transcription of AR target genes was inhibited by ABBV-075 without significant effect on AR protein expression. Furthermore, ABBV-075 disrupted DHT-stimulated recruitment of BET family member BRD4 to gene-regulatory regions cooccupied by AR, including the well-established PSA and TMPRSS2 enhancers. Persistent BET inhibition disrupted the composition and function of AR-occupied enhancers as measured by a reduction in AR and H3K27Ac ChIP signal and inhibition of enhancer RNA transcription. ABBV-075 displayed potent antiproliferative activity in multiple models of resistance to second-generation antiandrogens and inhibited the activity of the AR splice variant AR-V7 and ligand-binding domain gain-of-function mutations, F877L and L702H. ABBV-075 was also a potent inhibitor of MYC and the TMPRSS2-ETS fusion protein, important parallel transcription factor drivers of CRPC.
Implications:
The ability of BET family inhibitor ABBV-075 to inhibit transcription activation downstream of the initiating events of transcription factors like AR and TMPRSS2:ETS fusion proteins provides a promising therapeutic option for CRPC patients who have developed resistance to second-generation antiandrogens. Mol Cancer Res; 15(1); 35-44. ©2016 AACR.
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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