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A Bioluminescent and Fluorescent Orthotopic Syngeneic Murine Model of Androgen-dependent and Castration-resistant Prostate Cancer
Published on: March 6, 2018
Targeting Androgen Receptor Activation Function-1 with EPI to Overcome Resistance Mechanisms in Castration-Resistant
Yu Chi Yang1, Carmen Adriana Banuelos1, Nasrin R Mawji1
1Department of Genome Sciences Centre, BC Cancer Agency, Vancouver, British Columbia, Canada.
Purpose:
Persistent androgen receptor (AR) transcriptional activity is clinically evident in castration-resistant prostate cancer (CRPC). Therefore, AR remains as a viable therapeutic target for CRPC. All current hormonal therapies target the C-terminus ligand-binding domain (LBD) of AR. By using EPI to target AR activation function-1 (AF-1), in the N-terminal domain that is essential for AR transactivation, we evaluate the ability of EPI to overcome several clinically relevant AR-related mechanisms of resistance.
Experimental Design:
To study the effect of EPI on AR transcriptional activity against overexpressed coactivators, such as SRC1-3 and p300, luciferase reporter assays were performed using LNCaP cells. AR-negative COS-1 cells were employed for reporter assays to examine whether the length of polyglutamine tract affects inhibition by EPI. The effect of EPI on constitutively active AR splice variants was studied in LNCaP95 cells, which express AR-V7 variant. To evaluate the effect of EPI on the proliferation of LNCaP95 cells, we performed in vitro BrdUrd incorporation assay and in vivo studies using xenografts in mice.
Results:
EPI effectively overcame several molecular alterations underlying aberrant AR activity, including overexpressed coactivators, AR gain-of-function mutations, and constitutively active AR-V7. EPI inhibited AR transcriptional activity regardless of the length of polyglutamine tract. Importantly, EPI significantly inhibited the in vitro and in vivo proliferation of LNCaP95 prostate cancer cells, which are androgen independent and enzalutamide resistant.
Conclusions:
These findings support EPI as a promising therapeutic agent to treat CRPC, particularly against tumors driven by constitutively active AR splice variants that are resistant to LBD-targeting drugs. Clin Cancer Res; 22(17); 4466-77. ©2016 AACRSee related commentary by Sharp et al., p. 4280.
Insights
EPI effectively targets androgen receptor (AR) activation function-1, overcoming resistance in castration-resistant prostate cancer (CRPC). This novel approach inhibits AR activity and proliferation in enzalutamide-resistant cells.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Persistent androgen receptor (AR) transcriptional activity drives castration-resistant prostate cancer (CRPC).
- Current therapies target the AR ligand-binding domain (LBD), leading to resistance.
- AR activation function-1 (AF-1) in the N-terminal domain is crucial for AR transactivation.
Purpose of the Study:
- To evaluate EPI's efficacy in overcoming AR-related resistance mechanisms in CRPC.
- To assess EPI's ability to inhibit AR transcriptional activity by targeting AF-1.
- To determine if EPI can overcome resistance caused by coactivator overexpression, mutations, or AR splice variants.
Main Methods:
- Luciferase reporter assays in LNCaP and COS-1 cells to assess EPI's effect on AR transcriptional activity and polyglutamine tract length.
- Studies in LNCaP95 cells (expressing AR-V7) to evaluate EPI's effect on constitutively active AR splice variants.
- In vitro BrdUrd incorporation and in vivo xenograft studies in mice to assess EPI's impact on LNCaP95 cell proliferation.
Main Results:
- EPI effectively inhibited AR transcriptional activity despite coactivator overexpression, AR gain-of-function mutations, and AR-V7.
- EPI demonstrated efficacy irrespective of the polyglutamine tract length.
- EPI significantly inhibited both in vitro and in vivo proliferation of androgen-independent, enzalutamide-resistant LNCaP95 cells.
Conclusions:
- EPI shows promise as a therapeutic agent for CRPC.
- EPI is particularly effective against CRPC tumors driven by constitutively active AR splice variants resistant to LBD-targeting drugs.
- EPI represents a potential strategy to overcome resistance to current hormonal therapies.
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