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Updated: Apr 24, 2026

Systems Biology of Metabolic Regulation by Estrogen Receptor Signaling in Breast Cancer
Published on: March 17, 2016
AR collaborates with ERα in aromatase inhibitor-resistant breast cancer
Yassine Rechoum1, Daniela Rovito, Domenico Iacopetta
1Lester and Sue Smith Breast Center, Baylor College of Medicine, One Baylor Plaza, Houston, TX, 77030, USA.
Abstract:
Androgen receptor (AR) is an attractive target in breast cancer because of its frequent expression in all the molecular subtypes, especially in estrogen receptor (ER)-positive luminal breast cancers. We have previously shown a role for AR overexpression in tamoxifen resistance. We engineered ER-positive MCF-7 cells to overexpress aromatase and AR (MCF-7 AR Arom cells) to explore the role of AR in aromatase inhibitor (AI) resistance. Androstendione (AD) was used as a substrate for aromatization to estrogen. The nonsteroidal AI anastrazole (Ana) inhibited AD-stimulated growth and ER transcriptional activity in MCF-7 Arom cells, but not in MCF-7 AR Arom cells. Enhanced activation of pIGF-1R and pAKT was found in AR-overexpressing cells, and their inhibitors restored sensitivity to Ana, suggesting that these pathways represent escape survival mechanisms. Sensitivity to Ana was restored with AR antagonists, or the antiestrogen fulvestrant. These results suggest that both AR and ERα must be blocked to restore sensitivity to hormonal therapies in AR-overexpressing ERα-positive breast cancers. AR contributed to ERα transcriptional activity in MCF-7 AR Arom cells, and AR and ERα co-localized in AD + Ana-treated cells, suggesting cooperation between the two receptors. AR-mediated resistance was associated with a failure to block ER transcriptional activity and enhanced up-regulation of AR and ER-responsive gene expression. Clinically, it may be necessary to block both AR and ERα in patients whose tumors express elevated levels of AR. In addition, inhibitors to the AKT/IGF-1R signaling pathways may provide alternative approaches to block escape pathways and restore hormone sensitivity in resistant breast tumors.
Insights
Blocking both androgen receptor (AR) and estrogen receptor alpha (ERα) is crucial for restoring hormone sensitivity in AR-overexpressing breast cancers. Targeting AKT/IGF-1R pathways may also overcome resistance to aromatase inhibitors.
Area of Science:
- Oncology
- Endocrinology
- Molecular Biology
Background:
- Androgen receptor (AR) is frequently expressed in breast cancer, particularly ER-positive subtypes.
- AR overexpression has been linked to tamoxifen resistance.
- Aromatase inhibitors (AIs) are standard endocrine therapy for ER-positive breast cancer.
Purpose of the Study:
- To investigate the role of AR in resistance to aromatase inhibitors (AIs) in ER-positive breast cancer.
- To explore potential therapeutic strategies to overcome AI resistance mediated by AR.
Main Methods:
- Engineered ER-positive MCF-7 cells to overexpress aromatase and AR (MCF-7 AR Arom cells).
- Assessed the effect of anastrozole (Ana) on cell growth and ER transcriptional activity.
- Investigated the role of IGF-1R/AKT signaling pathways and evaluated AR antagonists and fulvestrant.
Main Results:
- AR overexpression conferred resistance to anastrozole (Ana) by maintaining ER transcriptional activity.
- Enhanced activation of pIGF-1R and pAKT pathways was observed in AR-overexpressing cells.
- Blocking AR with antagonists or fulvestrant, or inhibiting IGF-1R/AKT pathways, restored sensitivity to Ana.
Conclusions:
- Both AR and ERα must be blocked to restore sensitivity to hormonal therapies in AR-overexpressing ERα-positive breast cancers.
- AR and ERα cooperate in mediating resistance.
- Inhibitors of AKT/IGF-1R signaling pathways offer potential alternative strategies to overcome hormone resistance.
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