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Updated: Dec 28, 2025

Systems Biology of Metabolic Regulation by Estrogen Receptor Signaling in Breast Cancer
Published on: March 17, 2016
Estrogen-related receptors are targetable ROS sensors
Mathieu Vernier1, Catherine R Dufour1, Shawn McGuirk1
1Goodman Cancer Research Centre, McGill University, Montréal, Quebec H3A 1A3, Canada.
Abstract:
Excessive reactive oxygen species (ROS) can cause oxidative stress and consequently cell injury contributing to a wide range of diseases. Addressing the critical gaps in our understanding of the adaptive molecular events downstream ROS provocation holds promise for the identification of druggable metabolic vulnerabilities. Here, we unveil a direct molecular link between the activity of two estrogen-related receptor (ERR) isoforms and the control of glutamine utilization and glutathione antioxidant production. ERRα down-regulation restricts glutamine entry into the TCA cycle, while ERRγ up-regulation promotes glutamine-driven glutathione production. Notably, we identify increased ERRγ expression/activation as a hallmark of oxidative stress triggered by mitochondrial disruption or chemotherapy. Enhanced tumor antioxidant capacity is an underlying feature of human breast cancer (BCa) patients that respond poorly to treatment. We demonstrate that pharmacological inhibition of ERRγ with the selective inverse agonist GSK5182 increases antitumor efficacy of the chemotherapeutic paclitaxel on poor outcome BCa tumor organoids. Our findings thus underscore the ERRs as novel redox sensors and effectors of a ROS defense program and highlight the potential therapeutic advantage of exploiting ERRγ inhibitors for the treatment of BCa and other diseases where oxidative stress plays a central role.
Insights
Estrogen-related receptors (ERRs) link oxidative stress to cell metabolism. Inhibiting ERRγ enhances chemotherapy efficacy in aggressive breast cancer, offering new therapeutic strategies.
Area of Science:
- Cell Biology
- Metabolic Pathways
- Cancer Research
Background:
- Excessive reactive oxygen species (ROS) cause oxidative stress and cell injury, contributing to various diseases.
- Understanding adaptive molecular events downstream of ROS is crucial for identifying therapeutic targets.
Purpose of the Study:
- To investigate the role of estrogen-related receptors (ERRs) in regulating cellular responses to oxidative stress.
- To explore the link between ERR isoforms, glutamine metabolism, and antioxidant production.
- To evaluate ERRγ inhibition as a therapeutic strategy for breast cancer.
Main Methods:
- Investigated the molecular link between ERRα and ERRγ activity and glutamine utilization.
- Assessed the role of ERRγ in glutathione antioxidant production under oxidative stress.
- Utilized breast cancer organoid models and pharmacological inhibition of ERRγ.
Main Results:
- ERRα down-regulation restricts glutamine entry into the TCA cycle.
- ERRγ up-regulation promotes glutamine-driven glutathione production, a hallmark of oxidative stress.
- Pharmacological inhibition of ERRγ enhances paclitaxel efficacy in poor-prognosis breast cancer organoids.
Conclusions:
- Estrogen-related receptors (ERRs) act as redox sensors controlling a ROS defense program.
- Targeting ERRγ offers a potential therapeutic approach for breast cancer and other oxidative stress-related diseases.
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