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Systems Biology of Metabolic Regulation by Estrogen Receptor Signaling in Breast Cancer
Published on: March 17, 2016
Interplay between ShcA Signaling and PGC-1α Triggers Targetable Metabolic Vulnerabilities in Breast Cancer
Young Kyuen Im1,2, Ouafa Najyb3,4, Simon-Pierre Gravel3,4
1Lady Davis Institute for Medical Research, Montreal, Quebec, Canada.
Abstract:
The ShcA adaptor protein transduces oncogenic signals downstream of receptor tyrosine kinases. We show here that breast tumors engage the ShcA pathway to increase their metabolism. ShcA signaling enhanced glucose catabolism through glycolysis and oxidative phosphorylation, rendering breast cancer cells critically dependent on glucose. ShcA signaling simultaneously increased the metabolic rate and flexibility of breast cancer cells by inducing the PGC-1α transcriptional coactivator, a central regulator of mitochondrial metabolism. Breast tumors that engaged ShcA signaling were critically dependent on PGC-1α to support their increased metabolic rate. PGC-1α deletion drastically delayed breast tumor onset in an orthotopic mouse model, highlighting a key role for PGC-1α in tumor initiation. Conversely, reduced ShcA signaling impaired both the metabolic rate and flexibility of breast cancer cells, rendering them reliant on mitochondrial oxidative phosphorylation. This metabolic reprogramming exposed a targetable metabolic vulnerability, leading to a sensitization of breast tumors to inhibitors of mitochondrial complex I (biguanides). Genetic inhibition of ShcA signaling in the Polyoma virus middle T (MT) breast cancer mouse model sensitized mammary tumors to biguanides during the earliest stages of breast cancer progression. Tumor initiation and growth were selectively and severely impaired in MT/ShcA-deficient animals. These data demonstrate that metabolic reprogramming is a key component of ShcA signaling and serves an unappreciated yet vital role during breast cancer initiation and progression. These data further unravel a novel interplay between ShcA and PGC-1α in the coordination of metabolic reprogramming and demonstrate the sensitivity of breast tumors to drugs targeting oxidative phosphorylation.Significance: This study uncovers a previously unrecognized mechanism that links aberrant RTK signaling with metabolic perturbations in breast cancer and exposes metabolic vulnerabilities that can be targeted by inhibitors of oxidative phosphorylation. Cancer Res; 78(17); 4826-38. ©2018 AACR.
Insights
Breast cancer cells utilize the ShcA pathway to boost metabolism, increasing glucose dependence and reliance on PGC-1α. Targeting this metabolic reprogramming with biguanides shows promise for breast cancer treatment.
Area of Science:
- Oncology
- Molecular Biology
- Metabolism
Background:
- Receptor tyrosine kinases (RTKs) signal through adaptor proteins like ShcA.
- Aberrant RTK signaling drives oncogenesis in various cancers, including breast cancer.
- Metabolic reprogramming is a hallmark of cancer, supporting tumor growth and survival.
Purpose of the Study:
- To investigate the role of ShcA signaling in regulating breast cancer cell metabolism.
- To determine the impact of ShcA on glucose metabolism and mitochondrial function.
- To explore the therapeutic potential of targeting ShcA-mediated metabolic reprogramming.
Main Methods:
- Utilized mouse models of breast cancer (orthotopic and Polyoma virus middle T).
- Assessed metabolic parameters including glycolysis and oxidative phosphorylation.
- Investigated the role of PGC-1α in ShcA-driven metabolic changes.
- Evaluated the efficacy of biguanides (mitochondrial complex I inhibitors) in combination with ShcA inhibition.
Main Results:
- ShcA signaling enhances glucose metabolism via glycolysis and oxidative phosphorylation, increasing breast cancer cell dependence on glucose.
- ShcA induces PGC-1α, a key regulator of mitochondrial metabolism, crucial for tumor growth and initiation.
- Inhibition of ShcA signaling impairs metabolic rate and flexibility, sensitizing tumors to biguanides.
- Genetic ShcA inhibition delays tumor onset and growth in mouse models.
Conclusions:
- Metabolic reprogramming orchestrated by ShcA signaling is vital for breast cancer initiation and progression.
- A novel interplay between ShcA and PGC-1α coordinates metabolic adaptation in breast cancer.
- Targeting oxidative phosphorylation with biguanides represents a viable therapeutic strategy for ShcA-driven breast cancers.
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