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Updated: Jun 25, 2026

Systems Biology of Metabolic Regulation by Estrogen Receptor Signaling in Breast Cancer
Published on: March 17, 2016
ER re-expression and re-sensitization to endocrine therapies in ER-negative breast cancers
Joeli A Brinkman1, Dorraya El-Ashry
1University of Miami, Miller School of Medicine, Department of Medicine, Sylvester Comprehensive Cancer Center, Miami, FL 33136, USA.
Abstract:
Breast cancer is the leading cause of cancer amongst women in the westernized world. The presence or absence of ERalpha in breast cancers is an important prognostic indicator. About 30-40% of breast cancers lack detectable ERalpha protein. ERalpha- breast cancers are resistant to endocrine therapies and have a worse prognosis than ERalpha+ breast cancers. Since expression of ERalpha is necessary for response to endocrine therapies, investigational studies are ongoing in order to understand the generation of the ERalpha- phenotype and develop interventions to restore ERalpha expression in ERalpha- breast cancers. DNA methylation and chromatin remodeling are two epigenetic mechanisms that have been linked with the lack of ERalpha expression and in these cases; demethylation of the ERalpha promoter or treatment with HDAC inhibitors shows promise in restoring ERalpha expression in ERalpha- breast cancers. Two additional potential mechanisms underlying generation of the ERalpha- phenotype involve E6-AP and Src, both of which have been shown to be elevated in ERalpha- breast cancer and can drive the proteasomal degradation of ERalpha. Recently, studies have demonstrated that upregulated growth factor signaling due to hyperactive MAPK activity significantly contributes to generation of the ERalpha- phenotype and that inhibition of MAPK activity can cause re-expression of the ERalpha and restore sensitivity to endocrine therapies. Given the challenges in treating ERalpha- breast cancer, understanding and manipulating the cellular mechanisms that effect expression of ERalpha are imperative in order to restore sensitivity to endocrine therapies and to design novel therapeutics for the treatment of ERalpha- breast cancers.
Insights
Estrogen receptor alpha (ERalpha)-negative breast cancers resist endocrine therapies. Understanding and targeting mechanisms like MAPK signaling can restore ERalpha expression, improving treatment outcomes for this aggressive cancer subtype.
Area of Science:
- Oncology
- Molecular Biology
- Epigenetics
Background:
- Breast cancer is a leading cause of cancer in women, with ERalpha status being a key prognostic factor.
- Approximately 30-40% of breast cancers are ERalpha-negative (ERalpha-), exhibiting resistance to endocrine therapies and poorer prognoses.
- Restoring ERalpha expression in ERalpha- breast cancers is crucial for improving treatment sensitivity and patient outcomes.
Purpose of the Study:
- To investigate the molecular mechanisms driving the loss of ERalpha expression in breast cancer.
- To identify potential therapeutic strategies for restoring ERalpha expression and sensitivity to endocrine therapies in ERalpha- breast cancers.
Main Methods:
- Review of epigenetic mechanisms including DNA methylation and chromatin remodeling.
- Analysis of protein degradation pathways involving E6-AP and Src.
- Investigation of growth factor signaling and MAPK pathway hyperactivity.
Main Results:
- Epigenetic modifications (demethylation, HDAC inhibition) show promise in restoring ERalpha expression.
- E6-AP and Src can promote ERalpha proteasomal degradation.
- Hyperactive MAPK signaling significantly contributes to the ERalpha- phenotype, and its inhibition can restore ERalpha expression and endocrine therapy sensitivity.
Conclusions:
- Multiple mechanisms, including epigenetic changes, protein degradation, and MAPK signaling, contribute to ERalpha loss in breast cancer.
- Targeting these mechanisms, particularly MAPK activity, offers a promising strategy to re-sensitize ERalpha- breast cancers to endocrine therapies.
- Further research into these pathways is imperative for developing novel therapeutics for ERalpha- breast cancers.
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