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Hyperactivation of MAPK induces loss of ERalpha expression in breast cancer cells
A S Oh1, L A Lorant, J N Holloway
1Lombardi Cancer Center, Department of Oncology, Georgetown University Medical Center, Washington, DC 20007, USA.
Abstract:
ERalpha-negative breast tumors tend to overexpress growth factor receptors such as epidermal growth factor receptor or c-erbB-2. Raf-1 is a key intermediate in the signal transduction pathways of these receptors. High levels of constitutive Raf kinase (Deltaraf) activity imparts ERalpha- positive MCF-7 breast cancer cells with the ability to grow in the absence of estrogen. Deltaraf transfectants maintained in estrogen-depleted media showed greatly diminished responses to 17beta-estradiol or the pure antiestrogen ICI 182,780. Western blotting, ligand binding, and immunohistochemistry assays revealed a loss of ERalpha protein expression, and ribonuclease protection assays indicated that this correlated with loss of ERalpha message. In examining the basal expression of estrogen-induced genes in the stable transfectants or in transient cotransfection assays with an estrogen-response element- reporter construct and Deltaraf or constitutively active MAPK kinase (DeltaMEK), no ligand- independent activation of ERalpha was observed. Transient expression of Deltaraf and double-label immunostaining showed ERalpha was lost in those cells that transiently expressed Deltaraf. Abrogation of Raf signaling via treatment with the MEK inhibitors PD 098059 or U0126 resulted in reexpression of ERalpha. Similar studies performed with MCF-7 cells overexpressing epidermal growth factor receptor or c-erbB-2 confirmed that hyperactivation of MAPK resulted in down-regulation of ERalpha that was reversible by MEK inhibition or transfection with dominant negative ERK1 and ERK2 constructs. These data suggest that the hyperactivation of MAPK in epidermal growth factor receptor- or c-erbB-2-overexpressing breast cancer cells is directly responsible for generation of an ERalpha-negative phenotype and, more importantly, that this process may be abrogated by inhibiting these pathways, thus restoring ERalpha expression.
Insights
Constitutive activation of Raf kinase signaling in estrogen receptor-alpha (ERalpha)-positive breast cancer cells leads to ERalpha loss. Inhibiting MAPK pathways can restore ERalpha expression, suggesting a therapeutic target for ERalpha-negative tumors.
Area of Science:
- Oncology
- Molecular Biology
- Cell Signaling
Background:
- Estrogen receptor-alpha (ERalpha)-negative breast tumors often overexpress growth factor receptors like epidermal growth factor receptor (EGFR) and c-erbB-2.
- Raf-1 kinase is a crucial intermediate in the signaling pathways of these receptors.
Purpose of the Study:
- To investigate the role of constitutive Raf kinase activity in ERalpha expression in breast cancer cells.
- To determine if hyperactivation of MAPK signaling contributes to the ERalpha-negative phenotype and if this can be reversed.
Main Methods:
- Stable and transient transfection of MCF-7 cells with constitutively active Raf kinase (Deltaraf) or MAPK kinase (DeltaMEK).
- Western blotting, ligand binding assays, immunohistochemistry, and ribonuclease protection assays to assess ERalpha protein and message levels.
- Treatment with MEK inhibitors (PD 098059, U0126) and transfection with dominant-negative ERK constructs.
Main Results:
- Constitutive activation of Raf signaling (Deltaraf) in ERalpha-positive MCF-7 cells led to a significant loss of ERalpha protein and message.
- This loss of ERalpha was associated with diminished response to estrogen and antiestrogen treatments.
- Inhibition of Raf/MEK/ERK signaling pathways using MEK inhibitors or dominant-negative ERK constructs restored ERalpha expression.
- Hyperactivation of MAPK signaling in cells overexpressing EGFR or c-erbB-2 also resulted in ERalpha down-regulation.
Conclusions:
- Hyperactivation of the MAPK pathway, driven by growth factor receptor overexpression, directly causes the ERalpha-negative phenotype in breast cancer cells.
- Inhibiting MAPK signaling pathways presents a potential therapeutic strategy to restore ERalpha expression in ERalpha-negative breast cancers.