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Phosphoproteome Analysis Reveals Estrogen-ER Pathway as a Modulator of mTOR Activity Via DEPTOR
Rafael Cuesta1, Marina A Gritsenko2, Vladislav A Petyuk2
1Department of Cell Biology and Anatomy, New York Medical College, Valhalla NY 10595.
Abstract:
ER-positive breast tumors represent ∼70% of all breast cancer cases. Although their treatment with endocrine therapies is effective in the adjuvant or recurrent settings, the development of resistance compromises their effectiveness. The binding of estrogen to ERα, a transcription factor, triggers the regulation of the target genes (genomic pathway). Additionally, a cytoplasmic fraction of estrogen-bound ERα activates oncogenic signaling pathways such as PI3K/AKT/mTOR (nongenomic pathway). The upregulation of the estrogenic and the PI3K/AKT/mTOR signaling pathways are frequently associated with a poor outcome. To better characterize the connection between these two pathways, we performed a phosphoproteome analysis of ER-positive MCF7 breast cancer cells treated with estrogen or estrogen and the mTORC1 inhibitor rapamycin. Many proteins were identified as estrogen-regulated mTORC1 targets and among them, DEPTOR was selected for further characterization. DEPTOR binds to mTOR and inhibits the kinase activity of both mTOR complexes mTORC1 and mTORC2, but mitogen-activated mTOR promotes phosphorylation-mediated DEPTOR degradation. Although estrogen enhances the phosphorylation of DEPTOR by mTORC1, DEPTOR levels increase in estrogen-stimulated cells. We demonstrated that DEPTOR accumulation is the result of estrogen-ERα-mediated transcriptional upregulation of DEPTOR expression. Consequently, the elevated levels of DEPTOR partially counterbalance the estrogen-induced activation of mTORC1 and mTORC2. These results underscore the critical role of estrogen-ERα as a modulator of the PI3K/AKT/mTOR signaling pathway in ER-positive breast cancer cells. Additionally, these studies provide evidence supporting the use of dual PI3K/mTOR or dual mTORC1/2 inhibitors in combination with endocrine therapies as a first-line treatment option for the patients with ER-positive advanced breast cancer.
Insights
Estrogen receptor-positive breast cancer cells utilize estrogen receptor alpha (ERα) to upregulate DEPTOR, a protein that partially counteracts mTOR signaling. This highlights ERα
Area of Science:
- Oncology
- Molecular Biology
- Cell Signaling
Background:
- Estrogen receptor-positive (ER+) breast cancer is common, and endocrine therapies face resistance.
- Estrogen binds ERα, activating genomic and nongenomic pathways, including PI3K/AKT/mTOR.
- Upregulation of these pathways correlates with poor patient outcomes.
Purpose of the Study:
- To investigate the interplay between estrogen signaling and the PI3K/AKT/mTOR pathway in ER+ breast cancer.
- To identify specific molecular targets linking these pathways.
Main Methods:
- Phosphoproteome analysis of ER+ MCF7 cells treated with estrogen and/or rapamycin.
- Characterization of DEPTOR's role in response to estrogen stimulation.
Main Results:
- Estrogen upregulates DEPTOR expression transcriptionally via ERα.
- Elevated DEPTOR levels partially inhibit estrogen-induced mTORC1 and mTORC2 activation.
- DEPTOR is identified as an estrogen-regulated mTORC1 target.
Conclusions:
- Estrogen receptor alpha critically modulates the PI3K/AKT/mTOR pathway in ER+ breast cancer.
- Dual PI3K/mTOR or mTORC1/2 inhibitors combined with endocrine therapy may benefit advanced ER+ breast cancer patients.
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