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Updated: Jun 4, 2026

Studying TGF-β Signaling and TGF-β-induced Epithelial-to-mesenchymal Transition in Breast Cancer and Normal Cells
Published on: October 27, 2020
The IGF pathway regulates ERα through a S6K1-dependent mechanism in breast cancer cells
Marc A Becker1, Yasir H Ibrahim, Xiaojiang Cui
1Department of Pharmacology, Masonic Cancer Center, University of Minnesota, Minneapolis, Minnesota 55455, USA.
Abstract:
The IGF pathway stimulates malignant behavior of breast cancer cells. Herein we identify the mammalian target of rapamycin (mTOR)/S6 kinase 1 (S6K1) axis as a critical component of IGF and estrogen receptor (ER)α cross talk. The insulin receptor substrate (IRS) adaptor molecules function downstream of IGF-I receptor and dictate a specific biological response, in which IRS-1 drives proliferation and IRS-2 is linked to motility. Although rapamycin-induced mTOR inhibition has been shown to block IGF-induced IRS degradation, we reveal differential effects on motility (up-regulation) and proliferation (down-regulation). Because a positive correlation between IRS-1 and ERα expression is thought to play a central role in the IGF growth response, we investigated the potential role of ERα as a downstream mTOR target. Small molecule inhibition and targeted knockdown of S6K1 blocked the IGF-induced ERα(S167) phosphorylation and did not influence ligand-dependent ERα(S118) phosphorylation. Inhibition of S6K1 kinase activity consequently ablated IGF-stimulated S6K1/ERα association, estrogen response element promoter binding and ERα target gene transcription. Moreover, site-specific ERα(S167) mutation reduced ERα target gene transcription and blocked IGF-induced colony formation. These findings support a novel link between the IGF pathway and ERα, in which the translation factor S6K1 affects transcription of ERα-regulated genes.
Insights
The mammalian target of rapamycin (mTOR)/S6 kinase 1 (S6K1) pathway critically links insulin-like growth factor (IGF) signaling to estrogen receptor alpha (ERα) in breast cancer, impacting cell proliferation and motility.
Area of Science:
- Molecular Biology
- Cancer Research
- Endocrinology
Background:
- The insulin-like growth factor (IGF) pathway promotes breast cancer malignancy.
- Estrogen receptor alpha (ERα) signaling is crucial for IGF-mediated growth.
- Mammalian target of rapamycin (mTOR) and S6 kinase 1 (S6K1) are implicated in IGF signaling.
Purpose of the Study:
- To elucidate the role of the mTOR/S6K1 axis in IGF and ERα cross-talk.
- To investigate the downstream effects of IGF signaling on ERα activity.
- To identify novel therapeutic targets in ERα-positive breast cancer.
Main Methods:
- Utilized small molecule inhibitors and targeted knockdown of S6K1.
- Assessed ERα phosphorylation at specific sites (S167 and S118).
- Examined S6K1/ERα association, DNA binding, and gene transcription.
Main Results:
- mTOR/S6K1 inhibition differentially affected IGF-induced cell proliferation and motility.
- S6K1 inhibition blocked IGF-induced ERα(S167) phosphorylation but not ERα(S118) phosphorylation.
- Inhibition of S6K1 ablated IGF-stimulated ERα promoter binding and target gene transcription.
- ERα(S167) mutation reduced ERα target gene transcription and blocked IGF-induced colony formation.
Conclusions:
- The mTOR/S6K1 axis is a critical mediator of IGF and ERα cross-talk in breast cancer.
- S6K1 directly influences ERα transcriptional activity via phosphorylation at S167.
- This pathway represents a potential therapeutic target for ERα-positive breast cancers.
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