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Updated: May 27, 2026

Profiling of Estrogen-regulated MicroRNAs in Breast Cancer Cells
Published on: February 21, 2014
Twist contributes to hormone resistance in breast cancer by downregulating estrogen receptor-α
1Russell H Morgan Department of Radiology and Radiological Science, Johns Hopkins University School of Medicine, Baltimore, MD 21250, USA. fvesuna1@jhmi.edu
Abstract:
The role of estrogen receptor-α (ER) in breast cancer development, and as a primary clinical marker for breast cancer prognosis, has been well documented. In this study, we identified the oncogenic protein, TWIST1 (Twist), which is overexpressed in high-grade breast cancers, as a potential negative regulator of ER expression. Functional characterization of ER regulation by Twist was performed using Twist low (MCF-7, T-47D) and Twist high (Hs 578T, MDA-MB-231, MCF-7/Twist) expressing cell lines. All Twist high expressing cell lines exhibited low ER transcript and protein levels. By chromatin immunoprecipitation and promoter assays, we demonstrated that Twist could directly bind to E-boxes in the ER promoter and significantly downregulate ER promoter activity in vitro. Functionally, Twist overexpression caused estrogen-independent proliferation of breast cells, and promoted hormone resistance to the selective estrogen receptor modulator tamoxifen and selective estrogen receptor down-regulator fulvestrant. Importantly, this effect was reversible on downregulating Twist. In addition, orthotopic tumors generated in mice using MCF-7/Twist cells were resistant to tamoxifen. These tumors had high vascular volume and permeability surface area, as determined by magnetic resonance imaging (MRI). Mechanistically, Twist recruited DNA methyltransferase 3B (DNMT3B) to the ER promoter, leading to a significantly higher degree of ER promoter methylation compared with parental cells. Furthermore, we demonstrated by co-immunoprecipitation that Twist interacted with histone deacetylase 1 (HDAC1) at the ER promoter, causing histone deacetylation and chromatin condensation, further reducing ER transcript levels. Functional re-expression of ER was achieved using the demethylating agent, 5-azacytidine, and the HDAC inhibitor, valproic acid. Finally, an inverse relationship was observed between Twist and ER expression in human breast tumors. In summary, the regulation of ER by Twist could be an underlying mechanism for the loss of ER activity observed in breast tumors, and may contribute to the generation of hormone-resistant, ER-negative breast cancer.
Insights
The oncogenic protein TWIST1 (Twist) negatively regulates estrogen receptor-α (ER) expression in breast cancer. This leads to hormone resistance and ER-negative tumors, but ER function can be restored by downregulating Twist.
Area of Science:
- Oncology
- Molecular Biology
- Epigenetics
Background:
- Estrogen receptor-α (ER) is crucial in breast cancer development and prognosis.
- TWIST1 (Twist) is an oncogenic protein overexpressed in high-grade breast cancers.
Purpose of the Study:
- To investigate TWIST1 as a negative regulator of ER expression in breast cancer.
- To elucidate the mechanisms by which TWIST1 affects ER activity and hormone sensitivity.
Main Methods:
- Utilized breast cancer cell lines with varying TWIST1 expression levels.
- Performed chromatin immunoprecipitation, promoter assays, and in vivo tumor studies.
- Investigated epigenetic modifications including DNA methylation and histone deacetylation at the ER promoter.
Main Results:
- TWIST1 overexpression correlated with low ER transcript and protein levels.
- TWIST1 directly downregulated ER promoter activity and increased promoter methylation and histone deacetylation.
- TWIST1 overexpression promoted estrogen-independent proliferation and tamoxifen/fulvestrant resistance in vitro and in vivo.
- Reversible ER re-expression was achieved with demethylating and HDAC inhibitor agents.
- An inverse relationship between TWIST1 and ER expression was observed in human breast tumors.
Conclusions:
- TWIST1 negatively regulates ER expression through epigenetic mechanisms, including DNA methylation and histone modification.
- TWIST1-mediated ER downregulation contributes to hormone-resistant, ER-negative breast cancer.
- Targeting TWIST1 may offer a therapeutic strategy for hormone-resistant breast cancer.
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