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Updated: May 26, 2026

Profiling of Estrogen-regulated MicroRNAs in Breast Cancer Cells
Published on: February 21, 2014
Direct regulation of microRNA biogenesis and expression by estrogen receptor beta in hormone-responsive breast cancer
O Paris1, L Ferraro, O M V Grober
1Department of General Pathology, Second University of Naples, Napoli, Italy.
Abstract:
Estrogen effects on mammary epithelial and breast cancer (BC) cells are mediated by the nuclear receptors ERα and ERβ, transcription factors that display functional antagonism with each other, with ERβ acting as oncosuppressor and interfering with the effects of ERα on cell proliferation, tumor promotion and progression. Indeed, hormone-responsive, ERα+ BC cells often lack ERβ, which when present associates with a less aggressive clinical phenotype of the disease. Recent evidences point to a significant role of microRNAs (miRNAs) in BC, where specific miRNA expression profiles associate with distinct clinical and biological phenotypes of the lesion. Considering the possibility that ERβ might influence BC cell behavior via miRNAs, we compared miRNome expression in ERβ+ vs ERβ- hormone-responsive BC cells and found a widespread effect of this ER subtype on the expression pattern of these non-coding RNAs. More importantly, the expression pattern of 67 miRNAs, including 10 regulated by ERβ in BC cells, clearly distinguishes ERβ+, node-negative, from ERβ-, metastatic, mammary tumors. Molecular dissection of miRNA biogenesis revealed multiple mechanisms for direct regulation of this process by ERβ+ in BC cell nuclei. In particular, ERβ downregulates miR-30a by binding to two specific sites proximal to the gene and thereby inhibiting pri-miR synthesis. On the other hand, the receptor promotes miR-23b, -27b and 24-1 accumulation in the cell by binding in close proximity of the corresponding gene cluster and preventing in situ the inhibitory effects of ERα on pri-miR maturation by the p68/DDX5-Drosha microprocessor complex. These results indicate that cell autonomous regulation of miRNA expression is part of the mechanism of action of ERβ in BC cells and could contribute to establishment or maintenance of a less aggressive tumor phenotype mediated by this nuclear receptor.
Insights
Estrogen receptor beta (ERβ) influences breast cancer (BC) by regulating microRNAs (miRNAs). ERβ expression is linked to less aggressive tumors and impacts miRNA profiles, affecting BC cell behavior and progression.
Area of Science:
- Endocrinology
- Molecular Biology
- Oncology
Background:
- Estrogen receptors ERα and ERβ modulate mammary epithelial and breast cancer (BC) cell functions.
- ERβ acts as an oncosuppressor, antagonizing ERα's pro-proliferative effects and associating with less aggressive BC phenotypes.
- MicroRNAs (miRNAs) play a critical role in BC, with specific expression profiles correlating to distinct tumor phenotypes.
Purpose of the Study:
- To investigate whether ERβ influences BC cell behavior through miRNA regulation.
- To compare miRNome expression patterns in ERβ-positive (ERβ+) versus ERβ-negative (ERβ-) hormone-responsive BC cells.
- To elucidate the molecular mechanisms by which ERβ directly regulates miRNA biogenesis in BC cells.
Main Methods:
- Comparative miRNome expression profiling of ERβ+ and ERβ- BC cells.
- Bioinformatic analysis to identify miRNAs regulated by ERβ.
- Molecular dissection of miRNA biogenesis pathways, including gene binding site analysis and assessment of microprocessor complex interactions.
Main Results:
- ERβ significantly impacts the miRNome of BC cells.
- A distinct miRNA expression pattern, including 10 ERβ-regulated miRNAs, differentiates ERβ+ node-negative from ERβ- metastatic tumors.
- ERβ directly downregulates miR-30a synthesis and promotes miR-23b, -27b, and -24-1 accumulation by counteracting ERα's inhibitory effects on miRNA maturation.
Conclusions:
- Cell-autonomous regulation of miRNA expression is a key mechanism of ERβ action in BC.
- ERβ-mediated miRNA regulation contributes to the less aggressive tumor phenotype associated with ERβ expression.
- Targeting ERβ-regulated miRNAs may offer novel therapeutic strategies for breast cancer.
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