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Updated: Jun 23, 2026

A Hormone-responsive 3D Culture Model of the Human Mammary Gland Epithelium
Published on: February 7, 2016
Estrogen receptor beta exerts growth-inhibitory effects on human mammary epithelial cells
Oliver Treeck1, Claus Lattrich, Anette Springwald
1Department of Obstetrics and Gynecology, University of Regensburg, 93053, Regensburg, Germany. otreeck@caritasstjosef.de
Abstract:
Estrogen receptor beta (ERbeta) is widely expressed in mammary epithelium. ERbeta expression is reported to decline during carcinogenesis of the breast and other tissues. In this study, we examined the consequences of a loss of ERbeta expression in mammary epithelial cells. We knocked down ERbeta transcript levels in human mammary epithelial MCF-10A cells and in MCF-7 breast cancer cells by means of stable transfection with a specific shRNA plasmid. ERbeta knockdown resulted in a significant growth increase of both cell types in a ligand-independent manner. This effect was accompanied by elevated cyclin A2 expression in MCF-10A cells and by decreased expression of growth-inhibitory p21/WAF and epithelial cell marker cytokeratine 8 in both cell lines. Transfection of ERbeta shRNA did not alter the absent proliferative estrogen response of MCF-10A cells, but conferred sensitivity to selective estrogen receptor modulator tamoxifen to this cell line. In contrast, ERbeta knockdown diminished estrogen responsiveness of MCF-7 breast cancer cells and also weakened the effect of tamoxifen on this cell line. These ligand-dependent effects only observed in MCF-7 cells exhibiting a high ERalpha/beta ratio were accompanied by smaller estrogenic repression of p21/WAF expression, an impaired tamoxifen-triggered induction of this gene and by relative downregulation of ERalpha and cyclin A2 transcript levels. Our data suggest that ERbeta exerts antiproliferative effects both on MCF-10A and MCF-7 cells in a ligand- and ERalpha-independent manner by regulation of p21/WAF or cyclin A2 gene expression. Knockdown of ERbeta in both cell types was sufficient to significantly decrease transcript levels of epithelial cell marker cytokeratin 8. The results of this study support the hypothesis that ERbeta acts as a tumor suppressor in mammary epithelium.
Insights
Loss of estrogen receptor beta (ERbeta) in breast cells promotes growth and alters cell marker expression. This suggests ERbeta functions as a tumor suppressor in mammary epithelium, impacting cell proliferation and gene regulation.
Area of Science:
- Endocrinology
- Molecular Biology
- Cancer Research
Background:
- Estrogen receptor beta (ERbeta) is prevalent in mammary epithelium.
- ERbeta expression often decreases during breast carcinogenesis.
- The functional impact of ERbeta loss in mammary cells requires elucidation.
Purpose of the Study:
- To investigate the consequences of ERbeta expression loss in human mammary epithelial cells.
- To determine ERbeta's role in cell proliferation and gene expression.
- To assess ERbeta's influence on cellular responses to estrogen and tamoxifen.
Main Methods:
- Stable knockdown of ERbeta transcript levels using shRNA in MCF-10A and MCF-7 cells.
- Analysis of cell growth, cyclin A2, p21/WAF, and cytokeratin 8 expression.
- Evaluation of ligand-dependent and independent effects of ERbeta modulation.
Main Results:
- ERbeta knockdown significantly increased proliferation in both cell types.
- Loss of ERbeta led to altered expression of cell cycle regulators (cyclin A2, p21/WAF) and epithelial markers (cytokeratin 8).
- ERbeta knockdown modulated tamoxifen and estrogen responsiveness differently in MCF-10A and MCF-7 cells.
Conclusions:
- ERbeta exhibits ligand-independent antiproliferative effects in mammary cells.
- ERbeta regulates key genes involved in cell cycle progression and epithelial differentiation.
- These findings support a tumor suppressor role for ERbeta in the mammary epithelium.
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