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Updated: Jul 18, 2026

Screening for Phytoestrogens using a Cell-based Estrogen Receptor β Reporter Assay
Published on: June 7, 2020
Selective activation of estrogen receptor-beta transcriptional pathways by an herbal extract
Aleksandra Cvoro1, Sreenivasan Paruthiyil, Jeremy O Jones
1University of California, San Francisco, MS 1258, P.O. Box 0556, San Francisco, California 94143-0556, USA. leitmand@obgyn.ucsf.edu
Abstract:
Novel estrogenic therapies are needed that ameliorate menopausal symptoms and have the bone-sparing effects of endogenous estrogens but do not promote breast or uterine cancer. Recent evidence suggests that selective activation of the estrogen receptor (ER)-beta subtype inhibits breast cancer cell proliferation. To establish whether ERbeta-selective ligands represent a viable approach to improve hormone therapy, we investigated whether the estrogenic activities present in an herbal extract, MF101, used to treat hot flashes, are ERbeta selective. MF101 promoted ERbeta, but not ERalpha, activation of an estrogen response element upstream of the luciferase reporter gene. MF101 also selectively regulates transcription of endogenous genes through ERbeta. The ERbeta selectivity was not due to differential binding because MF101 binds equally to ERalpha and ERbeta. Fluorescence resonance energy transfer and protease digestion studies showed that MF101 produces a different conformation in ERalpha from ERbeta when compared with the conformations produced by estradiol. The specific conformational change induced by MF101 allows ERbeta to bind to an estrogen response element and recruit coregulatory proteins that are required for gene activation. MF101 did not activate the ERalpha-regulated proliferative genes, c-myc and cyclin D1, or stimulate MCF-7 breast cancer cell proliferation or tumor formation in a mouse xenograft model. Our results demonstrate that herbal ERbeta-selective estrogens may be a safer alternative for hormone therapy than estrogens that nonselectively activate both ER subtypes.
Insights
Novel herbal estrogen therapies selectively targeting estrogen receptor-beta (ERbeta) show promise. MF101, an herbal extract, activates ERbeta without promoting cancer, offering a potentially safer alternative for hormone therapy.
Area of Science:
- Endocrinology
- Pharmacology
- Oncology
Background:
- Novel therapies are needed to manage menopausal symptoms with bone-sparing effects without increasing breast or uterine cancer risk.
- Selective activation of estrogen receptor-beta (ERbeta) shows potential for inhibiting breast cancer cell proliferation.
Purpose of the Study:
- To investigate if the estrogenic activities in the herbal extract MF101 are ERbeta-selective.
- To determine if ERbeta-selective ligands are a viable approach for improved hormone therapy.
Main Methods:
- Assessed MF101's activation of an estrogen response element (luciferase reporter gene) via ERbeta and ERalpha.
- Utilized fluorescence resonance energy transfer and protease digestion to study conformational changes in ERalpha and ERbeta induced by MF101.
- Evaluated MF101's effect on ERalpha-regulated proliferative genes (c-myc, cyclin D1), breast cancer cell proliferation, and tumor formation in a mouse xenograft model.
Main Results:
- MF101 selectively activated ERbeta, not ERalpha, and regulated endogenous genes through ERbeta.
- MF101 induced distinct conformational changes in ERalpha and ERbeta, enabling ERbeta-mediated gene activation.
- MF101 did not activate ERalpha-driven proliferative genes or stimulate breast cancer cell proliferation and tumor growth.
Conclusions:
- Herbal ERbeta-selective estrogens, like MF101, represent a safer alternative to non-selective estrogens for hormone therapy.
- MF101 demonstrates potential as a therapeutic agent for menopausal symptoms with reduced cancer risk.
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