Estrogen Receptor β-Selective Transcriptional Activity and Recruitment of Coregulators by Phytoestrogens

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Abstract

Estrogens used in hormone replacement therapy regimens may increase the risk of developing breast cancer. Paradoxically, high consumption of plant-derived phytoestrogens, particularly soybean isoflavones, is associated with a low incidence of breast cancer. To explore the molecular basis for these potential different clinical outcomes, we investigated whether soybean isoflavones elicit distinct transcriptional actions from estrogens. Our results demonstrate that the estrogen 17β-estradiol effectively triggers the transcriptional activation and repression pathways with both estrogen receptors (ERs) ERα and ERβ. In contrast, soybean isoflavones (genistein, daidzein, and biochanin A) are ERβ-selective agonists of transcriptional repression and activation at physiological levels. The molecular mechanism for ERβ selectivity by isoflavones involves their capacity to create an activation function-2 surface of ERβ that has a greater affinity for coregulators than ERα. Phytoestrogens may act as natural selective estrogen receptor modulators that elicit distinct clinical effects from estrogens used for hormone replacement by selectively recruiting coregulatory proteins to ERβ that trigger transcriptional pathways.

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An, J., Tzagarakis-Foster, C., Scharschmidt, T. C., Lomri, N., & Leitman, D. C. (2001). Estrogen Receptor β-Selective Transcriptional Activity and Recruitment of Coregulators by Phytoestrogens. Journal of Biological Chemistry, 276(21), 17808–17814. https://doi.org/10.1074/jbc.M100953200

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