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Published on: February 21, 2014
Xenoestrogen action in breast cancer: impact on ER-dependent transcription and mitogenesis
J K Hess-Wilson1, J Boldison, K E Weaver
1Department of Cell Biology, University of Cincinnati College of Medicine, Cincinnati, Ohio, 45267-0521, USA.
Abstract:
Several estrogen mimics (xenoestrogens) inappropriately activate the estrogen receptor (ER) in the absence of endogenous ligand. Given the importance of the ER in breast cancer growth and regulation, delineating the impact of these agents under conditions related to tumor treatment is of significant importance. We examined the effect of two prevalent xenoestrogens (bisphenol A and coumestrol) on ER activation and ER-dependent mitogenesis in breast cancer cells. We show that the ability of these agents to induce mitogenesis was restricted to conditions of estrogen depletion, and that these agents failed to cooperate with estradiol to induce MCF-7 breast cancer cell growth. These observations are consistent with the impact of each agent specifically on exogenous ER activation as monitored in HeLa cells, wherein the xenoestrogens activated the receptor in the absence of estradiol but failed to cooperate with estrogen. Tamoxifen blocked bisphenol A and coumestrol-mediated ER activation, indicating that exposure to these agents is unlikely to disrupt such therapeutic intervention. The response of tumor-derived ER alleles to these xenoestrogens was also examined. Although the xenoestrogens failed to alter ER-Y537S function, the ER-D351Y mutant demonstrated an enhanced response to bisphenol A. Moreover, tamoxifen enhanced the agonistic effects of xenoestrogens on ER-D351Y. Lastly, we examined the impact of ER co-activator overexpression on xenoestrogen response. Bisphenol A and coumestrol exhibited differential responses to co-activators with regard to ER activation. However, when using mitogenesis as an endpoint, these co-activators were insufficient to provide a significant growth advantage. Combined, these data demonstrate that bisphenol A and coumestrol can impact ER activity and ER-dependent proliferation in breast cancer cells, but the influence of these agents is restricted to conditions of estrogen depletion, selective mutation of the ER, and expression of specific co-activators.
Insights
Xenoestrogens like BPA and coumestrol activate estrogen receptors (ER) during estrogen depletion, but do not enhance breast cancer cell growth with estradiol. Tamoxifen can block this activation, suggesting limited disruption to cancer therapies.
Area of Science:
- Endocrinology
- Molecular Biology
- Cancer Research
Background:
- Estrogen receptor (ER) plays a crucial role in breast cancer development and treatment.
- Xenoestrogens, such as bisphenol A (BPA) and coumestrol, can inappropriately activate ER.
- Understanding xenoestrogen impact under therapeutic conditions is vital for breast cancer management.
Purpose of the Study:
- To investigate the effects of BPA and coumestrol on ER activation and ER-dependent cell growth in breast cancer.
- To determine if xenoestrogens interfere with estradiol-induced growth or tamoxifen treatment.
- To explore xenoestrogen response in relation to ER mutations and co-activator expression.
Main Methods:
- Assessed ER activation and ER-dependent mitogenesis in breast cancer cells exposed to BPA and coumestrol.
- Utilized HeLa cells to monitor exogenous ER activation in the presence and absence of estradiol.
- Examined the effects of tamoxifen, ER variants (ER-Y537S, ER-D351Y), and ER co-activators on xenoestrogen activity.
Main Results:
- BPA and coumestrol induced cell growth only during estrogen depletion, failing to cooperate with estradiol.
- Xenoestrogens activated ER in HeLa cells without estradiol but did not enhance estradiol's effect; tamoxifen blocked this activation.
- ER-D351Y mutants showed enhanced response to BPA, with tamoxifen potentiating xenoestrogen effects; ER-Y537S was unaffected. Co-activator overexpression did not significantly enhance xenoestrogen-driven proliferation.
Conclusions:
- BPA and coumestrol can modulate ER activity and proliferation in breast cancer cells, primarily under estrogen-depleted conditions.
- Xenoestrogen influence is dependent on specific ER mutations and co-activator expression levels.
- Tamoxifen effectively blocks xenoestrogen-mediated ER activation, suggesting these agents are unlikely to compromise tamoxifen therapy.
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