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PMID: 9751507 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Interaction of estrogenic chemicals and phytoestrogens with estrogen receptor beta.

Endocrinology ·Vol. 139 ·No. 10 ·1998-10-00 ·Pages 4252-63

Kuiper GG, Lemmen JG, Carlsson B, Corton JC, Safe SH, van der Saag PT, van der Burg B, Gustafsson JA

Abstract

The rat, mouse and human estrogen receptor (ER) exists as two subtypes, ER alpha and ER beta, which differ in the C-terminal ligand-binding domain and in the N-terminal transactivation domain. In this study, we investigated the estrogenic activity of environmental chemicals and phytoestrogens in competition binding assays with ER alpha or ER beta protein, and in a transient gene expression assay using cells in which an acute estrogenic response is created by cotransfecting cultures with recombinant human ER alpha or ER beta complementary DNA (cDNA) in the presence of an estrogen-dependent reporter plasmid. Saturation ligand-binding analysis of human ER alpha and ER beta protein revealed a single binding component for [3H]-17beta-estradiol (E2) with high affinity [dissociation constant (Kd) = 0.05 - 0.1 nM]. All environmental estrogenic chemicals [polychlorinated hydroxybiphenyls, dichlorodiphenyltrichloroethane (DDT) and derivatives, alkylphenols, bisphenol A, methoxychlor and chlordecone] compete with E2 for binding to both ER subtypes with a similar preference and degree. In most instances the relative binding affinities (RBA) are at least 1000-fold lower than that of E2. Some phytoestrogens such as coumestrol, genistein, apigenin, naringenin, and kaempferol compete stronger with E2 for binding to ER beta than to ER alpha. Estrogenic chemicals, as for instance nonylphenol, bisphenol A, o, p'-DDT and 2',4',6'-trichloro-4-biphenylol stimulate the transcriptional activity of ER alpha and ER beta at concentrations of 100-1000 nM. Phytoestrogens, including genistein, coumestrol and zearalenone stimulate the transcriptional activity of both ER subtypes at concentrations of 1-10 nM. The ranking of the estrogenic potency of phytoestrogens for both ER subtypes in the transactivation assay is different; that is, E2 >> zearalenone = coumestrol > genistein > daidzein > apigenin = phloretin > biochanin A = kaempferol = naringenin > formononetin = ipriflavone = quercetin = chrysin for ER alpha and E2 >> genistein = coumestrol > zearalenone > daidzein > biochanin A = apigenin = kaempferol = naringenin > phloretin = quercetin = ipriflavone = formononetin = chrysin for ER beta. Antiestrogenic activity of the phytoestrogens could not be detected, except for zearalenone which is a full agonist for ER alpha and a mixed agonist-antagonist for ER beta. In summary, while the estrogenic potency of industrial-derived estrogenic chemicals is very limited, the estrogenic potency of phytoestrogens is significant, especially for ER beta, and they may trigger many of the biological responses that are evoked by the physiological estrogens.

MeSH Terms
Binding, Competitive Coumestrol/pharmacology DDT/pharmacology Environmental Pollutants/metabolism Estradiol/metabolism Estrogens Estrogens, Non-Steroidal/metabolism Flavonoids/pharmacology Humans Isoflavones Phytoestrogens Plant Preparations Polychlorinated Biphenyls/pharmacology Receptors, Estrogen/metabolism Structure-Activity Relationship Transcription, Genetic/drug effects Zearalenone/pharmacology
Chemicals
Environmental Pollutants Estrogens Estrogens, Non-Steroidal Flavonoids Isoflavones Phytoestrogens Plant Preparations Receptors, Estrogen Estradiol Zearalenone DDT Polychlorinated Biphenyls Coumestrol
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Kuiper G G
Center for Biotechnology and Department of Medical Nutrition, Karolinska Institute, Huddinge, Sweden. george.kuiper@csb.ki.se
Lemmen J G
Carlsson B
Corton J C
Safe S H
van der Saag P T
van der Burg B
Gustafsson J A
Article Info
Journal
Endocrinology
Abbr.
Endocrinology
ISSN
0013-7227
Published
1998-10-00
Pages
4252-63
Language
English
Region
United States
NLM ID
0375040
Subset
IM
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