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Estrogenic activity assessment of environmental chemicals using in vitro assays: identification of two new estrogenic compounds.

Environmental chemicals with estrogenic activities have been suggested to be associated with deleterious effects in animals and humans. To characterize estrogenic chemicals and their mechanisms of action, we established in vitro and cell culture assays that detect human estrogen receptor [alpha] (hE...

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Autores principales: Lascombe, I, Beffa, D, Rüegg, U, Tarradellas, J, Wahli, W
Formato: Texto
Lenguaje:English
Publicado: 2000
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1638169/
https://www.ncbi.nlm.nih.gov/pubmed/10903615
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author Lascombe, I
Beffa, D
Rüegg, U
Tarradellas, J
Wahli, W
author_facet Lascombe, I
Beffa, D
Rüegg, U
Tarradellas, J
Wahli, W
author_sort Lascombe, I
collection PubMed
description Environmental chemicals with estrogenic activities have been suggested to be associated with deleterious effects in animals and humans. To characterize estrogenic chemicals and their mechanisms of action, we established in vitro and cell culture assays that detect human estrogen receptor [alpha] (hER[alpha])-mediated estrogenicity. First, we assayed chemicals to determine their ability to modulate direct interaction between the hER[alpha] and the steroid receptor coactivator-1 (SRC-1) and in a competition binding assay to displace 17ss-estradiol (E(2)). Second, we tested the chemicals for estrogen-associated transcriptional activity in the yeast estrogen screen and in the estrogen-responsive MCF-7 human breast cancer cell line. The chemicals investigated in this study were o,p'-DDT (racemic mixture and enantiomers), nonylphenol mixture (NPm), and two poorly analyzed compounds in the environment, namely, tris-4-(chlorophenyl)methane (Tris-H) and tris-4-(chlorophenyl)methanol (Tris-OH). In both yeast and MCF-7 cells, we determined estrogenic activity via the estrogen receptor (ER) for o,p'-DDT, NPm, and for the very first time, Tris-H and Tris-OH. However, unlike estrogens, none of these xenobiotics seemed to be able to induce ER/SRC-1 interactions, most likely because the conformation of the activated receptor would not allow direct contacts with this coactivator. However, these compounds were able to inhibit [(3)H]-E(2) binding to hER, which reveals a direct interaction with the receptor. In conclusion, the test compounds are estrogen mimics, but their molecular mechanism of action appears to be different from that of the natural hormone as revealed by the receptor/coactivator interaction analysis.
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spelling pubmed-16381692006-11-17 Estrogenic activity assessment of environmental chemicals using in vitro assays: identification of two new estrogenic compounds. Lascombe, I Beffa, D Rüegg, U Tarradellas, J Wahli, W Environ Health Perspect Research Article Environmental chemicals with estrogenic activities have been suggested to be associated with deleterious effects in animals and humans. To characterize estrogenic chemicals and their mechanisms of action, we established in vitro and cell culture assays that detect human estrogen receptor [alpha] (hER[alpha])-mediated estrogenicity. First, we assayed chemicals to determine their ability to modulate direct interaction between the hER[alpha] and the steroid receptor coactivator-1 (SRC-1) and in a competition binding assay to displace 17ss-estradiol (E(2)). Second, we tested the chemicals for estrogen-associated transcriptional activity in the yeast estrogen screen and in the estrogen-responsive MCF-7 human breast cancer cell line. The chemicals investigated in this study were o,p'-DDT (racemic mixture and enantiomers), nonylphenol mixture (NPm), and two poorly analyzed compounds in the environment, namely, tris-4-(chlorophenyl)methane (Tris-H) and tris-4-(chlorophenyl)methanol (Tris-OH). In both yeast and MCF-7 cells, we determined estrogenic activity via the estrogen receptor (ER) for o,p'-DDT, NPm, and for the very first time, Tris-H and Tris-OH. However, unlike estrogens, none of these xenobiotics seemed to be able to induce ER/SRC-1 interactions, most likely because the conformation of the activated receptor would not allow direct contacts with this coactivator. However, these compounds were able to inhibit [(3)H]-E(2) binding to hER, which reveals a direct interaction with the receptor. In conclusion, the test compounds are estrogen mimics, but their molecular mechanism of action appears to be different from that of the natural hormone as revealed by the receptor/coactivator interaction analysis. 2000-07 /pmc/articles/PMC1638169/ /pubmed/10903615 Text en
spellingShingle Research Article
Lascombe, I
Beffa, D
Rüegg, U
Tarradellas, J
Wahli, W
Estrogenic activity assessment of environmental chemicals using in vitro assays: identification of two new estrogenic compounds.
title Estrogenic activity assessment of environmental chemicals using in vitro assays: identification of two new estrogenic compounds.
title_full Estrogenic activity assessment of environmental chemicals using in vitro assays: identification of two new estrogenic compounds.
title_fullStr Estrogenic activity assessment of environmental chemicals using in vitro assays: identification of two new estrogenic compounds.
title_full_unstemmed Estrogenic activity assessment of environmental chemicals using in vitro assays: identification of two new estrogenic compounds.
title_short Estrogenic activity assessment of environmental chemicals using in vitro assays: identification of two new estrogenic compounds.
title_sort estrogenic activity assessment of environmental chemicals using in vitro assays: identification of two new estrogenic compounds.
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1638169/
https://www.ncbi.nlm.nih.gov/pubmed/10903615
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