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Atrazine-Induced Aromatase Expression Is SF-1 Dependent: Implications for Endocrine Disruption in Wildlife and Reproductive Cancers in Humans

BACKGROUND: Atrazine is a potent endocrine disruptor that increases aromatase expression in some human cancer cell lines. The mechanism involves the inhibition of phosphodiesterase and subsequent elevation of cAMP. METHODS: We compared steroidogenic factor 1 (SF-1) expression in atrazine responsive...

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Autores principales: Fan, WuQiang, Yanase, Toshihiko, Morinaga, Hidetaka, Gondo, Shigeki, Okabe, Taijiro, Nomura, Masatoshi, Komatsu, Tomoko, Morohashi, Ken-Ichirou, Hayes, Tyrone B., Takayanagi, Ryoichi, Nawata, Hajime
Formato: Texto
Lenguaje:English
Publicado: National Institute of Environmental Health Sciences 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1867956/
https://www.ncbi.nlm.nih.gov/pubmed/17520059
http://dx.doi.org/10.1289/ehp.9758
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author Fan, WuQiang
Yanase, Toshihiko
Morinaga, Hidetaka
Gondo, Shigeki
Okabe, Taijiro
Nomura, Masatoshi
Komatsu, Tomoko
Morohashi, Ken-Ichirou
Hayes, Tyrone B.
Takayanagi, Ryoichi
Nawata, Hajime
author_facet Fan, WuQiang
Yanase, Toshihiko
Morinaga, Hidetaka
Gondo, Shigeki
Okabe, Taijiro
Nomura, Masatoshi
Komatsu, Tomoko
Morohashi, Ken-Ichirou
Hayes, Tyrone B.
Takayanagi, Ryoichi
Nawata, Hajime
author_sort Fan, WuQiang
collection PubMed
description BACKGROUND: Atrazine is a potent endocrine disruptor that increases aromatase expression in some human cancer cell lines. The mechanism involves the inhibition of phosphodiesterase and subsequent elevation of cAMP. METHODS: We compared steroidogenic factor 1 (SF-1) expression in atrazine responsive and non-responsive cell lines and transfected SF-1 into nonresponsive cell lines to assess SF-1’s role in atrazine-induced aromatase. We used a luciferase reporter driven by the SF-1–dependent aromatase promoter (ArPII) to examine activation of this promoter by atrazine and the related simazine. We mutated the SF-1 binding site to confirm the role of SF-1. We also examined effects of 55 other chemicals. Finally, we examined the ability of atrazine and simazine to bind to SF-1 and enhance SF-1 binding to ArPII. RESULTS: Atrazine-responsive adrenal carcinoma cells (H295R) expressed 54 times more SF-1 than nonresponsive ovarian granulosa KGN cells. Exogenous SF-1 conveyed atrazine-responsiveness to otherwise nonresponsive KGN and NIH/3T3 cells. Atrazine induced binding of SF-1 to chromatin and mutation of the SF-1 binding site in ArPII eliminated SF-1 binding and atrazine-responsiveness in H295R cells. Out of 55 chemicals examined, only atrazine, simazine, and benzopyrene induced luciferase via ArPII. Atrazine bound directly to SF-1, showing that atrazine is a ligand for this “orphan” receptor. CONCLUSION: The current findings are consistent with atrazine’s endocrine-disrupting effects in fish, amphibians, and reptiles; the induction of mammary and prostate cancer in laboratory rodents; and correlations between atrazine and similar reproductive cancers in humans. This study highlights the importance of atrazine as a risk factor in endocrine disruption in wildlife and reproductive cancers in laboratory rodents and humans.
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spelling pubmed-18679562007-06-07 Atrazine-Induced Aromatase Expression Is SF-1 Dependent: Implications for Endocrine Disruption in Wildlife and Reproductive Cancers in Humans Fan, WuQiang Yanase, Toshihiko Morinaga, Hidetaka Gondo, Shigeki Okabe, Taijiro Nomura, Masatoshi Komatsu, Tomoko Morohashi, Ken-Ichirou Hayes, Tyrone B. Takayanagi, Ryoichi Nawata, Hajime Environ Health Perspect Research BACKGROUND: Atrazine is a potent endocrine disruptor that increases aromatase expression in some human cancer cell lines. The mechanism involves the inhibition of phosphodiesterase and subsequent elevation of cAMP. METHODS: We compared steroidogenic factor 1 (SF-1) expression in atrazine responsive and non-responsive cell lines and transfected SF-1 into nonresponsive cell lines to assess SF-1’s role in atrazine-induced aromatase. We used a luciferase reporter driven by the SF-1–dependent aromatase promoter (ArPII) to examine activation of this promoter by atrazine and the related simazine. We mutated the SF-1 binding site to confirm the role of SF-1. We also examined effects of 55 other chemicals. Finally, we examined the ability of atrazine and simazine to bind to SF-1 and enhance SF-1 binding to ArPII. RESULTS: Atrazine-responsive adrenal carcinoma cells (H295R) expressed 54 times more SF-1 than nonresponsive ovarian granulosa KGN cells. Exogenous SF-1 conveyed atrazine-responsiveness to otherwise nonresponsive KGN and NIH/3T3 cells. Atrazine induced binding of SF-1 to chromatin and mutation of the SF-1 binding site in ArPII eliminated SF-1 binding and atrazine-responsiveness in H295R cells. Out of 55 chemicals examined, only atrazine, simazine, and benzopyrene induced luciferase via ArPII. Atrazine bound directly to SF-1, showing that atrazine is a ligand for this “orphan” receptor. CONCLUSION: The current findings are consistent with atrazine’s endocrine-disrupting effects in fish, amphibians, and reptiles; the induction of mammary and prostate cancer in laboratory rodents; and correlations between atrazine and similar reproductive cancers in humans. This study highlights the importance of atrazine as a risk factor in endocrine disruption in wildlife and reproductive cancers in laboratory rodents and humans. National Institute of Environmental Health Sciences 2007-05 2007-02-05 /pmc/articles/PMC1867956/ /pubmed/17520059 http://dx.doi.org/10.1289/ehp.9758 Text en http://creativecommons.org/publicdomain/mark/1.0/ Publication of EHP lies in the public domain and is therefore without copyright. All text from EHP may be reprinted freely. Use of materials published in EHP should be acknowledged (for example, ?Reproduced with permission from Environmental Health Perspectives?); pertinent reference information should be provided for the article from which the material was reproduced. Articles from EHP, especially the News section, may contain photographs or illustrations copyrighted by other commercial organizations or individuals that may not be used without obtaining prior approval from the holder of the copyright.
spellingShingle Research
Fan, WuQiang
Yanase, Toshihiko
Morinaga, Hidetaka
Gondo, Shigeki
Okabe, Taijiro
Nomura, Masatoshi
Komatsu, Tomoko
Morohashi, Ken-Ichirou
Hayes, Tyrone B.
Takayanagi, Ryoichi
Nawata, Hajime
Atrazine-Induced Aromatase Expression Is SF-1 Dependent: Implications for Endocrine Disruption in Wildlife and Reproductive Cancers in Humans
title Atrazine-Induced Aromatase Expression Is SF-1 Dependent: Implications for Endocrine Disruption in Wildlife and Reproductive Cancers in Humans
title_full Atrazine-Induced Aromatase Expression Is SF-1 Dependent: Implications for Endocrine Disruption in Wildlife and Reproductive Cancers in Humans
title_fullStr Atrazine-Induced Aromatase Expression Is SF-1 Dependent: Implications for Endocrine Disruption in Wildlife and Reproductive Cancers in Humans
title_full_unstemmed Atrazine-Induced Aromatase Expression Is SF-1 Dependent: Implications for Endocrine Disruption in Wildlife and Reproductive Cancers in Humans
title_short Atrazine-Induced Aromatase Expression Is SF-1 Dependent: Implications for Endocrine Disruption in Wildlife and Reproductive Cancers in Humans
title_sort atrazine-induced aromatase expression is sf-1 dependent: implications for endocrine disruption in wildlife and reproductive cancers in humans
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1867956/
https://www.ncbi.nlm.nih.gov/pubmed/17520059
http://dx.doi.org/10.1289/ehp.9758
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