A Benzimidazole Fungicide, Benomyl, and Its Metabolite, Carbendazim, Induce Aromatase Activity in a Human Ovarian Granulose-Like Tumor Cell Line (KGN)

Author:

Morinaga Hidetaka12,Yanase Toshihiko12,Nomura Masatoshi12,Okabe Taijiro12,Goto Kiminobu12,Harada Nobuhiro3,Nawata Hajime12

Affiliation:

1. Department of Medicine and Bioregulatory Science (Third Department of Internal Medicine), Graduate School of Medical Sciences, Kyushu University (H.M., T.Y., M.N., T.O., K.G., H.N.), Higashi-ku, Fukuoka 812-8582, Japan

2. Core Research for Evolutional Science and Technology, Japan Science and Technology Corp. (H.M., T.Y., M.N., T.O., K.G., H.N.), Kawaguchi, Saitama 332-0012, Japan

3. Department of Biochemistry, Fujita Health University School of Medicine (N.H.), Toyoake, Aichi 470-1192, Japan

Abstract

Abstract Endocrine disruptor chemicals are known to cause a range of abnormalities in sexual differentiation and reproduction. One mechanism underlying such effects may be via alteration of aromatase activity, which is responsible for estrogen production. A good screening system for identifying endocrine disruptors has long been desired. We have recently established a human ovarian granulosa-like tumor cell line, KGN, which possesses a relatively high level of aromatase expression and is considered a useful mammalian model for investigating the in vitro effects of various chemicals on aromatase activity. In this study we screened 55 different candidate chemicals for endocrine disruptors by assaying aromatase activity. Only benomyl, known as both a benzimidazole fungicide and a microtubule-interfering agent, was found to induce aromatase activity in association with increased levels of aromatase mRNA in KGN cells. The effect of benomyl was presumed to be mediated by its metabolite carbendazim, because it produced an effect equivalent to that of benomyl. The mechanism underlying the benomyl-induced increase in aromatase activity appears independent of the cAMP-protein kinase A pathway. Treatment with taxol, another class of microtubule-interfering agents, also caused induction of aromatase in KGN cells. Both benomyl and taxol changed KGN cell morphology, including the development of cell roundness and a disorganized network of microtubules. These results indicate that benomyl is a potential endocrine disruptor that provides a novel estrogenicity and operates through a microtubule-interfering mechanism.

Publisher

The Endocrine Society

Subject

Endocrinology

Reference49 articles.

1. Our stolen future;Colborn;New,1996

2. Environmental signaling: what embryos and evolution teach us about endocrine disrupting chemicals.;McLachlan;Endocr Rev,2001

3. Aromatase cytochrome P450, the enzyme responsible for estrogen biosynthesis.;Simpson;Endocr Rev,1994

4. Use of tissue-specific promoters in the regulation of aromatase cytochrome P450 gene expression in human testicular and ovarian sex cord tumors, as well as in normal fetal and adult gonads.;Bulun;J Clin Endocrinol Metab,1994

5. 2-Chloro-s-triazine herbicides induce aromatase (CYP19) activity in H295R human adrenocortical carcinoma cells: a novel mechanism for estrogenicity?;Sanderson;Toxicol Sci,2000

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