Literature DB >> 11368557

Metabolism of equilenin in MCF-7 and MDA-MB-231 human breast cancer cells.

D C Spink1, F Zhang, M M Hussain, B H Katz, X Liu, D R Hilker, J L Bolton.   

Abstract

Sulfate conjugates of the B-ring unsaturated estrogens, equilin, equilenin, and 8-dehydroestrone, and their 17alpha- and 17beta-dihydro analogues, constitute about 54% of Premarin (Wyeth-Ayerst), the most commonly prescribed estrogen formulation in estrogen replacement therapy. Despite the wide clinical use of Premarin, there have been very few studies on the metabolism of the B-ring unsaturated estrogens in humans and there is no information regarding the fate of these compounds in breast tissue or tumors. In this study, we investigated the metabolism of equilenin in two lines of human breast-cancer cells, MCF-7 and MDA-MB-231. MCF-7 cells respond to treatment with Ah-receptor agonists with induction of cytochromes P450 1A1 and 1B1, whereas in MDA-MB-231 cells P450 1B1 is predominantly induced. Metabolites of equilenin were identified and quantified by GC/MS utilizing a series of synthetic metabolite standards and deuterium-labeled analogues as internal standards. In the two cell lines, the same pathways of equilenin metabolism were observed. Equilenin was reduced at C-17 to the 17beta-dihydro form, with minimal production of the 17alpha-dihydro isomer. Both equilenin and 17beta-dihydroequilenin were hydroxylated at the C-4 position, and the resultant catechol metabolites were methylated to form 4-methoxyequilenin and 4-methoxy-17beta-dihydroequilenin. Rates of equilenin metabolism were markedly elevated in cultures exposed to the Ah-receptor agonists, 2,3,7,8-tetrachlorodibenzo-p-dioxin and 3,4,4',5-tetrachlorobiphenyl, implicating the activities of P450s 1A1 and 1B1 in the metabolism. The 2-hydroxylation pathways of equilenin and 17beta-dihydroequilenin metabolism were not observed. In microsomal reactions with cDNA-expressed human enzymes, both P450s 1A1 and 1B1 catalyzed the 4-hydroxylation of 17beta-dihydroequilenin, whereas with 17beta-estradiol as substrate P450 1A1 catalyzes predominantly 2-hydroxylation and P450 1B1 predominantly 4-hydroxylation. Since P450 1B1 is constitutively expressed and both P450s 1A1 and 1B1 are inducible in many extrahepatic tissues including the mammary epithelium, these results indicate the potential for 4-hydroxylation of equilenin and 17beta-dihydroequilenin in extrahepatic, estrogen-responsive tissues.

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Year:  2001        PMID: 11368557     DOI: 10.1021/tx000219r

Source DB:  PubMed          Journal:  Chem Res Toxicol        ISSN: 0893-228X            Impact factor:   3.739


  10 in total

1.  The naphthol selective estrogen receptor modulator (SERM), LY2066948, is oxidized to an o-quinone analogous to the naphthol equine estrogen, equilenin.

Authors:  Teshome B Gherezghiher; Bradley Michalsen; R Esala P Chandrasena; Zhihui Qin; Johann Sohn; Gregory R J Thatcher; Judy L Bolton
Journal:  Chem Biol Interact       Date:  2012-01-28       Impact factor: 5.192

2.  Selective estrogen receptor modulator (SERM) lasofoxifene forms reactive quinones similar to estradiol.

Authors:  Bradley T Michalsen; Teshome B Gherezghiher; Jaewoo Choi; R Esala P Chandrasena; Zhihui Qin; Gregory R J Thatcher; Judy L Bolton
Journal:  Chem Res Toxicol       Date:  2012-06-14       Impact factor: 3.739

3.  Redox cycling of catechol estrogens generating apurinic/apyrimidinic sites and 8-oxo-deoxyguanosine via reactive oxygen species differentiates equine and human estrogens.

Authors:  Zhican Wang; Esala R Chandrasena; Yang Yuan; Kuan-wei Peng; Richard B van Breemen; Gregory R J Thatcher; Judy L Bolton
Journal:  Chem Res Toxicol       Date:  2010-08-16       Impact factor: 3.739

Review 4.  Bioactivation of Selective Estrogen Receptor Modulators (SERMs).

Authors:  Tamara S Dowers; Zhi-Hui Qin; Gregory R J Thatcher; Judy L Bolton
Journal:  Chem Res Toxicol       Date:  2006-09       Impact factor: 3.739

5.  Catechol metabolites of endogenous estrogens induce redox cycling and generate reactive oxygen species in breast epithelial cells.

Authors:  Karma C Fussell; Ronald G Udasin; Peter J S Smith; Michael A Gallo; Jeffrey D Laskin
Journal:  Carcinogenesis       Date:  2011-06-10       Impact factor: 4.944

6.  Unexpected hormonal activity of a catechol equine estrogen metabolite reveals reversible glutathione conjugation.

Authors:  Kuan-Wei Peng; Minsun Chang; Yue-Ting Wang; Zhican Wang; Zhihui Qin; Judy L Bolton; Gregory R J Thatcher
Journal:  Chem Res Toxicol       Date:  2010-08-16       Impact factor: 3.739

7.  Celecoxib affects estrogen sulfonation catalyzed by several human hepatic sulfotransferases, but does not stimulate 17-sulfonation in rat liver.

Authors:  Sriram Ambadapadi; Peter L Wang; Sergiu P Palii; Margaret O James
Journal:  J Steroid Biochem Mol Biol       Date:  2017-05-25       Impact factor: 4.292

8.  Conformational properties of equilenin-DNA adducts: stereoisomer and base effects.

Authors:  Shuang Ding; Robert Shapiro; Yuqin Cai; Nicholas E Geacintov; Suse Broyde
Journal:  Chem Res Toxicol       Date:  2008-04-17       Impact factor: 3.739

9.  Development of a liquid chromatography electrospray ionization tandem mass spectrometry method for analysis of stable 4-hydroxyequilenin-DNA adducts in human breast cancer cells.

Authors:  Zhican Wang; Praneeth Edirisinghe; Johann Sohn; Zhihui Qin; Nicholas E Geacintov; Gregory R J Thatcher; Judy L Bolton
Journal:  Chem Res Toxicol       Date:  2009-06       Impact factor: 3.739

Review 10.  Potential mechanisms of estrogen quinone carcinogenesis.

Authors:  Judy L Bolton; Gregory R J Thatcher
Journal:  Chem Res Toxicol       Date:  2007-12-04       Impact factor: 3.739

  10 in total

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