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Metabolic aspects of the 1 beta-proton and the 19-methyl group of androst-4-ene-3,6,17-trione during aromatization by placental microsomes and inactivation of aromatase.

作者信息

Numazawa M, Midzuhashi K, Nagaoka M

机构信息

Tohoku College of Pharmacy, Sendai, Japan.

出版信息

Biochem Pharmacol. 1994 Feb 11;47(4):717-26. doi: 10.1016/0006-2952(94)90135-x.

DOI:10.1016/0006-2952(94)90135-x
PMID:8129748
Abstract

Aromatase catalyzes the conversion of androst-4-ene-3,17-dione to estrogen through sequential oxygenations at the 19-methyl group. Androst-4-ene-3,6,17-trione (AT) is a suicide substrate of aromatase, and the mechanism of inactivation of aromatase has been postulated to involve enzymatic oxygenation at the 19-position. [1 beta-3H,4-14C]-, [19-3H3,4-14C]-, and [1 beta-3H,19-14C]ATs, with high specific activities, were synthesized to study metabolic aspects and the inactivation mechanism. Incubation of the labeled AT with human placental microsomes yielded the 19-oxygenated derivatives, 19-hydroxy-AT and 19-oxo-AT, as well as the aromatization products, 6-oxoestrone and 6-oxoestradiol. A stereospecific 1 beta-proton elimination occurred during the aromatization of [1 beta-3H,4-14C]AT, and a marked tritium isotope effect was observed in the first hydroxylation at C-19 of [19-3H3,4-14C]AT. After incubation of the three double-labeled ATs, the solubilized proteins were subjected to SDS-PAGE and the 3H/14C ratio of the aromatase-bound metabolite in a 46-69 kDa fraction was analyzed. A marked decrease of the 3H/14C ratio of the metabolite was observed in the experiment using [19-3H3,4-14C]AT, compared with that of the labeled AT used, but there were no significant changes in the other experiments, indicating that the adduct retains the 1 beta-proton, the 19-carbon, and one of the three 19-methyl protons of AT. Thus, we conclude that further oxygenation of 19-oxo-AT produced by the two initial hydroxylations of AT at C-19 yields not only 6-oxoestrogen (by a mechanism similar to that involved in the aromatization of the natural substrate) but also a reactive electrophile that immediately binds to the active site in an irreversible manner, resulting in inactivation of aromatase.

摘要

相似文献

1
Metabolic aspects of the 1 beta-proton and the 19-methyl group of androst-4-ene-3,6,17-trione during aromatization by placental microsomes and inactivation of aromatase.
Biochem Pharmacol. 1994 Feb 11;47(4):717-26. doi: 10.1016/0006-2952(94)90135-x.
2
Mechanism for aromatase inactivation by a suicide substrate, androst-4-ene-3,6,17-trione. The 4 beta, 5 beta-epoxy-19-oxo derivative as a reactive electrophile irreversibly binding to the active site.自杀底物雄甾-4-烯-3,6,17-三酮使芳香化酶失活的机制。4β,5β-环氧-19-氧代衍生物作为反应性亲电试剂不可逆地结合到活性位点。
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Aromatization of 19-oxygenated androst-4-ene-3,6,17-triones with human placental microsomes.19-氧化雄甾-4-烯-3,6,17-三酮与人类胎盘微粒体的芳构化反应。
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Mass spectrometric analysis of oxygenations in aromatization of androst-4-ene-3,6,17-trione, a suicide substrate of aromatase, by placental microsomes. Isotope effect and stereochemistry.
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Aromatase inactivation by a suicide substrate, androst-5-ene-4,7,17-trione: the 5beta,6beta-epoxy-19-oxo derivative, as a possible reactive electrophile irreversibly binding to the active site.自杀底物雄甾-5-烯-4,7,17-三酮对芳香化酶的失活作用:5β,6β-环氧-19-氧代衍生物作为一种可能的活性亲电试剂不可逆地结合到活性位点。
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Biochemistry. 2005 Aug 16;44(32):10839-45. doi: 10.1021/bi0508744.
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Tritium release from [19-3H]-19,19-difluoroandrost-4-ene-3,17-dione during inactivation of aromatase.
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Radiometric analysis of oxidative reactions in aromatization by placental microsomes. Presence of differential isotope effects.胎盘微粒体芳香化过程中氧化反应的放射性分析。存在差异同位素效应。
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Dissociation of 19-hydroxy- 19-oxo-, and aromatizing-activities in human placental microsomes through the use of suicide substrates to aromatase.通过使用芳香化酶自杀底物来解离人胎盘微粒体中的19-羟基-19-氧代活性和芳香化活性。
J Steroid Biochem. 1989 Feb;32(2):309-16. doi: 10.1016/0022-4731(89)90269-0.
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Time-dependent aromatase inactivation by 4 beta,5 beta-epoxides of the natural substrate androstenedione and its 19-oxygenated analogs.天然底物雄烯二酮及其19-氧化类似物的4β,5β-环氧化物对芳香化酶的时间依赖性失活作用。
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