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16α-羟基雄烯二酮及其19-氧化类似物的4β,5β-环氧化物对芳香化酶的抑制作用,是胎儿-胎盘单位中雌三醇产生的潜在前体。

Aromatase inhibition by 4 beta,5 beta-epoxides of 16 alpha-hydroxyandrostenedione and its 19-oxygenated analogs, potential precursors of estriol production in the feto-placental unit.

作者信息

Numazawa Mitsuteru, Yoshimura Akiko, Watari Yoko, Matsuzaki Hisao

机构信息

Tohoku Pharmaceutical University, Sendai, Japan.

出版信息

Biol Pharm Bull. 2002 Dec;25(12):1566-9. doi: 10.1248/bpb.25.1566.

DOI:10.1248/bpb.25.1566
PMID:12499641
Abstract

To gain insight into the nature of the substrate binding site and the catalytic function of aromatase, we studied the inhibition of androstenedione aromatization by 4beta,5beta-epoxy-16alpha-hydroxyandrostenedione (4) and its 19-hydroxy and 19-oxo derivatives, 5 and 6, as well as the biochemical aromatization of these steroids in human placental microsomes. The 19-methyl and 19-oxo compounds, 4 and 6, were weak competitive inhibitors of aromatase, with apparent K(i) values of 246 microM and 270 microM, respectively, whereas the 19-hydroxy compound 5 inhibited aromatase in a non-competitive manner with the K(i) of 135 microM. The 19-methyl compound 4 inactivated aromatase in a time-dependent manner with k(inact) of 0.213 min(-1) in the presence of NADPH in air, but the other two did not cause it. The conversion of the three epoxides into estrogen, as well as 19-oxygenation of 19-methyl steroid 4 with human placental microsomes in the presence of NADPH in air, were not detected by gas chromatography-mass spectrometry. The present results are consistent with the two binding sites theory in the active site of aromatase.

摘要

为深入了解芳香化酶的底物结合位点的性质和催化功能,我们研究了4β,5β-环氧-16α-羟基雄烯二酮(4)及其19-羟基和19-氧代衍生物5和6对雄烯二酮芳香化反应的抑制作用,以及这些甾体在人胎盘微粒体中的生化芳香化反应。19-甲基和19-氧代化合物4和6是芳香化酶的弱竞争性抑制剂,表观K(i)值分别为246 μM和270 μM,而19-羟基化合物5以非竞争性方式抑制芳香化酶,K(i)为135 μM。在空气中存在NADPH的情况下,19-甲基化合物4以时间依赖性方式使芳香化酶失活,k(inact)为0.213 min⁻¹,但其他两种化合物不会导致这种情况。气相色谱-质谱法未检测到三种环氧化物向雌激素的转化,以及在空气中存在NADPH的情况下人胎盘微粒体对19-甲基甾体4的19-氧化反应。目前的结果与芳香化酶活性位点的两个结合位点理论一致。

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1
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