Tohoku Pharmaceutical University, Sendai, Japan.
Biol Pharm Bull. 2006 Jun;29(6):1242-5. doi: 10.1248/bpb.29.1242.
To gain insight into the catalytic function of aromatase, we studied 19-oxygenation of 19-methyl-substituted derivative of the natural substrate androstenedione (AD), compound 1, with human placental aromatase by use of gas chromatography-mass spectrometry (GC-MS). Incubation of the 19-methyl derivative 1 with human placental microsomes in the presence of NADPH under an aerobic condition did not yield a detectable amount of [19S]19-hydroxy product 2 or its [19R]-isomer 3 when the product was analyzed as the bis-methoxime-trimethylsilyl (TMS) derivative by GC-MS; moreover, the production of estrogen was not detected as the bis-TMS derivative of estradiol (detection limit: about 3 ng and 10 pg per injection for the 19-ol and estradiol, respectively). The results reveal that the 19-methyl steroid 1 does not serve as a substrate of aromatase, although it does serve as a powerful inhibitor of the enzyme.
为了深入了解芳香酶的催化功能,我们使用气相色谱-质谱联用技术(GC-MS)研究了天然底物雄烯二酮(AD)的 19-甲基取代衍生物 1 的 19-氧代反应。在有氧条件下,用人胎盘微粒体与 NADPH 孵育 19-甲基衍生物 1 时,当产物作为双甲氧基肟-三甲基硅烷(TMS)衍生物通过 GC-MS 分析时,没有检测到可检测量的 [19S]19-羟基产物 2 或其 [19R]-异构体 3;此外,也没有检测到雌二醇的双 TMS 衍生物作为雌激素的产生(检测限:对于 19-醇和雌二醇,分别为每个注射约 3 ng 和 10 pg)。结果表明,19-甲基甾体 1 虽然是一种强有力的酶抑制剂,但不能作为芳香酶的底物。