Numazawa M, Tsuji M, Osawa Y
Tohoku College of Pharmacy, Sendai, Japan.
Steroids. 1986 Nov-Dec;48(5-6):347-59. doi: 10.1016/0039-128x(86)90021-8.
2 alpha-Bromoacetoxy (II), 6-bromoacetoxy (VII and X), and 19-bromoacetoxy (XII) derivatives of androstenedione and 17 beta-bromoacetoxy compounds (III, IV, XIII-XVI) were synthesized as potential affinity-labeling reagents for aromatase. 6 alpha-Bromoacetoxy derivative VII was the most potent inhibitor of human placental microsomal aromatase activity among this series. Its inhibitory activity was higher than that of the parent 6 alpha-hydroxy compound V, although other bromoacetates showed weaker inhibition of aromatase than the corresponding alcohols. The bromoacetates (except the 6 beta-bromoacetate X) inhibited aromatase activity in a time-dependent manner in the absence of NADPH, and the enzyme inactivation was blocked by the addition of androstenedione to the incubates. Kinetic analysis of the time- and concentration-dependent inhibition by the 6 beta-bromo-17 beta-bromoacetoxy compound XV gave an apparent Ki of 25 microM and kinact of 0.027 min-1.
合成了雄烯二酮的2α-溴乙酰氧基(II)、6-溴乙酰氧基(VII和X)和19-溴乙酰氧基(XII)衍生物以及17β-溴乙酰氧基化合物(III、IV、XIII - XVI),作为芳香化酶潜在的亲和标记试剂。在该系列中,6α-溴乙酰氧基衍生物VII是人类胎盘微粒体芳香化酶活性最有效的抑制剂。其抑制活性高于母体6α-羟基化合物V,尽管其他溴乙酸酯对芳香化酶的抑制作用比相应的醇弱。在没有NADPH的情况下,溴乙酸酯(6β-溴乙酸酯X除外)以时间依赖性方式抑制芳香化酶活性,并且通过向孵育物中添加雄烯二酮可阻断酶的失活。对6β-溴-17β-溴乙酰氧基化合物XV的时间和浓度依赖性抑制的动力学分析得出表观Ki为25μM,kinact为0.027 min⁻¹。