首页> 外文期刊>Bioorganic and medicinal chemistry >Spironolactone-related inhibitors of type II 17beta-hydroxysteroid dehydrogenase: chemical synthesis, receptor binding affinities, and proliferative/antiproliferative activities.
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Spironolactone-related inhibitors of type II 17beta-hydroxysteroid dehydrogenase: chemical synthesis, receptor binding affinities, and proliferative/antiproliferative activities.

机译:II型17β-羟基类固醇脱氢酶的螺内酯相关抑制剂:化学合成,受体结合亲和力和增殖/抗增殖活性。

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The family of 17beta-hydroxysteroid dehydrogenases (17beta-HSDs) catalyzes the formation and inactivation of testosterone (T), dihydrotestosterone (DHT), and estradiol (E2), thus playing a crucial role in the regulation of active steroid hormones in target tissues. Among the five known 17beta-HSD enzymes, type II catalyzes the oxidation of E2 into estrone (E1), T into androstenedione, DHT into androstanedione, and 20alpha-dihydroprogesterone into progesterone. Specific inhibitors are thus an interesting means to study the regulation and to probe the structure of type II 17beta-HSD. In this context, we have efficiently synthesized a series of 7alpha-thioalkyl and 7alpha-thioaryl derivatives of spironolactone that inhibit type II 17beta-HSD. These new C19-steroidal inhibitors possess two important pharmacophores, namely 17-spiro-gamma-lactone and a bulky side-chain at the 7alpha-position. It was found that a para-substituted benzylthio group at the 7alpha-position enhances the inhibitory potency of spironolactone derivatives on type II 17beta-HSD. In fact, the compound with a para-hydroxy-benzylthio group showed an IC50 value of 0.5 microM against type II 17beta-HSD, whereas the compound with a para-[2-(1-piperidinyl)-ethoxy]-benzylthio group inhibited this enzyme with an IC50 value of 0.7 microM. The latter inhibitor is more selective than the former because it did not show any inhibitory potency against P450 aromatase as well as any affinity towards four steroid receptors (AR, PR, GR, ER). As a result, this inhibitor did not show any proliferative effect on androgen-sensitive Shionogi cells and estrogen-sensitive ZR-75-1 cells. These findings contribute to a better knowledge of the structure of type II 17beta-HSD and offer an interesting tool to study the regulation of this enzyme in several biological systems.
机译:17β-羟基类固醇脱氢酶(17beta-HSD)家族催化睾丸激素(T),二氢睾丸酮(DHT)和雌二醇(E2)的形成和失活,因此在靶组织中活性类固醇激素的调节中起着至关重要的作用。在五种已知的17beta-HSD酶中,II型可催化E2氧化成雌酮(E1),T氧化成雄烯二酮,DHT氧化成雄烷二酮和20alpha-二氢孕酮成孕酮。因此,特异性抑制剂是研究调控和探查II型17beta-HSD结构的有趣方法。在这种情况下,我们已经有效地合成了抑制II型17beta-HSD的螺内酯的7α-硫代烷基和7α-硫代芳基衍生物。这些新的C19类固醇抑制剂具有两个重要的药效基团,即17-螺-γ-内酯和7α-位的大侧链。发现在7α位的对位取代的苄硫基增强了螺内酯衍生物对II型17β-HSD的抑制能力。实际上,具有对羟基苄基硫基的化合物对II型17beta-HSD的IC50值为0.5 microM,而具有对-[2-(1-哌啶基)-乙氧基]-苄硫基的化合物抑制了这一作用。 IC50值为0.7 microM的酶。后者的抑制剂比前者更具选择性,因为它对P450芳香酶没有抑制作用,对四种类固醇受体(AR,PR,GR,ER)也没有亲和力。结果,该抑制剂对雄激素敏感的盐野木细胞和雌激素敏感的ZR-75-1细胞未显示任何增殖作用。这些发现有助于人们更好地了解II型17beta-HSD的结构,并为研究该酶在几种生物系统中的调控提供了有趣的工具。

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