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7β-羟基睾酮的直接立体选择性合成。

A direct stereoselective synthesis of 7 beta-hydroxytestosterone.

作者信息

Labaree D, Hoyte R M, Hochberg R B

机构信息

Department of Obstetrics and Gynecology, Yale University School of Medicine, New Haven, Connecticut 06510, USA.

出版信息

Steroids. 1997 Jun;62(6):482-6. doi: 10.1016/s0039-128x(97)00018-4.

Abstract

Although 7 beta-hydroxytestosterone is a known product of hepatic androgen metabolism, there are no published methods for its chemical synthesis except from the equally difficult to obtain 7 beta-hydroxy-4-androstene-3,17-dione. We found that several seemingly straightforward routes for its synthesis failed. Consequently, we tried to produce 7 beta-hydroxytestosterone by enzymatic oxidation of 5-androstene-3 beta, 7 beta, 17 beta-triol with cholesterol oxidase (Brevibacterium sp.), a procedure previously used to synthesize 7 beta-hydroxy-4-cholesten-3-one from 3 beta, 7 beta-dihydroxycholesterol (Alexander and Fisher 1995). However, 5-androstene-3 beta, 7 beta, 17 beta-triol was, at best, a very poor substrate for the enzyme leading to the production of 7 beta-hydroxytestosterone in only trace amounts. Thus, we explored a strategy for the enzymatic synthesis in which a C8-ester at C-17 (5-androstene-3 beta, 7 beta, 17 beta-triol 17-caprylate) would serve to mimic the bulky and hydrophobic side chain of cholesterol and thus allow the C19-steroid to act as an effective substrate. When this ester was incubated with cholesterol oxidase, it was converted efficiently to 7 beta-hydroxytestosterone-17-caprylate. Attempts to remove the ester group by several mild hydrolytic procedures caused elimination of the 7 beta-hydroxyl group; we, therefore, obtained 7 beta-hydroxytestosterone by incubation of the intermediate ester with porcine lipase.

摘要

尽管7β-羟基睾酮是肝脏雄激素代谢的已知产物,但除了从同样难以获得的7β-羟基-4-雄烯-3,17-二酮出发外,尚无关于其化学合成的公开方法。我们发现几条看似直接的合成路线均告失败。因此,我们尝试用胆固醇氧化酶(短杆菌属)对5-雄烯-3β,7β,17β-三醇进行酶促氧化来制备7β-羟基睾酮,该方法先前曾用于从3β,7β-二羟基胆固醇合成7β-羟基-4-胆甾烯-3-酮(亚历山大和费舍尔,1995年)。然而,5-雄烯-3β,7β,17β-三醇充其量只是该酶的一种非常差的底物,导致仅产生痕量的7β-羟基睾酮。因此,我们探索了一种酶促合成策略,其中C-17位的C8-酯(5-雄烯-3β,7β,17β-三醇17-辛酸酯)将用于模拟胆固醇庞大且疏水的侧链,从而使C19-甾体能够作为有效的底物。当该酯与胆固醇氧化酶一起孵育时,它被有效地转化为7β-羟基睾酮-17-辛酸酯。尝试通过几种温和的水解程序去除酯基会导致7β-羟基的消除;因此,我们通过将中间酯与猪胰脂肪酶一起孵育获得了7β-羟基睾酮。

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