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胆甾烷醇的生物合成:大鼠肝脏的5-α-胆甾烷-3-酮还原酶。

Biosynthesis of cholestanol: 5-alpha-cholestan-3-one reductase of rat liver.

作者信息

Shefer S, Hauser S, Mosbach E H

出版信息

J Lipid Res. 1966 Nov;7(6):763-71.

PMID:4381999
Abstract

The 3-beta-hydroxysteroid dehydrogenase of rat liver which catalyzes the conversion of 5alpha-cholestan-3-one to 5alpha-cholestan-3beta-ol is localized mainly in the microsomal fraction. The enzyme required NADPH as hydrogen donor and differed from the known 3-beta-hydroxysteroid dehydrogenases of the C(19) series in being inactive in the presence of NADH. The microsomal preparations did not reduce the 3-keto groups of cholest-4-en-3-one, cholest-5-en-3-one, or 5beta-cholestan-3-one to the corresponding 3beta-hydroxy compounds. The conversion of 5alpha-cholestan-3-one to 5alpha-cholestan-3beta-ol was only slightly inhibited by the reaction product or by other monohydroxy steroids, but a strong inhibitory effect was noted with cholest-5-en-3-one, 5alpha-cholestane-3beta, 7alpha-diol and 5alpha-cholestan-7-on-3beta-ol. The microsomes, but not high speed supernatant solution, catalyzed the reverse of the cholestanone reductase reaction, namely the conversion of 5alpha-cholestan-3beta-ol to 5alpha-cholestan-3-one in the presence of oxygen and an NADP-generating system. The action of the microsomal preparations upon 5alpha-cholestan-3-one produced 5alpha-cholestan-3alpha-ol in addition to the 3beta-epimer. The 3-alpha-hydroxysteroid dehydrogenase involved functioned with either NADH or NADPH as hydrogen donor. The ratio of 5alpha-cholestan-3beta-ol to 5alpha-cholestan-3alpha-ol formed from 5alpha-cholestan-3-one was approximately 10:1 and was independent of the sex of the animal from which the microsomes were prepared.

摘要

大鼠肝脏中催化5α-胆甾烷-3-酮转化为5α-胆甾烷-3β-醇的3-β-羟基类固醇脱氢酶主要定位于微粒体部分。该酶需要NADPH作为氢供体,与已知的C(19)系列3-β-羟基类固醇脱氢酶不同,在NADH存在时无活性。微粒体制剂不能将胆甾-4-烯-3-酮、胆甾-5-烯-3-酮或5β-胆甾烷-3-酮的3-酮基还原为相应的3β-羟基化合物。5α-胆甾烷-3-酮转化为5α-胆甾烷-3β-醇仅受到反应产物或其他单羟基类固醇的轻微抑制,但胆甾-5-烯-3-酮、5α-胆甾烷-3β,7α-二醇和5α-胆甾烷-7-酮-3β-醇具有强烈的抑制作用。微粒体而非高速上清液溶液催化胆甾烷酮还原酶反应的逆反应,即在氧气和NADP生成系统存在下将5α-胆甾烷-3β-醇转化为5α-胆甾烷-3-酮。微粒体制剂对5α-胆甾烷-3-酮的作用除了产生3β-差向异构体外,还产生了5α-胆甾烷-3α-醇。所涉及的3-α-羟基类固醇脱氢酶以NADH或NADPH作为氢供体发挥作用。由5α-胆甾烷-3-酮形成的5α-胆甾烷-3β-醇与5α-胆甾烷-3α-醇的比例约为10:1,且与制备微粒体的动物性别无关。

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