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从天然甾醇中获取11α-羟基雄甾-4-烯-3,17-二酮。

Obtaining of 11α-Hydroxyandrost-4-ene-3,17-dione from Natural Sterols.

作者信息

Dovbnya Dmitry, Khomutov Sergey, Kollerov Vyacheslav, Donova Marina V

机构信息

G.K. Skryabin Institute of Biochemistry & Physiology of Microorganisms, Russian Academy of Sciences, Pushchino, Russia.

Pharmins Ltd, Pushchino, Russia.

出版信息

Methods Mol Biol. 2017;1645:259-269. doi: 10.1007/978-1-4939-7183-1_18.

Abstract

Two-step one-pot microbial transformation enables obtaining of valuable steroids that are difficult to produce chemically. Here we describe a method for obtaining 11α-hydroxyandrost-4-ene-3,17-dione (11α-HAD) from cheap and available natural sterols (phytosterols or cholesterol).11α-HAD is a primary adrenal steroid in mammals and also a key precursor in the syntheses of halogenated corticoids. Conventional routes for its obtaining are based on chemical synthesis, or microbial hydroxylation of androst-4-ene-3,17-dione (AD). AD in turn is produced primarily with microbial biotransformation of natural sterols by some actinobacteria.Consequent bioconversions of sterols using two microbial strains in one bioreactor vessel without separation and purification of AD provides high yield of 11α-HAD. At the first fermentation step, phytosterol is converted to AD with Mycobacterium neoaurum NRRL 3805B, or relative strains, to yield about 70% (mol/mol). At the second step, AD is almost fully (98%) hydroxylated at the position 11α with Aspergillus ochraceus VKM F-830, or other suitable organisms, in the same bioreactor. At the average, 30% (w/w) of the high-purity crystalline 11α-HAD can be obtained.The method can be exploited for production of 11α-HAD for practical use.

摘要

两步一锅法微生物转化能够获得难以通过化学方法生产的有价值甾体化合物。在此,我们描述了一种从廉价且易得的天然甾醇(植物甾醇或胆固醇)制备11α-羟基雄甾-4-烯-3,17-二酮(11α-HAD)的方法。11α-HAD是哺乳动物体内的一种主要肾上腺甾体,也是卤代皮质激素合成中的关键前体。其传统制备途径基于化学合成或雄甾-4-烯-3,17-二酮(AD)的微生物羟基化。而AD主要是通过一些放线菌对天然甾醇进行微生物生物转化产生的。在一个生物反应器中使用两种微生物菌株对甾醇进行连续生物转化,无需分离和纯化AD,可实现11α-HAD的高产率。在第一步发酵中,用新金色分枝杆菌NRRL 3805B或相关菌株将植物甾醇转化为AD,产率约为70%(摩尔/摩尔)。在第二步中,在同一生物反应器中用赭曲霉VKM F-830或其他合适的生物体将AD在11α位几乎完全(98%)羟基化。平均可获得30%(重量/重量)的高纯度结晶11α-HAD。该方法可用于实际生产11α-HAD。

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