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首页> 外文期刊>Microbial Cell Factories >Biotransformation of steroids by entomopathogenic strains of Isaria farinosa
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Biotransformation of steroids by entomopathogenic strains of Isaria farinosa

机译:伊斯里亚虫的致病菌株对类固醇的生物转化

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Steroid compounds are very interesting substrates for biotransformation due to their high biological activity and a high number of inactivated carbons which make chemical modification difficult. Microbial transformation can involve reactions which are complicated and uneconomical in chemical synthesis, and searching for a new effective biocatalyst is necessary. The best known entomopathogenic species used in steroid modification is Beauveria bassiana. In this study we tested the ability of Isaria farinosa, another entomopathogenic species, to transform several steroids. Twelve strains of the entomopathogenic filamentous fungus Isaria farinosa, collected in abandoned mines located in the area of the Lower Silesian Voivodeship, Poland, from insects’ bodies covered by fungus, were used as a biocatalyst. All the tested strains effectively transformed dehydroepiandrosterone (DHEA). We observed 7α- and 7β-hydroxy derivatives as well as changes in the percentage composition of the emerging products. Due to the similar metabolism of DHEA in all tested strains, one of them was selected for further investigation. In the culture of the selected strain, Isaria farinosa KCh KW1.1, transformations of androstenediol, androstenedione, adrenosterone, 17α-methyltestosterone, 17β-hydroxyandrost-1,4,6-triene-3-one and progesterone were performed. All the substrates were hydroxylated with high yield and stereoselectivity. We obtained 6β-hydroxyandrost-4-ene-3,11,17-trione, 15α,17β-dihydroxy-6β,7β-epoxyandrost-1,4-diene-3-one and 6β,11α-dihydroxyprogesterone. There is no evidence of either earlier microbial transformation of 17β-hydroxyandrost-1,4,6-triene-3-one or new epoxy derivatives. Isaria farinosa has a broad spectrum of highly effective steroid hydroxylases. The obtained 7-hydroxydehydroepiandrosterone has proven high biological activity and can be used in Alzheimer’s disease and as a key intermediate in the synthesis of aldosterone antagonists. Transformation of progesterone leads to high yield of 6β,11α-dihydroxyprogesterone and it is worth further study.
机译:甾类化合物由于其高的生物活性和大量的使化学修饰困难的失活碳而成为非常有趣的生物转化底物。微生物转化可能涉及化学合成中复杂且不经济的反应,因此寻找新的有效生物催化剂是必要的。用于类固醇修饰的最广为人知的致病物种是球孢白僵菌。在这项研究中,我们测试了另一种致病性物种伊斯里亚(Isaria farinosa)转化几种类固醇的能力。在波兰下西里西亚省的废弃矿山中,从真菌覆盖的昆虫体内收集了十二种致病性丝状真菌Isaria farinosa,用作生物催化剂。所有测试的菌株均有效转化了脱氢表雄酮(DHEA)。我们观察到7α-和7β-羟基衍生物以及新兴产品百分比组成的变化。由于所有测试菌株中DHEA的代谢相似,因此选择其中一个进行进一步研究。在所选菌株的分离中,进行了Isaria farinosa KCh KW1.1的转化,雄烯二醇,雄烯二酮,肾上腺素,17α-甲基睾丸激素,17β-羟基雄酮-1,4,6-三烯-3-酮和孕酮的转化。所有底物均以高产率和立体选择性羟基化。我们获得了6β-羟基雄烷-4-烯-3,11,17-三酮,15α,17β-二羟基-6β,7β-环氧雄酮-1,4-二烯-3-酮和6β,11α-二羟基黄体酮。没有证据表明17β-羟基雄烷-1,4,6-三烯-3-一的早期微生物转化或新的环氧衍生物。 Isaria farinosa具有广谱的高效甾体羟化酶。所获得的7-羟基脱氢表雄酮已被证明具有很高的生物活性,可用于阿尔茨海默氏病,并可作为合成醛固酮拮抗剂的关键中间体。孕酮的转化导致6β,11α-二羟基孕酮的高产率,值得进一步研究。

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