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玫烟色棒束孢 KCh J2 虫生真菌菌株作为一种有效的甾体化合物转化生物催化剂。

Isaria fumosorosea KCh J2 Entomopathogenic Strain as an Effective Biocatalyst for Steroid Compound Transformations.

机构信息

Department of Chemistry, Wrocław University of Environmental and Life Sciences, Norwida 25, 50-375 Wrocław, Poland.

出版信息

Molecules. 2017 Sep 9;22(9):1511. doi: 10.3390/molecules22091511.

Abstract

The catalytic activity of enzymes produced by an entomopathogenic filamentous fungus ( KCh J2) towards selected steroid compounds (androstenedione, adrenosterone, progesterone, 17α-methyltestosterone and dehydroepiandrosterone) was investigated. All tested substrates were efficiently transformed. The structure of the substrate has a crucial impact on regio- and stereoselectivity of hydroxylation since it affects binding to the active site of the enzyme. Androstenedione was hydroxylated in the 7α-position to give a key intermediate in the synthesis of the diuretic-7α-hydroxyandrost-4-ene-3,17-dione with 82% conversion. Adrenosterone and 17α-methyltestosterone were hydroxylated in the 6β-position. Hydroxylated derivatives such as 15β-hydroxy-17α-methyltestosterone and 6β,12β-dihydroxy-17α-methyltestosterone were also observed. In the culture of KCh J2, DHEA was effectively hydroxylated in the C-7 position and then oxidized to give 7-oxo-DHEA, 3β,7α- and 3β,7β-dihydroxy-17a-oxa-d-homo-androst-5-ene-17-one. We obtained 7β-OH-DHEA lactone with 82% yield during 3 days transformation of highly concentrated (5 g/L) DHEA.

摘要

研究了一种昆虫病原丝状真菌(KCh J2)产生的酶对选定类固醇化合物(雄烯二酮、肾上腺酮、孕酮、17α-甲基睾酮和脱氢表雄酮)的催化活性。所有测试的底物都被有效地转化。底物的结构对羟化的区域和立体选择性具有至关重要的影响,因为它影响与酶的活性位点的结合。雄烯二酮在 7α-位羟化,生成合成利尿剂-7α-羟基雄-4-烯-3,17-二酮的关键中间体,转化率为 82%。肾上腺酮和 17α-甲基睾酮在 6β-位羟化。还观察到羟化衍生物,如 15β-羟基-17α-甲基睾酮和 6β,12β-二羟基-17α-甲基睾酮。在 KCh J2 的培养物中,DHEA 有效地在 C-7 位羟化,然后氧化生成 7-氧代-DHEA、3β,7α-和 3β,7β-二羟基-17a-氧代-d-同型雄甾-5-烯-17-酮。在 5 g/L 高浓度 DHEA 转化的 3 天内,我们获得了 7β-OH-DHEA 内酯,产率为 82%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0a62/6151793/b78154540465/molecules-22-01511-sch001.jpg

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