首页> 外文期刊>Applied Microbiology >Inactivation and Augmentation of the Primary 3-Ketosteroid-Δ1- Dehydrogenase in Mycobacterium neoaurum NwIB-01: Biotransformation of Soybean Phytosterols to 4-Androstene- 3,17-Dione or 1,4-Androstadiene-3,17-Dione
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Inactivation and Augmentation of the Primary 3-Ketosteroid-Δ1- Dehydrogenase in Mycobacterium neoaurum NwIB-01: Biotransformation of Soybean Phytosterols to 4-Androstene- 3,17-Dione or 1,4-Androstadiene-3,17-Dione

机译:灭活和增强新分枝杆菌NwIB-01中的初级3-酮类固醇-Δ1-脱氢酶:大豆植物甾醇向4-雄甾烯酮-3,17-二酮或1,4-雄甾烯二烯-3,17-二酮的生物转化

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3-Ketosteroid-Δ~(1)-dehydrogenase, KsdD_(M), was identified by targeted gene disruption and augmentation from Mycobacterium neoaurum NwIB-01, a newly isolated strain. The difficulty of separating 4-androstene-3,17-dione (AD) from 1,4-androstadiene-3,17-dione (ADD) is a key bottleneck to the microbial transformation of phytosterols in industry. This problem was tackled via genetic manipulation of the KsdD-encoding gene. Mutants in which KsdD_(M) was inactivated or augmented proved to be good AD(D)-producing strains.
机译:3-酮类固醇-Δ〜(1)-脱氢酶,KsdD_(M),是通过新分离株新分枝杆菌NwIB-01的靶向基因破坏和扩增鉴定的。从1,4-雄甾烷二烯3,17-二酮(ADD)分离4-雄甾烯3,17-二酮(AD)的困难是工业中植物甾醇微生物转化的关键瓶颈。这个问题是通过对KsdD编码基因的遗传操纵来解决的。 KsdD_(M)被失活或增强的突变体被证明是产生AD(D)的好菌株。

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