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首页> 外文期刊>Biochemical Engineering Journal >A combined strategy of metabolic pathway regulation and two-step bioprocess for improved 4-androstene-3,17-dione production with an engineered Mycobacterium neoaurum
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A combined strategy of metabolic pathway regulation and two-step bioprocess for improved 4-androstene-3,17-dione production with an engineered Mycobacterium neoaurum

机译:一种组合的代谢途径调节策略及两步生物过程,改善4- androstene-3,17-Dione生产用工程化分枝杆菌

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摘要

This study aims to improve the efficiency of 4-androstene-317-dione (AD) production from high-concentrated phytosterols through a combined strategy of metabolic pathway regulation and two-step bioprocess. Firstly, we overexpressed cholesterol oxidase and steroid C27 monooxygenase to strengthen the metabolic flux to AD and then enhanced the expression of 17 beta-hydroxystemid dehydrogenase to reduce the by-product 20-hydroxy-methylpregna-4-ene-3-one. As a result, the AD production was enhanced from 2.4 to 4.5 g/L with an increase of 88.6 %. Afterward, a two-step bioprocess, cell culture at 30 degrees C and bioconversion with resting cells at 37 degrees C, was adopted to avoid the cell growth inhibition and decrease the steroid nucleus degradation. Finally, 25.8 g/L AD was produced from 50 g/L phytosterols, which is significantly higher than that from the fermentation bioprocess and is the highest reported AD production. Therefore, this work hopes to pave the way for the commercial production of AD through Mycobacterium transformation.
机译:本研究旨在通过代谢途径调节和两步生物过程的组合策略来提高高浓植物甾醇的4-androstene-317-Dione(AD)生产的效率。首先,我们过表达胆固醇氧化酶和类固醇C27单氧化酶以加强代谢通量至Ad,然后增强了17β-羟基 - 羟基脱氢酶的表达,以减少副产物20-羟基 - 甲基预备4-eNE-3-on。因此,广告生产从2.4升至4.5克/升,增长88.6%。之后,采用两步生物处理,30℃的细胞培养,在37摄氏度下具有静息细胞的生物转化,以避免细胞生长抑制并降低类固醇核降解。最后,25.8克/升AD由50克/升植物甾醇制成,其明显高于发酵生物处理,是报告的广告生产最高。因此,这项工作希望通过分枝杆菌转化来铺平广告的商业生产。

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