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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Role Identification and Application of SigD in the Transformation of Soybean Phytosterol to 9 alpha-Hydroxy-4-androstene-3,17-dione in Mycobacterium neoaurum
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Role Identification and Application of SigD in the Transformation of Soybean Phytosterol to 9 alpha-Hydroxy-4-androstene-3,17-dione in Mycobacterium neoaurum

机译:SIGD在二豆植物甾醇转化中的作用鉴定及应用在细菌杆菌中植物植物甾醇至9α-羟基-4-甲甾酮-3,17-二酮的作用

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摘要

9 alpha-Hydroxy-4-androstene-3,17-dione (9-OHAD) is a valuable steroid pharmaceutical intermediate which can be produced by the conversion of soybean phytosterols in mycobacteria. However, the unsatisfactory productivity and conversion efficiency of engineered mycobacterial strains hinder their industrial applications. Here, a sigma factor D (sigD) was investigated due to its dramatic downregulation during the conversion of phytosterols to 9-OHAD. It was determined as a negative regulator in the metabolism of phytosterols, and the deletion of sigD in a 9-OHAD-producing strain significantly enhanced the titer of 9-OHAD by 18.9%. Furthermore, a high yielding strain was constructed by the combined modifications of sigD and choM2, a key gene in the phytosterol metabolism pathway. After the modifications, the productivity of 9-OHAD reached 0.071 g/L/h (10.27 g/L from 20 g/L phytosterol), which was 22.5% higher than the original productivity of 0.058 g/L/h (8.37 g/L from 20 g/L phytosterol) in the industrial resting cell biotransformation system.
机译:9α-羟基-4-和rostene-3,17-Dione(9-Ohad)是一个有价值的类固醇药中间体,可以通过转化分枝杆菌的大豆植物甾醇的转化产生。然而,工程化分枝杆菌菌株的生产率和转化效率不令人满意地阻碍了其工业应用。这里,在将植物甾醇转化为9-ohad期间,研究了SIGMA因子D(SIGD)的剧烈下调。它被确定为植物代谢的负调节剂,在9- ohad产生菌株中缺失SIGD显着增强了9-Ohad的滴度18.9%。此外,通过SIGD和CHOM2的组合修饰构建高屈服菌株,植物甾醇代谢途径中的关键基因。修改后,9-OHAD的生产率达到0.071g / L / h(来自20g / L植物甾醇的10.27克/升),比原始生产率高出0.058克/升/小时的22.5%(8.37克/ L来自20g / l植物甾醇)在工业休息细胞生物转化系统中。

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