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首页> 外文期刊>Process Biochemistry >Effects of a nonionic surfactant TX-40 on 9α-hydroxyandrost-4-ene-3,17- dione biosynthesis and physiological properties of Mycobacterium sp. LY-1
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Effects of a nonionic surfactant TX-40 on 9α-hydroxyandrost-4-ene-3,17- dione biosynthesis and physiological properties of Mycobacterium sp. LY-1

机译:非离子表面活性剂TX-40对分枝杆菌9α-羟基雄烷-4-烯-3,17-二酮生物合成和生理特性的影响。 LY-1

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摘要

The 9 alpha-hydroxyandrost-4-ene-3,17-dione (9 alpha - OH-AD) is a key intermediate for synthetizing steroid pharmaceutical compounds. It is bioconverted by Mycobacterium sp. LY-1 from phytosterols. During biotransformation, the low solubility of phytosterols in water limits 9 alpha - OH-AD production. In the present work, polyoxyethylene (10) nonylphenyl ether (TX-40), a nonionic surfactant, was first used to enhance phytosterol solubility during 9 alpha - OH-AD biotransformation. In the presence of 0.7% TX-40, phytosterol solubility was increased 12.1-fold, and the 9 alpha - OH-AD molar yield reached 42.5% at the phytosterols concentration of 15 g/L, an increase of 217.2% over controls. The improvement is sufficient to replace the traditional process of adding soybean oil. Scanning electron microscopy showed that the extracellular membrane-like structure was loosened by TX-40, but cells maintained their integrity. The fatty acid profile of Mycobacterium sp. LY-1 cells revealed that TX-40 altered the composition of the cell membrane and improved its permeability. The transcript levels of key enzymes involved in cell membrane lipid synthesis were downregulated significantly upon TX-40 addition compared with controls. These results demonstrated that the increase in product molar yield by TX-40 was primarily related to easier substrate transportation across the cell membrane of Mycobacterium sp. LY-1.
机译:9α-羟基雄烷-4-烯-3,17-二酮(9α-OH-AD)是合成类固醇药物化合物的关键中间体。它是由分枝杆菌属生物转化的。 LY-1来自植物固醇。在生物转化过程中,植物甾醇在水中的低溶解度限制了9α-OH-AD的产生。在当前的工作中,聚氧乙烯(10)壬基苯基醚(TX-40),一种非离子表面活性剂,首先被用于增强9α-OH-AD生物转化过程中植物甾醇的溶解度。在存在0.7%TX-40的情况下,植物甾醇的浓度为15 g / L时,植物甾醇的溶解度增加了12.1倍,并且9α-OH-AD的摩尔产率达到了42.5%,与对照相比增加了217.2%。该改进足以代替传统的添加大豆油的过程。扫描电子显微镜显示TX-40使细胞外膜样结构松弛,但细胞保持其完整性。分枝杆菌的脂肪酸谱。 LY-1细胞显示TX-40改变了细胞膜的组成并提高了其通透性。与对照组相比,添加TX-40后,参与细胞膜脂质合成的关键酶的转录水平显着下调。这些结果表明,TX-40产物摩尔产量的增加主要与分枝杆菌sp。的细胞膜上较容易的底物运输有关。 LY-1。

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