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首页> 外文期刊>Microbial Cell Factories >An improved Bacillus subtilis cell factory for producing scyllo-inositol, a promising therapeutic agent for Alzheimer’s disease
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An improved Bacillus subtilis cell factory for producing scyllo-inositol, a promising therapeutic agent for Alzheimer’s disease

机译:一家改良的枯草芽孢杆菌细胞工厂,用于生产鞘氨醇,这是一种有望解决阿尔茨海默氏病的药物

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Background Bacillus subtilis 168 possesses an efficient pathway to metabolize some of the stereoisomers of inositol, including myo-inositol (MI) and scyllo-inositol (SI). Previously we reported a prototype of a B. subtilis cell factory with modified inositol metabolism that converts MI into SI in the culture medium. However, it wasted half of initial 1.0% (w/v) MI, and the conversion was limited to produce only 0.4% (w/v) SI. To achieve a more efficient SI production, we attempted additional modifications. Results All “useless” genes involved in MI and SI metabolism were deleted. Although no elevation in SI production was observed in the deletion strain, it did result in no wastage of MI anymore. Thus additionally, overexpression of the key enzymes, IolG and IolW, was appended to demonstrate that simultaneous overexpression of them enabled complete conversion of all MI into SI. Conclusions The B. subtilis cell factory was improved to yield an SI production rate of 10?g/L/48?h at least. The improved conversion was achieved only in the presence of enriched nutrition in the form of 2% (w/v) Bacto soytone in the medium, which may be due to the increasing demand for regeneration of cofactors.
机译:背景技术枯草芽孢杆菌168具有代谢肌醇的一些立体异构体的有效途径,包括肌醇(MI)和鲨肌醇(SI)。先前,我们报道了具有改良的肌醇代谢的枯草芽孢杆菌细胞工厂的原型,该原型将培养基中的MI转换为SI。但是,它浪费了最初1.0%(w / v)MI的一半,并且转换被限制为仅产生0.4%(w / v)SI。为了实现更有效的SI生产,我们尝试了其他修改。结果所有参与MI和SI代谢的“无用”基因均被删除。尽管在缺失菌株中未观察到SI产生的升高,但确实不再导致MI的浪费。因此,另外,关键酶IolG和IolW的过表达被附加以证明它们同时过表达能够使所有MI完全转化为SI。结论改进了枯草芽孢杆菌细胞工厂,使其SI生产率至少达到10?g / L / 48?h。仅在培养基中以2%(w / v)芽孢杆菌大豆蛋白的形式存在丰富营养的情况下,转化率才能提高,这可能是由于对辅因子再生的需求增加。

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