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Contracted but effective: production of enantiopure 2,3-butanediol by thermophilic and GRAS Bacillus licheniformis

机译:承包但有效:通过嗜热和GRAS地衣芽孢杆菌生产对映纯2,3-丁二醇

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摘要

The production of chemicals with chiral groups through chemical methods is attractive but difficult to perform. Optically active 2,3-butanediol (2,3-BD) can provide two chiral groups and has special applications in asymmetric synthesis. However, the chemical production of 2,3-BD from nonrenewable resources is expensive to perform and results in a mixture of three stereoisomeric forms. Enantiopure 2,3-BD production through green biotechnological routes is thus rather desirable. In this work, we introduced a "SAME" (Screening, Analysis, Mutation, and Evaluation) process to achieve efficient microbes for chiral chemicals' production using 2,3-BD as a target molecule. Bacillus licheniformis MW3, a GRAS and thermophilic strain, was firstly selected as a promising host. The mechanism of stereoisomer formation of 2,3-BD in B. licheniformis MW3 was then investigated. Two stereospecific 2,3-BD dehydrogenases (BDHs), 2R,3R-BDH (encoded by gdh) and meso-BDH (encoded by budC), were identified to be responsible for the production of (2R,3R)-2,3-BD and meso-2,3-BD. Two metabolically engineered strains, B. licheniformis MW3 (Delta budC) and B. licheniformis MW3 (Delta gdh), were constructed for the production of (2R,3R)-2,3-BD and meso-2,3-BD, respectively. After 42 h of fermentation, 123.7 g L-1 (2R,3R)-2,3-BD was synthesized using B. licheniformis MW3 (Delta budC); while 90.1 g L-1 meso-2,3-BD was synthesized after 32 h using B. licheniformis MW3 (Delta gdh). Because of their high levels of production and biosecurity, these engineered B. licheniformis strains might have potential in the commercial production of enantiopure (2R,3R)-2,3-BD and meso-2,3-BD. The contracted but effective "SAME" process might serve as an alternative method for other chiral chemicals' production.
机译:通过化学方法生产具有手性基团的化学物质是有吸引力的,但是难以进行。光学活性的2,3-丁二醇(2,3-BD)可以提供两个手性基团,并且在不对称合成中具有特殊的应用。但是,由不可再生资源化学生产2,3-BD的成本很高,并且会导致三种立体异构体形式的混合。因此,通过绿色生物技术途径生产对映体纯的2,3-BD是相当理想的。在这项工作中,我们引入了“ SAME”(筛选,分析,突变和评估)过程,以使用2,3-BD作为目标分子来实现手性化学品生产的高效微生物。首先选择了GRAS和嗜热芽孢杆菌地衣芽孢杆菌MW3作为有希望的宿主。然后研究了地衣芽孢杆菌MW3中2,3-BD的立体异构体形成机理。两种立体特异性的2,3-BD脱氢酶(BDH),2R,3R-BDH(由gdh编码)和meso-BDH(由budC编码)被鉴定为负责(2R,3R)-2,3的产生-BD和meso-2,3-BD。构建了两个代谢工程菌株,分别为地衣芽孢杆菌MW3(Delta budC)和地衣芽孢杆菌MW3(Delta gdh),分别用于生产(2R,3R)-2,3-BD和meso-2,3-BD。 。发酵42小时后,使用地衣芽孢杆菌MW3(Delta budC)合成了123.7 g L-1(2R,3R)-2,3-BD。 32小时后,使用地衣芽孢杆菌MW3(Delta gdh)合成了90.1 g L-1 meso-2,3-BD。由于它们的高水平生产和生物安全性,这些工程改造的地衣芽孢杆菌菌株可能在对映纯(2R,3R)-2,3-BD和meso-2,3-BD的商业生产中具有潜力。合同规定但有效的“ SAME”工艺可以用作其他手性化学品生产的替代方法。

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