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Model-aided atpE gene knockout strategy in Escherichia coli for enhanced succinic acid production from glycerol

机译:大肠杆菌中的模型辅助atpE基因敲除策略可提高甘油的琥珀酸产量

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Succinic acid is an important platform chemical with a variety of applications. Model-guided metabolic engineering strategies in Escherichia coli for strain improvement to increase succinic acid production using glucose and glycerol remain largely unexplored. Herein, we report what are, to our knowledge, the first metabolic knockout of the atpE gene to have increased succinic acid production using both glucose and alternative glycerol carbon sources in E. coli. Guided by a genome-scale metabolic model, we engineered the E. coli host to enhance anaerobic production of succinic acid by deleting the atpE gene, thereby generating additional reducing equivalents by blocking H+ conduction across the mutant cell membrane. This strategy produced 1.58 and .49gl(-1) of succinic acid from glycerol and glucose substrate, respectively. This work further elucidates a model-guided and/or system-based metabolic engineering, involving only a single-gene deletion strategy for enhanced succinic acid production in E. coli.
机译:琥珀酸是一种重要的平台化学品,具有多种应用。在大肠杆菌中以模型为指导的代谢工程策略,用于改善菌株以使用葡萄糖和甘油增加琥珀酸的产量,目前仍未开发。在本文中,据我们所知,使用大肠杆菌中的葡萄糖和其他甘油碳源,首次报道了atpE基因的代谢敲除提高了琥珀酸的产量。在基因组规模的代谢模型的指导下,我们改造了大肠杆菌宿主,通过删除atpE基因来增强琥珀酸的厌氧生产,从而通过阻止跨突变细胞膜的H +传导来产生其他还原当量。此策略分别从甘油和葡萄糖底物产生1.58和0.49gl(-1)的琥珀酸。这项工作进一步阐明了模型指导和/或基于系统的代谢工程,仅涉及用于增强大肠杆菌中琥珀酸生产的单基因缺失策略。

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