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Metabolic flux redirection from a central metabolic pathway toward a synthetic pathway using a metabolic toggle switch

机译:使用代谢拨动开关,从中央代谢途径重定向到合成途径的代谢助焊剂

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摘要

Overexpression of genes in production pathways and permanent knockout of genes in competing pathways are often employed to improve production titer and yield in metabolic engineering. However, the deletion of a pathway responsible for growth and cell maintenance has not previously been employed, even if its competition with the production pathway is obvious. In order to optimize intracellular metabolism at each fermentation phase for bacterial growth and production, a methodology employing conditional knockout is required. We constructed a metabolic toggle switch in Escherichia coli as a novel conditional knockout approach and applied it to isopropanol production. The resulting redirection of excess carbon flux caused by interruption of the TCA cycle via switching gltA OFF improved isopropanol production titer and yield up to 3.7 and 3.1 times, respectively. This approach is a useful tool to redirect carbon flux responsible for bacterial growth and/or cell maintenance toward a synthetic production pathway.
机译:竞争途径中生产途径和永久性敲除的基因的过表达通常用于改善代谢工程的生产滴度和产量。然而,即使它与生产途径的竞争显而易见,此外,缺失负责生长和细胞维持的途径也没有明显。为了优化每种发酵阶段的细胞内代谢进行细菌生长和生产,需要采用条件敲除的方法。我们在大肠杆菌中建造了一种代谢切换开关,作为一种新型条件淘汰方法,并将其应用于异丙醇生产。通过切换Glta OFF改善的异丙醇生产滴度和产量高达3.7和3.1次,通过切换GLTA循环中断引起的过度碳通量的重定向。这种方法是将碳通量重定向碳通量的有用工具,该碳通量对合成生产途径朝向合成生产途径的细菌生长和/或细胞维持。

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