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Metabolic engineering of Escherichia coli for producing adipic acid through the reverse adipate-degradation pathway

机译:通过反向己二酸脱落途径生产己二酸大肠杆菌的代谢工程

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摘要

Adipic acid is an important dicarboxylic acid mainly used for the production of nylon 6-6 fibers and resins. Previous studies focused on the biological production of adipic acid directly from different substrates, resulting in low yields and titers. In this study, a five-step reverse adipate-degradation pathway (RADP) identified in Thermobifida fusca has been reconstructed in Escherichia toll BL21 (DE3). The resulting strain (Mad136) produced 0.3 gL(-1) adipic acid with a 11.1% theoretical yield in shaken flasks, and we confirmed that the step catalyzed by 5-Carboxy-2-pentenoyl-CoA reductase (Tfu_1647) as the rate-limiting step of the RADP. Overexpression of Tfu_1647 by pTrc99A carried by strain Mad146 produced with a 49.5% theoretical yield in shaken flasks. We further eliminated pathways for major metabolites competing for carbon flux by CRISPR/Cas9 and deleted the succinate-CoA ligase gene to promote accumulation of succinyl-CoA, which is the precursor for adipic acid synthesis. The final engineered strain Mad123146, which could achieve 93.1% of the theoretical yield in the shaken flask, was able to produce 68.0 g L-1 adipic acid by fed-batch fermentation. To the best of our knowledge, these results constitute the highest adipic acid titer reported in E. coli.
机译:己二酸是主要用于生产尼龙6-6纤维和树脂的重要二羧酸。以前的研究专注于直接来自不同底物的己二酸的生物生产,得到低产率和滴度。在该研究中,在大肠杆菌Toll BL21(DE3)中重建了在Thermobifida FUSCA中鉴定的五步反应己二化途径(RADP)。得到的菌株(MAD136)产生0.3gl(-1)己二酸,其在摇动烧瓶中具有11.1%的理论产率,并确认将5-羧基-2-戊酰基-CoA还原酶(TFU_1647)催化的步骤为速率 - 限制RADP的步骤。 Ptrc99a通过菌株MAD146携带的TFU_1647的过度表达,并在Shaken烧瓶中具有49.5%的理论产量。我们进一步消除了通过CRISPR / CAS9竞争碳通量的主要代谢产物的途径,并删除琥珀酸COA连接酶基因以促进琥珀酰基 - COA的积累,这是己二酸合成的前体。最终的工程化菌株MAD123146,其可以达到摇动瓶中的理论产量的93.1%,通过FED分批发酵能够产生68.0g L-1己二酸。据我们所知,这些结果构成了大肠杆菌中报道的最高己二酸滴度。

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