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Increasing fatty acid production in E. coli by simulating the lipid accumulation of oleaginous microorganisms

机译:通过模拟油脂性微生物的脂质积累来增加大肠杆菌中的脂肪酸产量

摘要

Unlike many oleaginous microorganisms, E. coli only maintains a small amount of natural lipids in cells, impeding its utility to overproduce fatty acids. In this study, acetyl-CoA carboxylase (ACC) from Acinetobacter calcoaceticus was expressed in E. coli to redirect the carbon flux to the generation of malonyl-CoA, which resulted in a threefold increase in intracellular lipids. Moreover, providing a high level of NADPH by overexpressing malic enzyme and adding malate to the culture medium resulted in a fourfold increase in intracellular lipids (about 197.74 mg/g). Co-expression of ACC and malic enzyme resulted in 284.56 mg/g intracellular lipids, a 5.6-fold increase compared to the wild-type strain. This study provides some attractive strategies for increasing lipid production in E. coli by simulating the lipid accumulation of oleaginous microorganisms, which could aid the development of a prokaryotic fatty acid producer.
机译:与许多油脂性微生物不同,大肠杆菌仅在细胞中保留少量天然脂质,从而阻碍了其过量生产脂肪酸的效用。在这项研究中,来自钙不动杆菌的乙酰辅酶A羧化酶(ACC)在大肠杆菌中表达,将碳通量重定向到丙二酰辅酶A的产生,这导致细胞内脂质增加了三倍。此外,通过过表达苹果酸酶并向培养基中添加苹果酸来提供高水平的NADPH,导致细胞内脂质增加四倍(约197.74 mg / g)。 ACC和苹果酸酶的共表达产生284.56 mg / g的细胞内脂质,比野生型菌株增加5.6倍。这项研究提供了一些诱人的策略,可以通过模拟油脂性微生物的脂质积累来增加大肠杆菌中的脂质产量,这可以帮助开发原核脂肪酸生产商。

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