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Metabolic engineering of fatty acyl-ACP reductase-dependent pathway to improve fatty alcohol production in Escherichia coli

机译:脂肪酰基-ACP还原酶依赖性途径的代谢工程,可改善大肠杆菌中脂肪醇的产生

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Fatty alcohols are important components of surfactants and cosmetic products. The production of fatty alcohols from sustainable resources using microbial fermentation could reduce dependence on fossil fuels and greenhouse gas emission. However, the industrialization of this process has been hampered by the current low yield and productivity of this synthetic pathway. As a result of metabolic engineering strategies, an Escherichia coli mutant containing Synechococcus elongatus fatty acyl-ACP reductase showed improved yield and productivity. Proteomics analysis and in vitro enzymatic assays showed that endogenous E. coli AdhP is a major contributor to the reduction of fatty aldehydes to fatty alcohols. Both in vitro and in vivo results clearly demonstrated that the activity and expression level of fatty acyl-CoA/ACP reductase is the rate-limiting step in the current protocol. In 2.5-L fed-batch fermentation with glycerol as the only carbon source, the most productive E. coli mutant produced 0.75 g/L fatty alcohols (0.02 g fatty alcohol/g glycerol) with a productivity of up to 0.06 g/L/h. This investigation establishes a promising synthetic pathway for industrial microbial production of fatty alcohols.
机译:脂肪醇是表面活性剂和化妆品的重要成分。利用微生物发酵从可持续资源生产脂肪醇可以减少对化石燃料和温室气体排放的依赖。然而,该方法目前的低收率和生产率阻碍了该方法的工业化。代谢工程策略的结果是,含有长形突触球菌脂肪酰基-ACP还原酶的大肠杆菌突变体显示出更高的产量和生产率。蛋白质组学分析和体外酶促测定表明,内源性大肠杆菌AdhP是将脂肪醛还原为脂肪醇的主要贡献者。体外和体内结果均清楚地表明,脂肪酰基辅酶A / ACP还原酶的活性和表达水平是当前方案中的限速步骤。在以甘油为唯一碳源的2.5升补料分批发酵中,生产力最高的大肠杆菌突变体产生0.75 g / L脂肪醇(0.02 g脂肪醇/ g甘油),生产力最高为0.06 g / L / H。这项研究建立了工业微生物生产脂肪醇的有希望的合成途径。

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