Production of 1-octanol in Escherichia coli by a high flux thioesterase route

被引:27
作者
Lozada, Nestor J. Hernandez [1 ,2 ]
Simmons, Trevor R. [1 ]
Xu, Ke [1 ]
Jindra, Michael A. [1 ]
Pfleger, Brian F. [1 ]
机构
[1] Univ Wisconsin, Dept Chem & Biol Engn, 1415 Engn Dr, Madison, WI 53706 USA
[2] Max Plank Inst Chem Ecol, Hans Knoll Str 8, D-07745 Jena, Germany
基金
美国国家科学基金会;
关键词
Octanol; Octanoicacid; Thioesterase; Escherichia coli; Oleochemical; Metabolic engineering; FATTY-ACID PRODUCTION; MICROBIAL-PRODUCTION; SYNTHETIC BIOLOGY; ACYL-COA; CHEMICALS; REDUCTASE; FUELS; REVERSAL; SYSTEMS;
D O I
10.1016/j.ymben.2020.07.004
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
1-octanol is a valuable molecule in the chemical industry, where it is used as a plasticizer, as a precursor in the production of linear low-density polyethylene (LLDPE), and as a growth inhibitor of tobacco plant suckers. Due to the low availability of eight-carbon acyl chains in natural lipid feedstocks and the selectivity challenges in petrochemical routes to medium-chain fatty alcohols,1-octanol sells for the highest price among the fatty alcohol products. As an alternative, metabolic engineers have pursued sustainable 1-octanol production via engineered microbes. Here, we report demonstration of gram per liter titers in the model bacterium Escherichia coli via the development of a pathway composed of a thioesterase, an acyl-CoA synthetase, and an acyl-CoA reductase. In addition, the impact of deleting fermentative pathways was explored E. coli K12 MG1655 strain for production of octanoic acid, a key octanol precursor. In order to overcome metabolic flux barriers, bioprospecting experiments were performed to identify acyl-CoA synthetases with high activity towards octanoic acid and acyl-CoA reductases with high activity to produce 1-octanol from octanoyl-CoA. Titration of expression of key pathway enzymes was performed and a strain with the full pathway integrated on the chromosome was created. The final strain produced 1-octanol at 1.3 g/L titer and a >90% C8 specificity from glycerol. In addition to the metabolic engineering efforts, this work addressed some of the technical challenges that arise when quantifying 1-octanol produced from cultures grown under fully aerobic conditions where evaporation and stripping are prevalent.
引用
收藏
页码:352 / 359
页数:8
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