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- Title
- Metabolic engineering of Escherichia coli for production of non-natural acetins from glycerol
- Author(s)
- B Zada; S Joo; C Wang; T Tseten; S H Jeong; H Seo; Jung Hoon Sohn; K J Kim; S W Kim
- Bibliographic Citation
- Green Chemistry, vol. 22, pp. 7788-7802
- Publication Year
- 2020
- Abstract
- Mono-, di- and triacetin are three glycerol esters which are usually synthesized via costly and environmentally unfriendly chemical synthesis methods. Here, Escherichia coli is metabolically engineered for the production of mono-, di- and triacetin using glycerol as a substrate. First, a novel biosynthetic route of mono- and diacetin is established by overexpression of a native enzyme, maltose O-acetyltransferase (MAA). Next, the biosynthetic pathway is extended to produce a mixture of mono-, di- and triacetin by overexpression of chloramphenicol-O-acetyltransferase (CAT). By successive strategies, including heterologous gene expression, metabolic engineering, and culture optimization, a recombinant E. coli is enabled to produce more than 27 g L-1 of a mixture of mono-, di- and triacetin in shake flask cultures, which is a >650-fold increase over the initial production of 0.04 g L-1. In vitro studies confirm the acetylation of glycerol to mono- and diacetin by MAA, and the additional acetylation to triacetin by CAT. When crude glycerol is used as a substrate, the engineered strain produced a total of 25.9 g L-1 of the acetin mixture, about the same as that achieved from pure glycerol. To our knowledge, this is the first successful report of microbial production of the artificial chemicals, acetins.
- ISSN
- 1463-9262
- Publisher
- Royal Soc Chem
- Full Text Link
- http://dx.doi.org/10.1039/d0gc02395g
- Type
- Article
- Appears in Collections:
- Synthetic Biology and Bioengineering Research Institute > Synthetic Biology Research Center > 1. Journal Articles
- Files in This Item:
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