| Literature DB >> 29715517 |
Ya-Nan Qu1, Hao-Jie Yan2, Qiang Guo1, Jia-Long Li2, Yu-Cheng Ruan2, Xiu-Zheng Yue2, Wen-Xin Zheng2, Tian-Wei Tan1, Li-Hai Fan3.
Abstract
D-glucaric acid is a promising platform compound used to synthesize many other value-added or commodity chemicals. The engineering of Escherichia coli for efficiently converting D-glucose to D-glucaric acid has been attempted for several years, with mixed sugar fermentation recently gaining growing interests due to the increased D-glucaric acid yield. Here, we co-expressed cscB, cscA, cscK, ino1, miox, udh, and suhB in E. coli BL21 (DE3), functionally constructing an unreported route from sucrose to D-glucaric acid. Further deletion of chromosomal zwf, pgi, ptsG, uxaC, gudD, over-expression of glk, and use of a D-fructose-dependent translation control system for pgi enabled the strain to use sucrose as the sole carbon source while achieving a high product titer and yield. The titer of D-glucaric acid in M9 medium containing 10 g/L sucrose reached ~1.42 g/L, with a yield of ~0.142 g/g on sucrose.Entities:
Keywords: Carbon flow; Disaccharide utilization; Metabolic engineering; Microbial fermentation; Platform chemical
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Year: 2018 PMID: 29715517 DOI: 10.1016/j.ymben.2018.04.020
Source DB: PubMed Journal: Metab Eng ISSN: 1096-7176 Impact factor: 9.783