假尿苷
大肠杆菌
生物生产
发酵
尿嘧啶
核糖
代谢工程
核糖核苷
产量(工程)
核苷
酶
DNA糖基化酶
化学
单糖
生物催化
生物化学
磷酸酶
组合化学
体内
糖
糖苷水解酶
蛋白质工程
工业微生物学
脱羧
生物合成
β-半乳糖苷酶
氟尿苷
核酸
代谢途径
作者
Chi Zhang,Guoguang Wei,Ning Zhou,Yingying Wang,Jia Feng,Xin Wang,Alei Zhang,Kequan Chen
标识
DOI:10.1021/acssynbio.4c00028
摘要
In this study, we proposed a biological approach to efficiently produce pseudouridine (Ψ) from glucose and uracil in vivo using engineered Escherichia coli. By screening host strains and core enzymes, E. coli MG1655 overexpressing Ψ monophosphate (ΨMP) glycosidase and ΨMP phosphatase was obtained, which displayed the highest Ψ concentration. Then, optimization of the RBS sequences, enhancement of ribose 5-phosphate supply in the cells, and overexpression of the membrane transport protein UraA were investigated. Finally, fed-batch fermentation of Ψ in a 5 L fermentor can reach 27.5 g/L with a yield of 89.2 mol % toward uracil and 25.6 mol % toward glucose within 48 h, both of which are the highest to date. In addition, the Ψ product with a high purity of 99.8% can be purified from the fermentation broth after crystallization. This work provides an efficient and environmentally friendly protocol for allowing for the possibility of Ψ bioproduction on an industrial scale.
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