大肠杆菌
生物合成
岩藻糖基转移酶
岩藻糖
代谢工程
代谢途径
甘油
合理设计
合成生物学
化学
生物化学
生物
计算生物学
遗传学
酶
基因
半乳糖
作者
Yingying Zhu,Roulin Chen,Hao Wang,Yihan Chen,Zhaolin Huang,Zhihui Du,Jiawei Meng,Jingwen Zhou,Wanmeng Mu
标识
DOI:10.1021/acs.jafc.4c01691
摘要
Difucosyllactose (DFL) is a significant and plentiful oligosaccharide found in human breast milk. In this study, an artificial metabolic pathway of DFL was designed, focusing on the de novo biosynthesis of GDP-fucose from only glycerol. This was achieved by engineering Escherichia coli to endogenously overexpress genes manB, manC, gmd, and wcaG and heterologously overexpress a pair of fucosyltransferases to produce DFL from lactose. The introduction of α-1,2-fucosyltransferase from Helicobacter pylori (FucT2) along with α-1,3/4-fucosyltransferase (HP3/4FT) addressed rate-limiting challenges in enzymatic catalysis and allowed for highly efficient conversion of lactose into DFL. Based on these results, molecular modification of HP3/4FT was performed based on computer-assisted screening and structure-based rational design. The best-performing mutant, MH5, containing a combination of five mutated sites (F49K/Y131D/Y197N/E338D/R369A) of HP3/4FT was obtained. The best strain BLC09-58 harboring MH5 yielded 45.81 g/L of extracellular DFL in 5-L fed-batch cultures, which was the highest titer reported to date.
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