甘露糖
生物化学
大肠杆菌
脱磷
代谢工程
化学
果糖
运动发酵单胞菌
异构酶
磷酸化
酶
生物
磷酸酶
发酵
基因
乙醇燃料
作者
Yuyao Wang,Enhui Chen,Yanfei Wang,Xinming Sun,Qianzhen Dong,Chen Peng,Chenglin Zhang,Jiangang Yang,Yuanxia Sun
标识
DOI:10.1016/j.enzmictec.2024.110427
摘要
d-mannose has been widely used in food, medicine, cosmetic, and food-additive industries. To date, chemical synthesis or enzymatic conversion approaches based on iso/epimerization reactions for d-mannose production suffered from low conversion rate due to the reaction equilibrium, necessitating intricate separation processes for obtaining pure products on an industrial scale. To circumvent this challenge, this study showcased a new approach for d-mannose synthesis from glucose through constructing a phosphorylation-dephosphorylation pathway in an engineered strain. Specifically, the gene encoding phosphofructokinase (PfkA) in glycolytic pathway was deleted in Escherichia coli to accumulate fructose-6-phosphate (F6P). Additionally, one endogenous phosphatase, YniC, with high specificity to mannose-6-phosphate, was identified. In ΔpfkA strain, a recombinant synthetic pathway based on mannose-6-phosphate isomerase and YniC was developed to direct F6P to mannose. The resulting strain successfully produced 25.2 g/L mannose from glucose with a high conversion rate of 63% after transformation for 48 h. This performance surpassed the 15% conversion rate observed with 2-epimerases. In conclusion, this study presents an efficient method for achieving high-yield mannose synthesis from cost-effective glucose.
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