羟基酪醇
大肠杆菌
代谢工程
化学
生物合成
生物化学
酶
保健品
辅因子
基质(水族馆)
加氧酶
合理设计
儿茶酚
蛋白质工程
双加氧酶
细菌
抗氧化剂
生物催化
定向进化
催化作用
合成生物学
底物特异性
生物反应器
酶催化
效价
代谢途径
组合化学
氨基酸
作者
Yanting Chen,Qihang Chen,Yajuan Su,Weizhu Zeng,Zilong Dong,J Li,Jingwen Zhou
标识
DOI:10.1021/acs.jafc.5c13640
摘要
Hydroxytyrosol (HT), a potent natural antioxidant in olive oil, has broad food and nutraceutical applications, but sustainable, scalable production remains challenging. Here, we achieved efficient de novo HT biosynthesis in Escherichia coli using glucose-glycerol dual carbon sources, combining metabolic engineering and rational enzyme design. We eliminated feedback inhibition, deleted competing pathways, and rationally mutated the rate-limiting enzyme HpaBC (S462A/M293Y), which enhanced catalytic efficiency by improving substrate entry, oxygen availability, and shortening reaction distance, as revealed by molecular dynamics simulations. Global cofactor optimization boosted HT titer to 4.90 g/L in shake flasks. Under optimized dissolved oxygen in a 5 L bioreactor, HT production reached 13.25 g/L, the highest reported titer in E. coli to date, providing a robust strategy for sustainable HT biomanufacturing.
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