天麻素
天麻
糖苷
生物化学
化学
代谢工程
大肠杆菌
成分
生物合成
生物生产
酶
有机化学
食品科学
基因
中医药
医学
色谱法
病理
替代医学
作者
Yanfen Bai,Hua Yin,Huiping Bi,Yibin Zhuang,Tao Liu,Yanhe Ma
标识
DOI:10.1016/j.ymben.2016.01.002
摘要
Gastrodin, a phenolic glycoside, is the key ingredient of Gastrodia elata, a notable herbal plant that has been used to treat various conditions in oriental countries for centuries. Gastrodin is extensively used clinically for its sedative, hypnotic, anticonvulsive and neuroprotective properties in China. Gastrodin is usually produced by plant extraction or chemical synthesis, which has many disadvantages. Herein, we report unprecedented microbial synthesis of gastrodin via an artificial pathway. A Nocardia carboxylic acid reductase, endogenous alcohol dehydrogenases and a Rhodiola glycosyltransferase UGT73B6 transformed 4-hydroxybenzoic acid, an intermediate of ubiquinone biosynthesis, into gastrodin in Escherichia coli. Pathway genes were overexpressed to enhance metabolic flux toward precursor 4-hydroxybenzyl alcohol. Furthermore, the catalytic properties of the UGT73B6 toward phenolic alcohols were improved through directed evolution. The finally engineered strain produced 545 mg l−1 gastrodin in 48 h. This work creates a new route to produce gastrodin, instead of plant extractions and chemical synthesis.
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