羟基化
生物生产
甲基化
生物化学
辅因子
阿魏酸
化学
生物合成
生物
酶
基因
作者
Zhao Zhou,Xiangyan Zhang,Jun Wu,Xianglai Li,Wenna Li,Xinxiao Sun,Jia Wang,Yajun Yan,Xiaolin Shen,Qipeng Yuan
标识
DOI:10.1016/j.ymben.2022.08.007
摘要
Ferulic acid (FA) is a natural methylated phenolic acid which represents various bioactivities. Bioproduction of FA suffers from insufficient methyl donor supplement and inefficient hydroxylation. To overcome these hurdles, we first activate the S-adenosylmethionine (SAM) cycle in E. coli by using endogenous genes to supply sufficient methyl donor. Then, a small protein Fre is introduced into the pathway to efficiently regenerate FADH2 for the hydroxylation. Remarkably, regeneration of these two cofactors dramatically promotes FA synthesis. Together with decreasing the byproducts formation and boosting precursor supply, the titer of FA reaches 5.09 g/L under fed-batch conditions, indicating a 20-fold improvement compared with the original producing E. coli strain. This work not only establishes a promising microbial platform for industrial level production of FA and its derivatives, but also highlights a convenient and effective strategy to enhance the biosynthesis of chemicals requiring methylation and FADH2-dependent hydroxylation.
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