合成生物学
限制
生化工程
级联反应
级联
蛋白质工程
模块化设计
计算生物学
生物催化
生物合成
组合化学
化学
生物技术
酶
生物
计算机科学
生物化学
工程类
机械工程
离子液体
操作系统
色谱法
催化作用
作者
Yue Gao,Fei Li,Zhengshan Luo,Zhiwei Deng,Yan Zhang,Zhenbo Yuan,Peipei Liu,Yijian Rao
标识
DOI:10.1038/s41467-023-44420-7
摘要
Abstract Plant-derived alkaloids are an important class of pharmaceuticals. However, they still rely on phytoextraction to meet their diverse market demands. Since multistep biocatalytic cascades have begun to revolutionize the manufacture of natural or unnatural products, to address the synthetic challenges of alkaloids, herein we establish an artificially concise four-enzyme biocatalytic cascade with avoiding plant-derived P450 modification for synthesizing phenethylisoquinoline alkaloids (PEIAs) after enzyme discovery and enzyme engineering. Efficient biosynthesis of diverse natural and unnatural PEIAs is realized from readily available substrates. Most importantly, the scale-up preparation of the colchicine precursor ( S )-autumnaline with a high titer is achieved after replacing the rate-limiting O -methylation by the plug-and-play strategy. This study not only streamlines future engineering endeavors for colchicine biosynthesis, but also provides a paradigm for constructing more artificial biocatalytic cascades for the manufacture of diverse alkaloids through synthetic biology.
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