雷公藤醇
雷公藤
生物合成
生物化学
卫矛科
细胞色素P450
酶
酿酒酵母
化学
酵母
生物
立体化学
医学
病理
细胞凋亡
替代医学
作者
Yun Lü,Yuan Liu,Yifeng Zhang,Haiyun Gao,Xiaochao Chen,Lichan Tu,Yun‐Feng Luo,Zhouqian Jiang,Yan Yin,Jiawei Zhou,Tianyuan Hu,Xiaoyi Wu,Jiadian Wang,Wei Gao,Luqi Huang
标识
DOI:10.1021/acs.jnatprod.3c00674
摘要
Celastrol is a bioactive pentacyclic triterpenoid with promising therapeutic effects that is mainly distributed in Celastraceae plants. Although some enzymes involved in the celastrol biosynthesis pathway have been reported, many biosynthetic steps remain unknown. Herein, transcriptomics and metabolic profiles of multiple species in Celastraceae were integrated to screen for cytochrome P450s (CYPs) that are closely related to celastrol biosynthesis. The CYP716 enzyme, TwCYP716C52, was found to be able to oxidize the C-2 position of polpunonic acid, a precursor of celastrol, to form the wilforic acid C. RNAi-mediated repression of TwCYP716C52 in Tripterygium wilfordii suspension cells further confirmed its involvement in celastrol biosynthesis. The C-2 catalytic mechanisms of TwCYP716C52 were further explored by using molecular docking and site-directed mutagenesis experiments. Moreover, a modular optimization strategy was used to construct an engineered yeast to produce wilforic acid C at a titer of 5.8 mg·L–1. This study elucidates the celastrol biosynthetic pathway and provides important functional genes and sufficient precursors for further enzyme discovery.
科研通智能强力驱动
Strongly Powered by AbleSci AI