粉防己碱
O-甲基转移酶
生物化学
生物合成
蛋氨酸
化学
生物碱
苄基异喹啉
生物
甲基转移酶
酶
立体化学
基因
药理学
甲基化
氨基酸
作者
Qishuang Li,Junling Bu,Ying Ma,Jian Yang,Zhimin Hu,Chang‐Jiang‐Sheng Lai,Yanqin Xu,Jinfu Tang,Guanghong Cui,Yanan Wang,Yujun Zhao,Baolong Jin,Ye Shen,Juan Guo,Luqi Huang
标识
DOI:10.1016/j.jplph.2020.153181
摘要
Tetrandrine is the most effective small molecule that has been found to inhibit the Ebola virus. It is a typical bisbenzylisoquinoline alkaloid and is the main active ingredient in Stephania tetrandra. Metabolic engineering and synthetic biology are potential methods for efficient and rapid acquisition of tetrandrine. S-adenosyl-L-methionine: (S)-norcoclaurine-6-O-methyltransferase (6OMT) is a rate-limiting step involved in the biosynthesis of tetrandrine. In this study, we identify S-adenosyl-L-methionine: (S)-norcoclaurine-6-O-methyltransferase from S. tetrandra, which catalyzes the conversion of (S)-norcoclaurine to (S)-coclaurine. Four 6OMT-like genes were cloned from S. tetrandra. An in vitro enzyme assay showed that St6OMT1 could catalyze the conversion of (S)-norcoclaurine to produce (S)-coclaurine. St6OMT2 can catalyze the production of very few (S)-coclaurine molecules, accompanied by more by-products with m/z 300, compared to St6OMT1. The newly discovered 6OMTs will provide an optional genetic component for benzylisoquinoline alkaloid (BIA) synthetic biology research. This work will lay the foundation for the analysis of the biosynthetic pathway of tetrandrine in S. tetrandra.
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