穿心莲内酯
生物合成
生物化学
异源表达
穿心莲
酶
转录组
萜类
生物
异源的
化学
二萜
内酯
代谢工程
代谢途径
产量(工程)
天然产物
基因表达
计算生物学
萜烯
裂解酶
异位表达
新陈代谢
立体化学
作者
Shan Li,Qihang Chen,Hanning Deng,Shuangshuang Luo,Song Liu,Jingwen Zhou
标识
DOI:10.1021/acssynbio.5c00882
摘要
Andrographolide is a bioactive diterpenoid with diverse physiological functions, yet its limited natural supply has hindered further research. In this study, we discovered its natural biosynthetic pathway, which was previously hypothesized to originate from ent -copalol via CYP450-mediated steps. Transcriptomics analyses based on RNA-Seq across different plant tissues of Andrographis paniculata revealed seven CYP450 candidates potentially involved in its biosynthesis from ent -copalol. While individual expression of these enzymes in Saccharomyces cerevisiae did not yield detectable intermediates, coexpression of Ap CYP71A8 and Ap CYP71D10, which exhibited the strongest binding interactions with ent -copalol, achieved conversion of ent -copalol to 3,15,19-trihydroxy-8(17),13- ent -labdadien-16-oic acid. Ap AOP1.2 was found to catalyze the lactone ring formation. Expression of Ap CYP72A219 alone converted 14-deoxyandrographolide to andrographolide. Finally, coexpression of Ap CYP71A8, Ap CYP71D10, Ap AOP1.2, and Ap CYP72A219 achieved de novo biosynthesis of andrographolide in S. cerevisiae . The results provide a strategy for elucidating the biosynthetic pathways of diterpenes and facilitating their heterologous microbial production.
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