齐墩果酸
油酸烷
化学
生物化学
糖基转移酶
人参
葡萄糖醛酸化
人参皂甙
葡萄糖醛酸
酶
新陈代谢
三萜
医学
微粒体
病理
替代医学
作者
Junrong Tang,Geng Chen,Yingchun Lu,Qingyan Tang,Wanling Song,Yuan Lin,Ying Li,Sufang Peng,Shengchao Yang,Guanghui Zhang,Bing Hao
出处
期刊:Planta
[Springer Nature]
日期:2021-04-05
卷期号:253 (5)
被引量:15
标识
DOI:10.1007/s00425-021-03617-0
摘要
Two UDP-glycosyltransferases from Panax japonicus var. major were identified, and the biosynthetic pathways of three oleanane-type ginsenosides (chikusetsusaponin IVa, ginsenoside Ro, zingibroside R1) were elucidated. Chikusetsusaponin IVa and ginsenoside Ro are primary active components formed by stepwise glycosylation of oleanolic acid in five medicinal plants of the genus Panax. However, the key UDP-glycosyltransferases (UGTs) in the biosynthetic pathway of chikusetsusaponin IVa and ginsenoside Ro are still unclear. In this study, two UGTs (PjmUGT1 and PjmUGT2) from Panax japonicus var. major involved in the biosynthesis of chikusetsusaponin IVa and ginsenoside Ro were identified based on bioinformatics analysis, heterologous expression and enzyme assays. The results show that PjmUGT1 can transfer a glucose moiety to the C-28 carboxyl groups of oleanolic acid 3-O-β-d-glucuronide and zingibroside R1 to form chikusetsusaponin IVa and ginsenoside Ro, respectively. Meanwhile, PjmUGT2 can transfer a glucose moiety to oleanolic acid 3-O-β-d-glucuronide and chikusetsusaponin IVa to form zingibroside R1 and ginsenoside Ro. This work uncovered the biosynthetic mechanism of chikusetsusaponin IVa and ginsenoside Ro, providing the rational production of valuable saponins through synthetic biology strategy.
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