生物合成
柴胡
细胞色素P450
生物化学
羟基化
基因
酶
化学
氨基酸
生物
皂甙
三萜
代谢途径
人参
突变
基因表达
角鲨烯单加氧酶
立体化学
药用植物
细胞色素
活动站点
对接(动物)
过氧化物酶
萜类
作者
Kaimi Dong,Hua Chen,Yu Ma,Shiying Wang,Xue Yin,Chuanxin Mo,M. Y. Zhang,Yuchan Li,Yong Luo,Zeru Yu,Zisong Yang,Jun Zhao,Chao Xin,Wenshuai Chen,Zhen Ni,Zheyong Xue,Jianhe Wei
标识
DOI:10.1016/j.cj.2025.12.007
摘要
Saikosaponins are the major pharmacologically active components in Bupleurum genus and exhibit significant application potential in multiple fields such as immune regulation and anti-tumor activity. To elucidate the biosynthetic pathway of saikosaponins, we identified two cytochrome P450 monooxygenases, CYP716A41 and CYP716Y4, in Bupleurum chinense . These enzymes catalyze the C-28 oxidation and C-16 hydroxylation of oleanane-type triterpene skeletons, respectively. The catalytic efficiency of CYP716A41 from a southern B. chinense variety was significantly higher than that from a northern variety. Molecular docking and mutagenesis experiments revealed that amino acid residues at sites 9 and 35 may contribute to this difference in catalytic efficiency. Additionally, under cold stress, the expression levels of both CYP450 genes and the saikosaponin contents in the leaves of southern varieties were significantly higher compared to those in northern varieties. The variation in the catalytic efficiency of CYP716A41 and the differential expression of the two CYP450 genes under cold stress during winter are associated with the differences in saikosaponin biosynthesis in the leaves of southern and northern B. chinense varieties. This is consistent with the distinct medicinal usage practices observed between southern and northern China.
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