Unraveling the serial glycosylation in the biosynthesis of steroidal saponins in the medicinal plant Paris polyphylla and their antifungal action

抗真菌 糖基转移酶 糖基化 突变体 化学 糖苷 生物信息学 萜类 生物化学 立体化学 生物 微生物学 基因
作者
Yuegui Chen,Qin Yan,Yunheng Ji,Xue Bai,Desen Li,Rong‐Fang Mu,Kai Guo,Min-Jie Yang,Tao Yang,Jonathan Gershenzon,Yan Liu,Sheng‐Hong Li
出处
期刊:Acta Pharmaceutica Sinica B [Elsevier BV]
卷期号:13 (11): 4638-4654 被引量:8
标识
DOI:10.1016/j.apsb.2023.05.033
摘要

Sugar–sugar glycosyltransferases play important roles in constructing complex and bioactive saponins. Here, we characterized a series of UDP-glycosyltransferases responsible for biosynthesizing the branched sugar chain of bioactive steroidal saponins from a widely known medicinal plant Paris polyphylla var. yunnanensis. Among them, a 2′-O-rhamnosyltransferase and three 6′-O-glucosyltrasferases catalyzed a cascade of glycosylation to produce steroidal diglycosides and triglycosides, respectively. These UDP-glycosyltransferases showed astonishing substrate promiscuity, resulting in the generation of a panel of 24 terpenoid glycosides including 15 previously undescribed compounds. A mutant library containing 44 variants was constructed based on the identification of critical residues by molecular docking simulations and protein model alignments, and a mutant UGT91AH1Y187A with increased catalytic efficiency was obtained. The steroidal saponins exhibited remarkable antifungal activity against four widespread strains of human pathogenic fungi attributed to ergosterol-dependent damage of fungal cell membranes, and 2′-O-rhamnosylation appeared to correlate with strong antifungal effects. The findings elucidated the biosynthetic machinery for their production of steroidal saponins and revealed their potential as new antifungal agents.
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