预酸化
酶
化学
糖基化
基质(水族馆)
生物化学
底物特异性
催化作用
蛋白质工程
立体化学
糖基转移酶
生物合成
基因工程
丙炔基转移酶
生物催化
表征(材料科学)
生物
结合位点
作者
Hong-Ye Li,Jianlin Zou,Bao Nie,Zi‐Long Wang,Meng Zhang,Chun-Xue Zhao,Yan-Fang Yang,Xi‐Ran Zhang,Xin-Yue Zhan,Li Wang,Min Ye
摘要
Prenylated phenolic glycosides, such as nodakenin, represent a class of natural products with diverse bioactivities. Their metabolic engineering production remains largely unexplored, primarily due to the scarcity of efficient UDP-glycosyltransferases (UGTs) capable of catalyzing prenylated phenolic substrates. In this study, we characterized several UGT93 enzymes from Angelica decursiva that catalyzed the glycosylation of nodakenetin. Enzymatic assays revealed a pronounced catalytic preference of these enzymes toward various types of prenylated phenolic substrates. Notably, this substrate preference is conserved across UGT93s from other species and a reconstructed ancestral enzyme. Structural analysis and mutation experiments revealed that the preference was caused by the substrate binding with several hydrophobic and aromatic residues. This study highlights the biocatalytic potential of the UGT93 family enzymes, offering promising biocatalysts for the glycosylation of plant-derived prenylated phenolics.
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