生物催化
糖基化
化学
白藜芦醇
合理设计
水溶液
组合化学
溶解度
有机化学
催化作用
生物化学
纳米技术
材料科学
反应机理
作者
Mareike E. Dirks‐Hofmeister,Tom Verhaeghe,Karel De Winter,Tom Desmet
标识
DOI:10.1002/anie.201503605
摘要
Polyphenols display a number of interesting properties but their low solubility limits practical applications. In that respect, glycosylation offers a solution for which sucrose phosphorylase has been proposed as a cost-effective biocatalyst. However, its activity on alternative acceptor substrates is too low for synthetic purposes and typically requires the addition of organic (co-)solvents. Here, we describe the engineering of the enzyme from Thermoanaerobacterium thermosaccharolyticum to enable glycosylation of resveratrol as test case. Based on docking and modeling studies, an active-site loop was predicted to hinder binding. Indeed, the unbolted loop variant R134A showed useful affinity for resveratrol (K(m)=185 mM) and could be used for the quantitative production of resveratrol 3-α-glucoside in an aqueous system. Improved activity was also shown for other acceptors, introducing variant R134A as promising new biocatalyst for glycosylation reactions on bulky phenolic acceptors.
科研通智能强力驱动
Strongly Powered by AbleSci AI