环氧化物
合理设计
环氧化物水解酶
热稳定性
生物催化
化学
对映选择合成
酶
水解
固定化酶
组合化学
有机化学
催化作用
纳米技术
材料科学
反应机理
微粒体
作者
Marek Bučko,Katarína Kaniaková,Helena Hronská,Peter Gemeiner,Michal Rosenberg
摘要
Epoxide hydrolases are attractive and industrially important biocatalysts. They can catalyze the enantioselective hydrolysis of epoxides to the corresponding diols as chiral building blocks for bioactive compounds and drugs. In this review article, we discuss the state of the art and development potential of epoxide hydrolases as biocatalysts based on the most recent approaches and techniques. The review covers new approaches to discover epoxide hydrolases using genome mining and enzyme metagenomics, as well as improving enzyme activity, enantioselectivity, enantioconvergence, and thermostability by directed evolution and a rational design. Further improvements in operational and storage stabilization, reusability, pH stabilization, and thermal stabilization by immobilization techniques are discussed in this study. New possibilities for expanding the synthetic capabilities of epoxide hydrolases by their involvement in non-natural enzyme cascade reactions are described.
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