立体选择性
化学
催化作用
酒
机制(生物学)
立体化学
醇脱氢酶
酶
反应机理
组合化学
生物化学
乙醇
作用机理
立体异构
酶催化
对映选择合成
NAD+激酶
有机化学
底物特异性
醇氧化还原酶
作者
X. Su,Jie Gu,Yan Xu,Yao Nie
标识
DOI:10.1080/07388551.2026.2638569
摘要
Alcohol dehydrogenases (ADHs) are widely used to prepare chiral alcohols because of their environmental benefits, high-cost effectiveness, broad substrate acceptance, and high enantioselectivity. However, the stereoselective reduction of "difficult-to-reduce" ketones, which are characterized by bulky substituents, similar steric and electronic properties at the α, α'-positions, or complex structures, remains a significant challenge. Understanding the interaction between these ketones and enzymes is crucial for overcoming catalytic limitations. This review summarized recent research advances in the asymmetric reduction of "difficult-to-reduce" ketones. We specifically discuss the stereoselective recognition mechanisms and outline strategies for regulating enzyme selectivity based on enzyme-substrate interactions. Finally, we propose future perspectives on the rational design of ADHs for the synthesis of high-value chiral chemicals.
科研通智能强力驱动
Strongly Powered by AbleSci AI