亚胺
级联
化学
分子内力
组合化学
生物催化
催化作用
级联反应
人工酶
立体异构
酶
立体化学
合成生物学
酶催化
密度泛函理论
有机化学
发散合成
立体选择性
计算化学
化学合成
反应条件
蛋白质工程
分子构象
作者
Xin‐Xin Zhu,Zexuan Wei,Fei‐Fei Chen,Wen‐Qing Zheng,Jian‐He Xu,Yongtao Xie,Gao‐Wei Zheng
出处
期刊:ChemBioChem
[Wiley]
日期:2026-01-01
卷期号:27 (2): e202500838-e202500838
标识
DOI:10.1002/cbic.202500838
摘要
Traditional biocatalytic cascades typically require discrete enzymes for each synthetic step. Here, we report unprecedented trifunctional imine reductases (IRED) that conduct three sequential transformations-alkene reduction, intramolecular reductive amination, and imine reduction-all within a single catalytic cycle. This elegant single-enzyme catalytic system directly transforms linear substrates into enantiomerically pure 2-aryl pyrrolidines via a concerted cascade without intermediate isolation. Combining density functional theory (DFT) calculations and mechanistic studies, we elucidate how the IRED achieves step-selective catalysis. Our findings establish a proof-of-concept for simplifying complex biocatalytic cascades using multifunctional enzymes, offering a powerful strategy to streamline synthetic pathways.
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