首页> 外文期刊>ACS catalysis >One-Pot Cascade Synthesis of Mono- and Disubstituted Piperidines and Pyrrolidines using Carboxylic Acid Reductase (CAR), omega-Transaminase (omega-TA), and Imine Reductase (IRED) Biocatalysts
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One-Pot Cascade Synthesis of Mono- and Disubstituted Piperidines and Pyrrolidines using Carboxylic Acid Reductase (CAR), omega-Transaminase (omega-TA), and Imine Reductase (IRED) Biocatalysts

机译:使用羧酸还原酶(CAR),ω-转氨酶(omega-TA)和亚胺还原酶(IRED)生物催化剂一锅级联合成单和双取代的哌啶和吡咯烷

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摘要

Access to enantiomerically pure chiral mono- and disubstituted piperidines and pyrrolidines has been achieved using a biocatalytic cascade involving carboxylic acid reductase (CAR), omega-transaminase (omega-TA), and imine reductase (IRED) enzymes. Starting from keto acids or keto aldehydes, substituted piperidine or pyrrolidine frameworks can be generated in high conversion, ee, and de in one pot, with each biocatalyst exhibiting chemo-, regio-, and/or stereoselectivity during catalysis. The study also includes a systematic investigation of the effect of the position of a methyl group ring substituent on the IRED-catalyzed reduction of a chiral imine. Analysis of the selectivity observed in these reactions revealed an interesting balance between substrate versus enzyme control; the configurations of the products obtained were rationalized on the basis of minimizing 1,3- or 1,2-steric interactions with incoming NADPH.
机译:使用涉及羧酸还原酶(CAR),ω-转氨酶(omega-TA)和亚胺还原酶(IRED)的生物催化级联反应,可获得对映体纯的手性单和双取代哌啶和吡咯烷。从酮酸或酮醛开始,可以在一锅中以高转化率,ee和de生成取代的哌啶或吡咯烷骨架,每种生物催化剂在催化过程中均表现出化学,区域和/或立体选择性。该研究还包括对甲基环取代基位置对IRED催化手性亚胺还原的影响的系统研究。在这些反应中观察到的选择性分析表明,底物与酶控制之间存在有趣的平衡。在最小化与传入NADPH的1,3-或1,2-空间相互作用的基础上,合理化了所得产品的构型。

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