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Preparation of Enantiopure Non-Activated Aziridines and Synthesis of Biemamide B, D, and epiallo-Isomuscarine
Published on: June 13, 2022
Engineering an Imine Reductase for Enantioselective Synthesis of Atropisomeric Amides
Zhouchang Yao1,2,3, Runze Meng1,2, Zitian Zhou1,2,3
1State Key Laboratory of Bioactive Substances and Function of Natural Medicines, Institute of Medicinal Biotechnology, Chinese Academy of Medical Sciences & Peking Union Medical College, Beijing 100050, China.
Abstract:
Atropisomeric amides possess unique axial chirality arising from the rotation-restricted Caryl-Camide bond and find broad application in bioactive molecules and asymmetric catalysis. However, catalytic asymmetric methods for their synthesis remain underdeveloped, with no biocatalytic approaches reported. Herein, we report the first efficient biocatalytic strategy for the atroposelective synthesis of atropisomeric amides via dynamic kinetic resolution using engineered imine reductases (IREDs). Structure-guided engineering of an IRED from Kutzneria albida provided a quadruple mutant (IRED-68-M4) capable of catalyzing the stereoconvergent synthesis of diverse napthamides and benzamides in high yields and excellent enantioselectivities (up to 98% yield, >99:1 er). Gram-scale synthesis of an axially chiral napthamide was also demonstrated. Moreover, protein X-ray crystallography and molecular modeling studies revealed the structural basis of the enhanced catalytic performance of the IRED-68-M4 variant.
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