An Engineered Enzyme Catalyzing Tandem Reductive Aminations for Synthesizing Tertiary Amines

Y Yaqing Ma H Han Zhang J Jinping Bao W Wei Kang D Dongyu Tang (State Key Laboratory of Engineering Biology For Low‐Carbon Manufacturing, Chinese Academy of Sciences Tianjin Institute of Industrial Biotechnology Tianjin China) R Rongchang Chen Y Yang Jin (School of Materials Science and Engineering) X Xinying Qu (State Key Laboratory of Engineering Biology For Low‐Carbon Manufacturing, Chinese Academy of Sciences Tianjin Institute of Industrial Biotechnology Tianjin China) T Tong Zhang C Cui Liu L Lujia Yang J Juzhang Yan H Hongwu Ma C Chaochao Zhang (ReadCrystal Bio‐tech Co. LTD Suzhou China) L Lande Fu (ReadCrystal Bio‐tech Co. LTD Suzhou China) J Jianfei Hu (ReadCrystal Bio‐tech Co. LTD Suzhou China) C Chengsen Cui X Xiaoguang Lei S Shu‐Shan Gao (State Key Laboratory of Engineering Biology For Low‐Carbon Manufacturing, Chinese Academy of Sciences Tianjin Institute of Industrial Biotechnology Tianjin China)

Abstract

ABSTRACT Tertiary amines are privileged motifs in bioactive molecules. However, their chemical synthesis lacks sustainability, and biocatalytic alternatives remain underdeveloped. Therefore, there is an urgent need to develop innovative catalytic strategies. We herein disclose the engineering of a wild‐type imine reductase into a tandem aminase for consecutive intermolecular reductive aminations, designated AHTanAm . The tandem aminase and its variants exhibit dual catalytic advantages, enabling one‐pot synthesis of hundreds of tertiary amines from broadly available primary amine precursors, and exerting precise stereochemical control over multiple stereocenters. Mechanistic dissection via x‐ray crystallography and mutagenesis revealed that enzyme‐pocket alterations amplify the second‐step amination's activity, which serves as the driving force for successful tandem catalysis. In summary, this study bridges the critical synthetic challenge in accessing tertiary amines by creating the first tandem aminase, to the best of our knowledge, via imine‐reductase redesign.

Article Details

Volume / Issue Vol. 1, Issue 1
Published July 15, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (19)

Y

Yaqing Ma

H

Han Zhang

J

Jinping Bao

W

Wei Kang

D

Dongyu Tang

State Key Laboratory of Engineering Biology For Low‐Carbon Manufacturing, Chinese Academy of Sciences Tianjin Institute of Industrial Biotechnology Tianjin China

R

Rongchang Chen

Y

Yang Jin

School of Materials Science and Engineering

X

Xinying Qu

State Key Laboratory of Engineering Biology For Low‐Carbon Manufacturing, Chinese Academy of Sciences Tianjin Institute of Industrial Biotechnology Tianjin China

T

Tong Zhang

C

Cui Liu

L

Lujia Yang

J

Juzhang Yan

H

Hongwu Ma

C

Chaochao Zhang

ReadCrystal Bio‐tech Co. LTD Suzhou China

L

Lande Fu

ReadCrystal Bio‐tech Co. LTD Suzhou China

J

Jianfei Hu

ReadCrystal Bio‐tech Co. LTD Suzhou China

C

Chengsen Cui

X

Xiaoguang Lei

S

Shu‐Shan Gao

State Key Laboratory of Engineering Biology For Low‐Carbon Manufacturing, Chinese Academy of Sciences Tianjin Institute of Industrial Biotechnology Tianjin China