Transforming Inert Cycloalkanes into α,ω‐Diamines by Designed Enzymatic Cascade Catalysis

Author:

Zhang Zhongwei1,Fang Lin1,Wang Fei1,Deng Yu2,Jiang Zhengbin1,Li Aitao1ORCID

Affiliation:

1. State Key Laboratory of Biocatalysis and Enzyme Engineering Hubei Key Laboratory of Industrial Biotechnology School of Life Sciences Hubei University #368 Youyi Road Wuhan 430062 P.R. China

2. Jiangnan University 1800 Lihu Road Wuxi Jiangsu 214122 China

Abstract

AbstractAliphatic α,ω‐diamines (DAs) are important monomer precursors that are industrially produced by energy‐intensive, multistage chemical reactions that are harmful to the environment. Therefore, the development of sustainable green DA synthetic routes is highly desired. Herein, we report an efficient one‐pot in vivo biocatalytic cascade for the transformation of cycloalkanes into DAs with the aid of advanced techniques, including the RetroBioCat tool for biocatalytic route design, enzyme mining for finding appropriate enzymes and microbial consortia construction for efficient pathway assembly. As a result, DAs were successfully produced by the designed microbial consortia‐based biocatalytic system. In particular, the highest biosynthesis productivity record of 1,6‐hexanediamine was achieved when using either cyclohexanol or cyclohexane as a substrate. Thus, the developed biocatalytic process provides a promising alternative to the dominant industrial process for manufacturing DAs.

Publisher

Wiley

Subject

General Chemistry,Catalysis

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