Artificial enzymes combining proteins with proline polymers for asymmetric aldol reactions in water

Ningning Zhang, Zhiyong Sun, Changzhu Wu*

*Kontaktforfatter

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Abstrakt

Artificial enzymes, usually created by incorporating one or two abiological catalytic species into protein hosts, are becoming promising tools for biocatalysis. However, they are still far behind natural enzymes due to their limited active sites with low activity and selectivity. Here, we proposed a polymeric approach to generate artificial enzymes by combining proteins with organocatalytic polymers, in which multiple proline organocatalysts are grafted from protein scaffolds via atom-transfer radical polymerization. The resultant artificial polyenzymes, abbreviated as "ArPoly", have similar physicochemical properties as natural enzymes and proved to be effective aldolase mimics for the aqueous asymmetric aldol reaction, in which an optimal ArPoly gave rise to 33% conversion and 94% enantioselectivity. Therefore, we proved the concept of water-soluble proline-based organocatalyst for aqueous asymmetric aldol reactions. This success not only expands the toolbox of asymmetric organocatalysis but also opens other avenues in the field of artificial enzymes where a plethora of proteins/enzymes can be combined with various well-designed organocatalytic polymers for synthetically useful reactions.

OriginalsprogEngelsk
TidsskriftACS Catalysis
Vol/bind12
Udgave nummer8
Sider (fra-til)4777-4783
DOI
StatusUdgivet - 15. apr. 2022

Bibliografisk note

Funding Information:
We thank the financial support from the Independent Research Fund Denmark (DFF) in the framework of the Sapere Aude leader program. We also thank Novo Nordisk Foundation for its generous funding. We thank Prof. Dr. Marion B. Ansorge-Schumacher for fruitful discussions and generous support.

Funding Information:
We thank the financial support from the Independent Research Fund Denmark (DFF) in the framework of the Sapere Aude leader program. We also thank Novo Nordisk Foundation for its generous funding. We thank Prof. Dr. Marion B. Ansorge-Schumacher for fruitful discussions and generous support.

Publisher Copyright:
© 2022 American Chemical Society. All rights reserved.

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