Biobased furans have emerged as chemical building blocks for the development of materials because of their diverse scaffolds and as they can be directly prepared from sugars. However, selective, efficient, and cost-effective scalable conversion of biobased furans remains elusive. Here, we report a robust transaminase (TA) from Shimia marina (SMTA) that enables the scalable amination of biobased furanaldehydes with high activity and broad substrate specificity. Crystallographic and mutagenesis analyses provide mechanistic insights and a structural basis for understanding SMTA, which enables a higher substrate conversion. The enzymatic cascade process established in this study allows one-pot synthesis of 2,5-bis(aminomethyl)furan (BAMF) and 5-(aminomethyl)furan-2-carboxylic acid from 5-hydroxymethylfurfural. The biosynthesis of various furfurylamines, including a one-pot cascade reaction for BAMF generation using whole cells, demonstrates their practical application in the pharmaceutical and polymer industries.
Biocatalysis enables the scalable conversion of biobased furans into various furfurylamines.
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作者:Giri Pritam, Lim Seonga, Khobragade Taresh P, Pagar Amol D, Patil Mahesh D, Sarak Sharad, Jeon Hyunwoo, Joo Sangwoo, Goh Younghwan, Jung Seohee, Jang Yu-Jeong, Choi Seung Beom, Kim Ye Chan, Kang Taek Jin, Heo Yong-Seok, Yun Hyungdon
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2024 | 起止号: | 2024 Jul 29; 15(1):6371 |
| doi: | 10.1038/s41467-024-50637-x | ||
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