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用于手性药物中间体合成的自净化自组装辅酶再生系统的构建

Construction of a Self-Purification and Self-Assembly Coenzyme Regeneration System for the Synthesis of Chiral Drug Intermediates.

作者信息

Jiang Wei, Zeng Wanru

机构信息

College of Chemical Engineering, Huaqiao University, 668 Jimei Blvd., Xiamen, Fujian 361021, China.

出版信息

ACS Omega. 2021 Jan 13;6(3):1911-1916. doi: 10.1021/acsomega.0c04668. eCollection 2021 Jan 26.

Abstract

As one of the important research contents of synthetic biology, the construction of a regulatory system exhibits great potential in the synthesis of high value-added chemicals such as drug intermediates. In this work, a self-assembly coenzyme regeneration system, leucine dehydrogenase (LeuDH)-formate dehydrogenase (FDH) protein co-assembly system, was constructed by using the polypeptide, SpyTag/SpyCatcher. Then, it was demonstrated that the nonchromatographic inverse transition cycling purification method could purify intracellular coupling proteins and extracellular coupling proteins well. The conversion rate of the pure LeuDH-FDH protein assembly (FR-LR) was shown to be 1.6-fold and 32.3-fold higher than that of the free LeuDH-FDH system (LeuDH + FDH) and free LeuDH, respectively. This work has paved a new way of constructing a protein self-assembly system and engineering self-purification coenzyme regeneration system for the synthesis of chiral amino acids or chiral α-hydroxy acids.

摘要

作为合成生物学的重要研究内容之一,调控系统的构建在药物中间体等高附加值化学品的合成中展现出巨大潜力。在这项工作中,利用多肽SpyTag/SpyCatcher构建了一种自组装辅酶再生系统,即亮氨酸脱氢酶(LeuDH)-甲酸脱氢酶(FDH)蛋白共组装系统。然后,证明了非色谱逆转变循环纯化方法能够很好地纯化细胞内偶联蛋白和细胞外偶联蛋白。结果表明,纯LeuDH-FDH蛋白组装体(FR-LR)的转化率分别比游离LeuDH-FDH系统(LeuDH + FDH)和游离LeuDH高1.6倍和32.3倍。这项工作为构建用于合成手性氨基酸或手性α-羟基酸的蛋白质自组装系统和工程化自纯化辅酶再生系统开辟了一条新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0080/7841785/4a3d2abd449c/ao0c04668_0002.jpg

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