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利用生物催化系统合成代谢物及类代谢物化合物

Synthesis of Metabolites and Metabolite-like Compounds Using Biocatalytic Systems.

作者信息

Wohlgemuth Roland

机构信息

MITR, Institute of Applied Radiation Chemistry, Faculty of Chemistry, Lodz University of Technology, Zeromskiego Street 116, 90-924 Lodz, Poland.

Swiss Coordination Committee Biotechnology (SKB), 8021 Zurich, Switzerland.

出版信息

Metabolites. 2023 Oct 19;13(10):1097. doi: 10.3390/metabo13101097.

Abstract

Methodologies for the synthesis and purification of metabolites, which have been developed following their discovery, analysis, and structural identification, have been involved in numerous life science milestones. The renewed focus on the small molecule domain of biological cells has also created an increasing awareness of the rising gap between the metabolites identified and the metabolites which have been prepared as pure compounds. The design and engineering of resource-efficient and straightforward synthetic methodologies for the production of the diverse and numerous metabolites and metabolite-like compounds have attracted much interest. The variety of metabolic pathways in biological cells provides a wonderful blueprint for designing simplified and resource-efficient synthetic routes to desired metabolites. Therefore, biocatalytic systems have become key enabling tools for the synthesis of an increasing number of metabolites, which can then be utilized as standards, enzyme substrates, inhibitors, or other products, or for the discovery of novel biological functions.

摘要

在代谢物被发现、分析和结构鉴定之后所开发的代谢物合成与纯化方法,已参与了众多生命科学的里程碑事件。对生物细胞小分子领域的重新关注,也使人们越来越意识到已鉴定的代谢物与已制备成纯化合物的代谢物之间日益增大的差距。设计和构建资源高效且直接的合成方法来生产多样且数量众多的代谢物及类代谢物化合物,已引起了广泛关注。生物细胞中各种代谢途径为设计通往所需代谢物的简化且资源高效的合成路线提供了绝佳蓝图。因此,生物催化系统已成为合成越来越多代谢物的关键使能工具,这些代谢物随后可被用作标准品、酶底物、抑制剂或其他产品,或用于发现新的生物学功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a349/10608848/c0ff805cba7b/metabolites-13-01097-g001.jpg

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