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挖掘放线菌中次生代谢产物的新型生物合成机制。

Mining novel biosynthetic machineries of secondary metabolites from actinobacteria.

作者信息

Katsuyama Yohei

机构信息

a Department of Biotechnology, Graduate School of Agriculture and Life Sciences, The University of Tokyo , Bunkyo-ku , Japan.

b Collaborative Research Institute for Innovative Microbiology, The University of Tokyo , Bunkyo-ku , Japan.

出版信息

Biosci Biotechnol Biochem. 2019 Sep;83(9):1606-1615. doi: 10.1080/09168451.2019.1606700. Epub 2019 Apr 24.

Abstract

Secondary metabolites produced by actinobacteria have diverse structures and important biological activities, making them a useful source of drug development. Diversity of the secondary metabolites indicates that the actinobacteria exploit various chemical reactions to construct a structural diversity. Thus, studying the biosynthetic machinery of these metabolites should result in discovery of various enzymes catalyzing interesting and useful reactions. This review summarizes our recent studies on the biosynthesis of secondary metabolites from actinobacteria, including the biosynthesis of nonproteinogenic amino acids used as building blocks of nonribosomal peptides, the type II polyketide synthase catalyzing polyene scaffold, the nitrous acid biosynthetic pathway involved in secondary metabolite biosynthesis and unique cytochrome P450 catalyzing nitrene transfer. These findings expand the knowledge of secondary metabolite biosynthesis machinery and provide useful tools for future bioengineering.

摘要

放线菌产生的次级代谢产物具有多样的结构和重要的生物活性,使其成为药物开发的有用来源。次级代谢产物的多样性表明放线菌利用各种化学反应构建结构多样性。因此,研究这些代谢产物的生物合成机制应能发现催化有趣且有用反应的各种酶。本综述总结了我们最近关于放线菌次级代谢产物生物合成的研究,包括用作非核糖体肽构建单元的非蛋白质氨基酸的生物合成、催化多烯支架的II型聚酮合酶、参与次级代谢产物生物合成的亚硝酸生物合成途径以及催化氮烯转移的独特细胞色素P450。这些发现扩展了对次级代谢产物生物合成机制的认识,并为未来的生物工程提供了有用的工具。

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