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突变蒽的全生物合成揭示了一种催化呫吨环形成的黄素蛋白单加氧酶。

Total Biosynthesis of Mutaxanthene Unveils a Flavoprotein Monooxygenase Catalyzing Xanthene Ring Formation.

作者信息

Xiang Lang, Shi Jing, Zhu Ao, Xu Zi Fei, Liu Shuang He, Wang Yi Shuang, Guo Zhi Kai, Jiao Rui Hua, Tan Ren Xiang, Ge Hui Ming

机构信息

State Key Laboratory of Ph armaceutical Biotechnology, Institute of Functional Biomolecules, Chemistry and Biomedicine Innovation Center (ChemBIC), School of Life Sciences, Nanjing University, Nanjing, 210023, China.

Key Laboratory of Biology and Genetic Resources of Tropical Crops, Ministry of Agriculture, Institute of Tropical Bioscience and Biotechnology, Chinese Academy of Tropical Agricultural Sciences, Haikou, 571101, China.

出版信息

Angew Chem Int Ed Engl. 2023 Mar 20;62(13):e202218660. doi: 10.1002/anie.202218660. Epub 2023 Feb 15.

Abstract

Flavoprotein monooxygenases (FPMOs) play important roles in generating structural complexity and diversity in natural products biosynthesized by type II polyketide synthases (PKSs). In this study, we used genome mining to discover novel mutaxanthene analogues and investigated the biosynthesis of these aromatic polyketides and their unusual xanthene framework. We determined the complete biosynthetic pathway of mutaxathene through in vivo gene deletion and in vitro biochemical experiments. We show that a multifunctional FPMO, MtxO4, catalyzes ring rearrangement and generates the required xanthene ring through a multistep transformation. In addition, we successfully obtained all necessary enzymes for in vitro reconstitution and completed the total biosynthesis of mutaxanthene in a stepwise manner. Our results revealed the formation of a rare xanthene ring in type II polyketide biosynthesis, and demonstrate the potential of using total biosynthesis for the discovery of natural products synthesized by type II PKSs.

摘要

黄素蛋白单加氧酶(FPMOs)在由II型聚酮合酶(PKSs)生物合成的天然产物中产生结构复杂性和多样性方面发挥着重要作用。在本研究中,我们利用基因组挖掘发现了新型呫吨酮类似物,并研究了这些芳香族聚酮化合物及其不寻常的呫吨骨架的生物合成。我们通过体内基因缺失和体外生化实验确定了呫吨酮的完整生物合成途径。我们表明,多功能FPMO,MtxO4,催化环重排并通过多步转化生成所需的呫吨环。此外,我们成功获得了体外重构所需的所有酶,并逐步完成了呫吨酮的全生物合成。我们的结果揭示了II型聚酮生物合成中罕见呫吨环的形成,并证明了利用全生物合成发现由II型PKSs合成的天然产物的潜力。

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