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负责八肽生物合成的最小 PKS 系统的结构快照。

Structural snapshots of the minimal PKS system responsible for octaketide biosynthesis.

机构信息

Center for Integrated Protein Science Munich (CIPSM), Department of Chemistry, Technische Universität München, Garching, Germany.

Molekulare Biotechnologie, Goethe Universität Frankfurt, Frankfurt am Main, Germany.

出版信息

Nat Chem. 2020 Aug;12(8):755-763. doi: 10.1038/s41557-020-0491-7. Epub 2020 Jul 6.

Abstract

Type II polyketide synthases (PKSs) are multi-enzyme complexes that produce secondary metabolites of medical relevance. Chemical backbones of such polyketides are produced by minimal PKS systems that consist of a malonyl transacylase, an acyl carrier protein and an α/β heterodimeric ketosynthase. Here, we present X-ray structures of all ternary complexes that constitute the minimal PKS system for anthraquinone biosynthesis in Photorhabdus luminescens. In addition, we characterize this invariable core using molecular simulations, mutagenesis experiments and functional assays. We show that malonylation of the acyl carrier protein is accompanied by major structural rearrangements in the transacylase. Principles of an ongoing chain elongation are derived from the ternary complex with a hexaketide covalently linking the heterodimeric ketosynthase with the acyl carrier protein. Our results for the minimal PKS system provide mechanistic understanding of PKSs and a fundamental basis for engineering PKS pathways for future applications.

摘要

II 型聚酮合酶(PKSs)是产生具有医学相关性的次生代谢物的多酶复合物。这些聚酮的化学骨干由最小的 PKS 系统产生,该系统由丙二酰基转移酶、酰基载体蛋白和 α/β 异二聚体酮合酶组成。在这里,我们展示了构成 Photorhabdus luminescens 蒽醌生物合成最小 PKS 系统的所有三元复合物的 X 射线结构。此外,我们使用分子模拟、突变实验和功能测定来表征这个不变的核心。我们表明,酰基载体蛋白的丙二酰化伴随着转酰酶的重大结构重排。正在进行的链延伸原理源自与六酮共价连接异二聚体酮合酶和酰基载体蛋白的三元复合物。我们对最小 PKS 系统的研究结果为 PKS 的机制提供了理解,并为未来应用的 PKS 途径的工程提供了基础。

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