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揭示 Terretonin 生物合成中多功能细胞色素 P450 和独特异构酶协作的不寻常 D 环结构。

Uncovering the unusual D-ring construction in terretonin biosynthesis by collaboration of a multifunctional cytochrome P450 and a unique isomerase.

机构信息

Graduate School of Pharmaceutical Sciences, The University of Tokyo , 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-0033, Japan.

出版信息

J Am Chem Soc. 2015 Mar 11;137(9):3393-401. doi: 10.1021/jacs.5b00570. Epub 2015 Feb 25.

Abstract

Terretonin (1) is a fungal meroterpenoid isolated from Aspergillus terreus, and possesses a highly oxygenated and unique tetracyclic structure. Although the biosynthetic gene cluster for 1 has been identified and the biosynthesis has recently been studied by heterologous reconstitution and targeted-gene deletion experiments, the last few steps of the terretonin pathway after terrenoid (6) have yet to be elucidated. Notably, the mechanism for the D-ring expansion to afford the terretonin scaffold has been a long-standing mystery to solve. Here we report the characterization of three enzymes that convert 6 into 1, as well as the complete biosynthetic pathway of 1. In the proposed terretonin pathway, the cytochrome P450 Trt6 catalyzes three successive oxidations to transform 6 into an unstable intermediate, which then undergoes the D-ring expansion and unusual rearrangement of the methoxy group to afford the core skeleton of 1. This unprecedented rearrangement is catalyzed by a novel isomerase Trt14. Finally, the nonheme iron-dependent dioxygenase Trt7 accomplishes the last two oxidation reactions steps to complete the biosynthesis.

摘要

Terretonin(1)是从土曲霉中分离得到的真菌混合萜类化合物,具有高度氧化和独特的四环结构。尽管已经确定了 1 的生物合成基因簇,并且最近通过异源重组和靶向基因缺失实验对生物合成进行了研究,但 6 之后的 terretonin 途径的最后几个步骤仍未阐明。值得注意的是,D 环扩展以提供 terretonin 支架的机制一直是一个亟待解决的谜团。在这里,我们报告了三种将 6 转化为 1 的酶的特征,以及 1 的完整生物合成途径。在提出的 terretonin 途径中,细胞色素 P450 Trt6 催化三个连续的氧化反应,将 6 转化为不稳定的中间体,然后经历 D 环扩展和甲氧基的异常重排,生成 1 的核心骨架。这种前所未有的重排由一种新型的异构酶 Trt14 催化。最后,非血红素铁依赖性双加氧酶 Trt7 完成最后两个氧化反应步骤,完成生物合成。

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