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揭示抗真菌九肽和八肽之间的生物合成关系。

Uncovering biosynthetic relationships between antifungal nonadrides and octadrides.

作者信息

de Mattos-Shipley Kate M J, Spencer Catherine E, Greco Claudio, Heard David M, O'Flynn Daniel E, Dao Trong T, Song Zhongshu, Mulholland Nicholas P, Vincent Jason L, Simpson Thomas J, Cox Russell J, Bailey Andrew M, Willis Christine L

机构信息

School of Chemistry, University of Bristol Cantock's Close Bristol BS8 1TS UK

School of Biological Sciences, University of Bristol 24 Tyndall Avenue Bristol BS8 1TQ UK.

出版信息

Chem Sci. 2020 Oct 7;11(42):11570-11578. doi: 10.1039/d0sc04309e.

Abstract

Maleidrides are a class of bioactive secondary metabolites unique to filamentous fungi, which contain one or more maleic anhydrides fused to a 7-, 8- or 9- membered carbocycle (named heptadrides, octadrides and nonadrides respectively). Herein structural and biosynthetic studies on the antifungal octadride, zopfiellin, and nonadrides scytalidin, deoxyscytalidin and castaneiolide are described. A combination of genome sequencing, bioinformatic analyses, gene disruptions, biotransformations, isotopic feeding studies, NMR and X-ray crystallography revealed that they share a common biosynthetic pathway, diverging only after the nonadride deoxyscytalidin. 5-Hydroxylation of deoxyscytalidin occurs prior to ring contraction in the zopfiellin pathway of . In , 6-hydroxylation - confirmed as being catalysed by the α-ketoglutarate dependent oxidoreductase ScyL2 - converts deoxyscytalidin to scytalidin, in the final step in the scytalidin pathway. Feeding scytalidin to a zopfiellin PKS knockout strain led to the production of the nonadride castaneiolide and two novel ring-open maleidrides.

摘要

马来二酐类化合物是丝状真菌特有的一类生物活性次生代谢产物,其含有一个或多个与七元、八元或九元碳环稠合的马来酸酐(分别命名为七元酐类、八元酐类和九元酐类)。本文描述了对具有抗真菌活性的八元酐类化合物佐菲菌素以及九元酐类化合物丝孢菌素、脱氧丝孢菌素和栗褐菌素的结构和生物合成研究。基因组测序、生物信息学分析、基因敲除、生物转化、同位素标记研究、核磁共振和X射线晶体学等多种方法相结合,揭示了它们具有共同的生物合成途径,仅在九元酐类化合物脱氧丝孢菌素之后产生分歧。在佐菲菌素的合成途径中,脱氧丝孢菌素的5-羟基化发生在环收缩之前。在丝孢菌素的合成途径中,6-羟基化(已证实由依赖α-酮戊二酸的氧化还原酶ScyL2催化)将脱氧丝孢菌素转化为丝孢菌素,这是丝孢菌素合成途径中的最后一步。将丝孢菌素喂给佐菲菌素聚酮合酶基因敲除菌株,导致产生九元酐类化合物栗褐菌素和两种新型开环马来二酐类化合物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1512/8162798/0b77bd5c90e0/d0sc04309e-f1.jpg

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