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在嗜热曲霉中发现扩展的奥斯汀类生物合成途径。

Discovery of an Extended Austinoid Biosynthetic Pathway in Aspergillus calidoustus.

作者信息

Valiante Vito, Mattern Derek J, Schüffler Anja, Horn Fabian, Walther Grit, Scherlach Kirstin, Petzke Lutz, Dickhaut Joachim, Guthke Reinhard, Hertweck Christian, Nett Markus, Thines Eckhard, Brakhage Axel A

机构信息

Friedrich Schiller University , 07745 Jena, Germany.

Institute of Biotechnology and Drug Research , Erwin-Schroedinger-Strasse 56, 67663 Kaiserslautern, Germany.

出版信息

ACS Chem Biol. 2017 May 19;12(5):1227-1234. doi: 10.1021/acschembio.7b00003. Epub 2017 Mar 15.

Abstract

Filamentous fungi produce a wide range of natural products that are commonly used in various industrial contexts (e.g., pharmaceuticals and insecticides). Meroterpenoids are natural products of interest because of their various biological activities. Among the meroterpenoids, there is a group of insecticidal compounds known as the austinoids. These compounds have also been studied because of their intriguing spiro-lactone ring formation along with various modifications. Here, we present an extension of the original austinol/dehydroaustinol biosynthesis pathway from Aspergillus nidulans in the recently identified filamentous fungus Aspergillus calidoustus. Besides the discovery and elucidation of further derivatives, genome mining led to the discovery of new putative biosynthetic genes. The genes involved in the biosynthesis of later austinoid products were characterized, and among them was a second polyketide synthase gene in the A. calidoustus cluster that was unusual because it was a noninterative polyketide synthase producing a diketide. This diketide product was then loaded onto the austinoid backbone, resulting in a new insecticidal derivative, calidodehydroaustin.

摘要

丝状真菌产生多种天然产物,这些产物常用于各种工业领域(如制药和杀虫剂)。杂萜类化合物因其多种生物活性而备受关注。在杂萜类化合物中,有一组被称为奥氏菌素的杀虫化合物。由于这些化合物具有引人入胜的螺内酯环形成以及各种修饰,它们也受到了研究。在此,我们展示了在最近鉴定出的丝状真菌热栖曲霉中,来自构巢曲霉的原始奥氏醇/脱氢奥氏醇生物合成途径的扩展。除了发现和阐明更多衍生物外,基因组挖掘还导致发现了新的假定生物合成基因。对参与后期奥氏菌素产物生物合成的基因进行了表征,其中热栖曲霉基因簇中有第二个聚酮合酶基因,该基因不同寻常,因为它是一种产生二酮化合物的非迭代聚酮合酶。然后将这种二酮产物加载到奥氏菌素主链上,产生了一种新的杀虫衍生物——热栖脱氢奥氏醇。

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