首页> 外文期刊>The Journal of Antibiotics: An International Journal >New natural products isolated from Metarhizium robertsii ARSEF 23 by chemical screening and identification of the gene cluster through engineered biosynthesis in Aspergillus nidulans A1145
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New natural products isolated from Metarhizium robertsii ARSEF 23 by chemical screening and identification of the gene cluster through engineered biosynthesis in Aspergillus nidulans A1145

机译:通过化学筛选和通过工程生物合成在构巢曲霉A1145中鉴定基因簇,从罗氏沼虾ARSEF 23中分离出的新天然产物

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摘要

To rapidly identify novel natural products and their associated biosynthetic genes from underutilized and genetically difficult-to-manipulate microbes, we developed a method that uses (1) chemical screening to isolate novel microbial secondary metabolites, (2) bioinformatic analyses to identify a potential biosynthetic gene cluster and (3) heterologous expression of the genes in a convenient host to confirm the identity of the gene cluster and the proposed biosynthetic mechanism. The chemical screen was achieved by searching known natural product databases with data from liquid chromatographic and high-resolution mass spectrometric analyses collected on the extract from a target microbe culture. Using this method, we were able to isolate two new meroterpenes, subglutinols C (1) and D (2), from an entomopathogenic filamentous fungus Metarhizium robertsii ARSEF 23. Bioinformatics analysis of the genome allowed us to identify a gene cluster likely to be responsible for the formation of subglutinols. Heterologous expression of three genes from the gene cluster encoding a polyketide synthase, a prenyltransferase and a geranylgeranyl pyrophosphate synthase in Aspergillus nidulans A1145 afforded an alpha-pyrone-fused uncyclized diterpene, the expected intermediate of the subglutinol biosynthesis, thereby confirming the gene cluster to be responsible for the subglutinol biosynthesis. These results indicate the usefulness of our methodology in isolating new natural products and identifying their associated biosynthetic gene cluster from microbes that are not amenable to genetic manipulation. Our method should facilitate the natural product discovery efforts by expediting the identification of new secondary metabolites and their associated biosynthetic genes from a wider source of microbes.
机译:为了从利用不足和遗传上难以操作的微生物中快速鉴定出新颖的天然产物及其相关的生物合成基因,我们开发了一种方法,该方法使用(1)化学筛选来分离新型微生物次生代谢产物,(2)生物信息学分析以鉴定潜在的生物合成物基因簇和(3)基因在方便宿主中的异源表达,以确认基因簇的身份和提出的生物合成机制。化学筛选是通过搜索已知的天然产物数据库而获得的,这些数据库的数据来自液相色谱和高分辨率质谱分析数据,这些数据收集自目标微生物培养物的提取物。使用这种方法,我们能够从昆虫病原性丝状真菌罗氏沼虾ARSEF 23中分离出两个新的甲氧萜类化合物,即谷氨酸亚脂C(1)和D(2)。对基因组的生物信息学分析使我们能够鉴定出可能负责的基因簇用于形成次谷氨酸。在构巢曲霉A1145中来自编码聚酮化合物合酶,异戊二烯基转移酶和香叶基香叶基焦磷酸合酶的基因簇中的三个基因的异源表达提供了α-吡喃酮融合的未环化的二萜,这是次戊二酚生物合成的预期中间体,从而确认该基因簇是负责谷胱甘肽的生物合成。这些结果表明,我们的方法可用于分离新的天然产物并从不适合遗传操作的微生物中鉴定其相关的生物合成基因簇。我们的方法应通过加快从更广泛的微生物来源中鉴定新的次生代谢产物及其相关的生物合成基因,来促进天然产物的发现。

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