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靶向基因组挖掘——从化合物发现到生物合成途径阐明

Targeted Genome Mining-From Compound Discovery to Biosynthetic Pathway Elucidation.

作者信息

Gummerlich Nils, Rebets Yuriy, Paulus Constanze, Zapp Josef, Luzhetskyy Andriy

机构信息

Department of Pharmaceutical Biotechnology, Saarland University, Campus C2.3, 66123 Saarbrücken, Germany.

Department of Pharmaceutical Biology, Saarland University, Campus C2.3, 66123 Saarbrücken, Germany.

出版信息

Microorganisms. 2020 Dec 19;8(12):2034. doi: 10.3390/microorganisms8122034.

Abstract

Natural products are an important source of novel investigational compounds in drug discovery. Especially in the field of antibiotics, Actinobacteria have been proven to be a reliable source for lead structures. The discovery of these natural products with activity- and structure-guided screenings has been impeded by the constant rediscovery of previously identified compounds. Additionally, a large discrepancy between produced natural products and biosynthetic potential in Actinobacteria, including representatives of the order , has been revealed using genome sequencing. To turn this genomic potential into novel natural products, we used an approach including the in-silico pre-selection of unique biosynthetic gene clusters followed by their systematic heterologous expression. As a proof of concept, fifteen genomic library clones covering predicted biosynthetic gene clusters were chosen for expression in two heterologous hosts, and . As a result, two novel natural products, an unusual angucyclinone pentangumycin and a new type II polyketide synthase shunt product SEK90, were identified. After purification and structure elucidation, the biosynthetic pathways leading to the formation of pentangumycin and SEK90 were deduced using mutational analysis of the biosynthetic gene cluster and feeding experiments with C-labelled precursors.

摘要

天然产物是药物发现中新型研究化合物的重要来源。特别是在抗生素领域,放线菌已被证明是先导结构的可靠来源。通过活性和结构导向筛选发现这些天然产物的过程受到先前已鉴定化合物不断重新发现的阻碍。此外,利用基因组测序揭示了放线菌(包括该目代表菌株)中产生的天然产物与生物合成潜力之间存在巨大差异。为了将这种基因组潜力转化为新型天然产物,我们采用了一种方法,包括对独特生物合成基因簇进行计算机预筛选,然后对其进行系统的异源表达。作为概念验证,选择了覆盖预测生物合成基因簇的15个基因组文库克隆在两种异源宿主中进行表达。结果,鉴定出两种新型天然产物,一种不寻常的安古环素类化合物五古霉素和一种新型II型聚酮合酶分流产物SEK90。经过纯化和结构解析后,通过对生物合成基因簇的突变分析以及用碳标记前体进行的饲喂实验,推导了导致五古霉素和SEK90形成的生物合成途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9afb/7765855/39e607a4c21b/microorganisms-08-02034-g001.jpg

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