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真菌中两个独立基因簇通过转录串扰的四种 PKS/NRPS 共同生物合成一类生物活性吖啶酮。

Collaborative Biosynthesis of a Class of Bioactive Azaphilones by Two Separate Gene Clusters Containing Four PKS/NRPSs with Transcriptional Crosstalk in Fungi.

机构信息

Shandong Provincial Key Laboratory of Synthetic Biology, Key Laboratory of Biofuels, Qingdao Institute of Bioenergy and Bioprocess Technology, Chinese Academy of Sciences, No. 189 Songling Road, Qingdao, 266101, China.

College of Bioscience and Bioengineering, Jiangxi Agricultural University, No. 1101 Zhimin Road, Nanchang, 330045, China.

出版信息

Angew Chem Int Ed Engl. 2020 Mar 9;59(11):4349-4353. doi: 10.1002/anie.201915514. Epub 2020 Jan 30.

Abstract

Azaphilones are a family of fungal polyketide metabolites with diverse chemical structures and biological activities with a highly oxygenated pyranoquinone bicyclic core. Here, a class of azaphilones possessing a 6/6/6/6 tetracyclic ring system was identified in Aspergillus terreus, and exhibited potential anticancer activities. The gene deletions and biochemical investigations demonstrated that these azaphilones were collaboratively synthesized by two separate clusters containing four core-enzymes, two nonreducing PKSs, one highly reducing PKS, and one NRPS-like. More interestingly, we found that the biosynthesis is coordinately regulated by a crosstalk mechanism between these two gene clusters based on three transcriptional factors. This is a meaningful mechanism of fungal secondary metabolism, which allows fungi to synthesize more complex compounds and gain new physiological functions. The results provide a new insight into fungal natural product biosynthesis.

摘要

氮杂茂酮是一类具有多样化学结构和生物活性的真菌聚酮类代谢产物,其具有高度氧化的吡喃并醌双环核心。在这里,我们在土曲霉中鉴定出了一类具有 6/6/6/6 四环体系的氮杂茂酮,并发现其具有潜在的抗癌活性。基因缺失和生化研究表明,这些氮杂茂酮是由两个分别包含四个核心酶、两个非还原型聚酮合酶、一个高度还原型聚酮合酶和一个 NRPS 样酶的独立簇共同合成的。更有趣的是,我们发现基于三个转录因子,该生物合成是通过这两个基因簇之间的串扰机制进行协调调控的。这是真菌次生代谢的一种有意义的调控机制,使真菌能够合成更复杂的化合物并获得新的生理功能。该结果为真菌天然产物生物合成提供了新的见解。

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