首页> 美国卫生研究院文献>Acta Pharmaceutica Sinica. B >Genome mining combined metabolic shunting and OSMAC strategy of an endophytic fungus leads to the production of diverse natural products
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Genome mining combined metabolic shunting and OSMAC strategy of an endophytic fungus leads to the production of diverse natural products

机译:基因组采矿联合代谢分流和内胚菌的内蒙古毒蕈术导致多样化的天然产品的生产

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摘要

Endophytic fungi are promising producers of bioactive small molecules. Bioinformatic analysis of the genome of an endophytic fungus Penicillium dangeardii revealed 43 biosynthetic gene clusters, exhibited its strong ability to produce numbers of secondary metabolites. However, this strain mainly produce rubratoxins alone with high yield in varied culture conditions, suggested most gene clusters are silent. Efforts for mining the cryptic gene clusters in P. dangeardii, including epigenetic regulation and one-strain-many-compounds (OSMAC) approach were failed probably due to the high yield of rubratoxins. A metabolic shunting strategy by deleting the key gene for rubratoxins biosynthesis combining with optimization of culture condition successfully activated multiple silent genes encoding for other polyketide synthases (PKSs), and led to the trace compounds detectable. As a result, a total of 23 new compounds including azaphilone monomers, dimers, trimers with unprecedented polycyclic bridged heterocycle and spiral structures, as well as siderophores were identified. Some compounds showed significant cytotoxicities, anti-inflammatory or antioxidant activities. The attractive dual PKSs gene clusters for azaphilones biosynthesis were mined by bioinformatic analysis and overexpression of a pathway specific transcription factor. Our work therefor provides an efficient approach to mine the chemical diversity of endophytic fungi.
机译:内生真菌是有前途的生物活性小分子生产商。生物信息分析的内生真菌青霉素Dangeardii的基因组揭示了43种生物合成基因簇,表明其产生次级代谢物数量的强能力。然而,这种应变主要在不同培养条件下单独生产具有高产量的杂红毒素,表明大多数基因簇是沉默的。在P. DapeArdii中挖掘隐秘基因簇的努力,包括表观遗传调节和一种菌株 - 许多化合物(OSMAC)方法可能是由于氧化丁蛋白的高产率。通过删除摩擦毒素生物合成的关键基因的代谢分流策略与培养条件的优化结合成功激活了用于其他聚酮合成酶(PKSS)的多个静音基因,并导致可检测的痕量化合物。结果,共23种新化合物,包括共逆转录酮单体,二聚体,具有前所未有的多环网状桥杂环和螺旋结构的三聚体,以及螺旋结构。一些化合物显示出显着的细胞毒性,抗炎或抗氧化活性。通过生物信息分析和途径特异性转录因子的生物信息分析和过表达,采用吸引力的双PKS基因簇生物合成。我们的工作提供了一种有效的方法来挖掘内心真菌的化学多样性。

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