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Discovery of Primarolides A and B from Marine Fungus Asteromyces cruciatus Using Osmotic Stress and Treatment with Suberoylanilide Hydroxamic Acid

机译:利用渗透胁迫从海生真菌Asteromyces cruciatus中发现伯氨酯A和B并用辛二酰苯胺异羟肟酸处理

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摘要

Advances in whole-genome sequencing of many fungal species has revealed the presence of numerous “silent” biosynthetic genes, highlighting their potential to produce a wide variety of natural products. These silent biosynthetic genes are regulated in part by their highly condensed chromatin structure, which can be modified to allow transcription in response to external stimuli. In this study, Asteromyces cruciatus was subjected to both epigenetic modification and osmotic stress to enhance the production of new natural products. This “cooperative induction” strategy led to the isolation and characterization of two new polyketides from a fermentation of A. cruciatus treated with suberoylanilide hydroxamic acid and sodium chloride. The metabolic profiles of the control and treated samples were assessed using ultra-high performance liquid chromatography high-resolution electrospray ionization mass spectrometry (UHPLC-HRESIMS) metabolomic analysis, highlighting the upregulation of two new polyketides, primarolides A and B. These compounds were purified using reversed-phase flash chromatography followed by high-performance liquid chromatography, and their planar structures were established using NMR spectroscopy.
机译:许多真菌物种的全基因组测序进展表明,存在着许多“沉默的”生物合成基因,突显了它们生产多种天然产物的潜力。这些沉默的生物合成基因部分受到它们高度浓缩的染色质结构的调节,可以对其进行修饰以响应外部刺激进行转录。在这项研究中,Asteromyces cruciatus经历了表观遗传修饰和渗透胁迫,以增强新天然产物的产生。这种“合作诱导”策略导致了由亚油酰苯胺内酯异羟肟酸和氯化钠处理的曲霉曲霉的发酵分离和鉴定了两种新的聚酮化合物。使用超高效液相色谱高分辨率电喷雾电离质谱(UHPLC-HRESIMS)代谢组学分析评估了对照样品和处理样品的代谢谱,突出了两种新的聚酮化合物(伯那利德A和B)的上调。先用反相快速色谱,再用高效液相色谱,再用NMR光谱法确定它们的平面结构。

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