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Linking secondary metabolites to biosynthesis genes in the fungal endophyte Cyanodermella asteris: The anti-cancer bisanthraquinone skyrin

机译:将次生代谢产物与真菌内胚菌菌Asteris中的生物合成基因联系起来:抗癌Bisthraquinone kyrin

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摘要

Fungal aromatic polyketides display a very diverse and widespread group of natural products. Due to their excellent light absorption properties and widely studied biological activities, they offer numerous application for food, textile and pharmaceutical industry. The biosynthetic pathways of fungal aromatic polyketides usually involve a set of successive enzymes, in which a non-reductive polyketide synthase iteratively catalyzes the essential assembly of simple building blocks into ( often polycyclic) aromatic compounds. However, only a limited number of such pathways have been described so far and further elucidation of the individual biosynthetic steps is needed to fully exploit the biotechnological and medicinal potential of these compounds.
机译:真菌芳族聚酮酯显示出非常多样化和广泛的天然产物。 由于其优异的光吸收性能和广泛研究的生物活动,它们为食品,纺织和制药行业提供了许多应用。 真菌芳族聚合物的生物合成途径通常涉及一组连续酶,其中非还原聚酮化合物合酶迭代地催化简单的建筑物块的基本组件进入(通常是多环)芳族化合物。 然而,到目前为止仅描述了有限数量的这种途径,并且需要进一步阐明各个生物合成步骤,以充分利用这些化合物的生物技术和药用潜力。

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