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2D NMR-spectroscopic screening reveals polyketides in ladybugs

机译:二维NMR光谱筛查发现瓢虫中有聚酮化合物

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摘要

Small molecules of biological origin continue to yield the most promising leads for drug design, but systematic approaches for exploring nature’s cache of structural diversity are lacking. Here, we demonstrate the use of 2D NMR spectroscopy to screen a library of biorationally selected insect metabolite samples for partial structures indicating the presence of new chemical entities. This NMR-spectroscopic survey enabled detection of novel compounds in complex metabolite mixtures without prior fractionation or isolation. Our screen led to discovery and subsequent isolation of two families of tricyclic pyrones in Delphastus catalinae, a tiny ladybird beetle that is employed commercially as a biological pest control agent. The D. catalinae pyrones are based on 23-carbon polyketide chains forming 1,11-dioxo-2,6,10-trioxaanthracene and 4,8-dioxo-1,9,13-trioxaanthracene derivatives, representing ring systems not previously found in nature. This study highlights the utility of 2D NMR-spectroscopic screening for exploring nature’s structure space and suggests that insect metabolomes remain vastly underexplored.
机译:生物起源的小分子继续为药物设计提供最有前途的线索,但缺乏探索自然界结构多样性的系统方法。在这里,我们演示了使用2D NMR光谱来筛选生物合理选择的昆虫代谢物样品库的部分结构,表明存在新的化学实体。这项NMR光谱调查无需事先分馏或分离即可检测复杂代谢物混合物中的新化合物。我们的筛选导致发现并随后分离了Delphastus catalinae中的两个三环吡喃家族,Delphastus catalinae是一种微小的瓢虫,在商业上用作生物害虫防治剂。 D. catalinae吡喃酮基于形成1,11-dioxo-2,6,10-trioxaanthracene和4,8-dioxo-1,9,13-trioxaanthracene衍生物的23碳聚酮化合物链,表示以前未发现的环系性质。这项研究强调了2D NMR光谱筛查技术在探索自然结构空间方面的实用性,并表明昆虫代谢组仍未得到充分开发。

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