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Molecular Affinity of Mabolo Extracts to an Octopamine Receptor of a Fruit Fly

机译:马波罗提取物对果蝇八胺受体的分子亲和力

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Essential oils extracted from plants are composed of volatile organic compounds that can affect insect behavior. Identifying the active components of the essential oils to their biochemical target is necessary to design novel biopesticides. In this study, essential oils extracted from Diospyros discolor (Willd.) were analyzed using gas chromatography mass spectroscopy (GC-MS) to create an untargeted metabolite profile. Subsequently, a conformational ensemble of the Drosophila melanogaster octopamine receptor in mushroom bodies (OAMB) was created from a molecular dynamics simulation to resemble a flexible receptor for docking studies. GC-MS analysis revealed the presence of several metabolites, i.e. mostly aromatic esters. Interestingly, these aromatic esters were found to exhibit relatively higher binding affinities to OAMB than the receptor’s natural agonist, octopamine. The molecular origin of this observed enhanced affinity is the π -stacking interaction between the aromatic moieties of the residues and ligands. This strategy, computational inspection in tandem with untargeted metabolomics, may provide insights in screening the essential oils as potential OAMB inhibitors. View Full-Text
机译:从植物中提取的精油由会影响昆虫行为的挥发性有机化合物组成。为了设计新颖的生物农药,必须将精油的活性成分识别为其生化目标。在这项研究中,使用气相色谱质谱法(GC-MS)分析了从Diospyros变色(Willd。)提取的精油,以创建非目标代谢物谱。随后,通过分子动力学模拟创建了果蝇中果蝇黑腹章鱼受体蛋白(OAMB)的构象集合体,类似于用于对接研究的柔性受体。 GC-MS分析表明存在几种代谢物,即主要是芳族酯。有趣的是,发现这些芳香族酯与OAMB的结合亲和力比受体的天然激动剂章鱼胺高。观察到的这种增强的亲和力的分子起源是残基和配体的芳族部分之间的π堆积相互作用。这种策略与未靶向的代谢组学相结合进行计算检查,可以为筛选精油作为潜在的OAMB抑制剂提供参考。查看全文

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