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Docking and Molecular Dynamics Predictions of Pesticide Binding to the Calyx of Bovine β-Lactoglobulin

机译:农药与牛β-乳球蛋白花萼结合的对接和分子动力学预测

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摘要

Pesticides are used extensively in agriculture, and their residues in food must be monitored to prevent toxicity. The most abundant protein in cow’s milk, β-lactoglobulin (BLG), shows high affinity for diverse hydrophobic ligands in its central binding pocket, called the calyx. Several of the most frequently used pesticides are hydrophobic. To predict if BLG may be an unintended carrier for pesticides, we tested its ability to bind 555 pesticides and their isomers, for a total of 889 compounds, in a rigid docking screen. We focused on the analysis of 60 unique molecules belonging to the five pesticide classes defined by the World Health Organization, that docked into BLG’s calyx with ΔGs ranging from −8.2 to −12 kcal mol , chosen by statistical criteria. These “potential ligands” were further analyzed using molecular dynamic simulations, and the binding energies were explored with Molecular Mechanics/Generalized Born/Surface Area (MMGBSA). Hydrophobic pyrethroid insecticides, like cypermethrin, were found to bind as deeply and tightly into the calyx as BLG’s natural ligand, palmitate; while polar compounds, like paraquat, were expelled. Our results suggest that BLG could be a carrier for pesticides, in particular for pyrethroid insecticides, allowing for their accumulation in cow’s milk beyond their solubility restrictions. This analysis opens possibilities for pesticide biosensor design based on BLG.
机译:农药广泛用于农业,必须监控其在食品中的残留量以防止毒性。牛奶中最丰富的蛋白质β-乳球蛋白(BLG)在其中央结合袋(花萼)中显示出对各种疏水性配体的高亲和力。几种最常用的农药是疏水性的。为了预测BLG是否可能是农药的意外载体,我们在刚性对接筛选中测试了其结合555种农药及其异构体(总共889种化合物)的能力。我们着重分析了世界卫生组织定义的属于五种农药类别的60种独特分子,这些分子对接在BLG的花萼中,其ΔG范围为-8.2至-12 kcal mol(根据统计标准选择)。使用分子动力学模拟进一步分析了这些“潜在配体”,并利用分子力学/广义生/表面面积(MMGBSA)探索了结合能。疏水性拟除虫菊酯杀虫剂,如氯氰菊酯,与BLG的天然配体棕榈酸酯一样牢固而牢固地结合在花萼中。而极性化合物,如百草枯,则被驱逐出境。我们的结果表明,BLG可以作为农药的载体,尤其是拟除虫菊酯类杀虫剂的载体,可以使它们在牛奶中的积累超过其溶解度限制。该分析为基于BLG的农药生物传感器设计打开了可能性。

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