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Structure–activity relationships of fraxamoside as an unusual xanthine oxidase inhibitor

机译:花椒糖苷作为一种不常见的黄嘌呤氧化酶抑制剂的构效关系

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Abstract Fraxamoside, a macrocyclic secoiridoid glucoside featuring a hydroxytyrosol group, was recently identified as a xanthine oxidase inhibitor (XOI) comparable in potency in vitro to the standard antigout drug allopurinol. However, this activity and its considerably higher value than its derivatives oleuropein, oleoside 11-methyl ester, and hydroxytyrosol are not explained by structure–activity relationships (SARs) of known XOIs. To exclude allosteric mechanisms, we first determined the inhibition kinetic of fraxamoside. The resulting competitive mechanism prompted a computational SAR characterization, combining molecular docking and dynamics, which fully explained the behavior of fraxamoside and its derivatives, attributed the higher activity of the former to conformational properties of its macrocycle, and showed a substantial contribution of the glycosidic moiety to binding, in striking contrast with glycoside derivatives of most other XOIs. Overall, fraxamoside emerged as a lead compound for a new class of XOIs potentially characterized by reduced interference with purine metabolism.
机译:摘要最近发现,具有羟基酪醇基团的大环类环孢子苷葡糖苷Fraxamoside是一种黄嘌呤氧化酶抑制剂(XOI),其体外功效与标准抗痛风药物别嘌呤醇相当。但是,这种活性及其比橄榄苦苷,油苷11-甲酯和羟基酪醇衍生物高得多的价值并不能通过已知XOI的结构-活性关系(SAR)来解释。为了排除变构机制,我们首先确定了法拉莫糖苷的抑制动力学。由此产生的竞争机制促使了分子对接和动力学相结合的计算SAR表征,从而充分解释了火黄糖甙及其衍生物的行为,将前者的较高活性归因于其大环的构象特性,并显示出糖苷部分的重要作用与大多数其他XOI的糖苷衍生物形成鲜明对比。总体而言,火黄果糖苷已成为新型XOI的主要化合物,其潜在特征是对嘌呤代谢的干扰减少。

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