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Chroman-4-one derivatives targeting pteridine reductase 1 and showing anti-parasitic activity

机译:Chroman-4-one衍生物靶向蝶啶还原酶1并显示出抗寄生虫活性

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摘要

Flavonoids have previously been identified as antiparasitic agents and pteridine reductase 1 (PTR1) inhibitors. Herein, we focus our attention on the chroman-4-one scaffold. Three chroman-4-one analogues (1-3) of previously published chromen-4-one derivatives were synthesized and biologically evaluated against parasitic enzymes (Trypanosoma brucei PTR1-TbPTR1 and Leishmania major-LmPTR1) and parasites (Trypanosoma brucei and Leishmania infantum). A crystal structure of TbPTR1 in complex with compound 1 and the first crystal structures of LmPTR1-flavanone complexes (compounds 1 and 3) were solved. The inhibitory activity of the chroman-4-one and chromen-4-one derivatives was explained by comparison of observed and predicted binding modes of the compounds. Compound 1 showed activity both against the targeted enzymes and the parasites with a selectivity index greater than 7 and a low toxicity. Our results provide a basis for further scaffold optimization and structure-based drug design aimed at the identification of potent anti-trypanosomatidic compounds targeting multiple PTR1 variants.
机译:黄酮类化合物先前已被确定为抗寄生虫药和蝶啶还原酶1(PTR1)抑制剂。在本文中,我们将注意力集中在苯并吡喃-4-酮支架上。合成了先前发表的chromen-4-one衍生物的三个chroman-4-one类似物(1-3),并针对寄生酶(布鲁氏锥虫PTR1-TbPTR1和Leishmania major-LmPTR1)和寄生虫(Trypanosoma brucei和婴儿利什曼原虫)进行了生物学评估。 。解析了与化合物1配合的TbPTR1的晶体结构和LmPTR1-黄酮配合物(化合物1和3)的第一晶体结构。通过比较所观察到的和预测的化合物结合模式来解释苯并吡喃-4-酮和苯并-4-酮衍生物的抑制活性。化合物1显示出针对目标酶和寄生虫的活性,选择性指数大于7且毒性低。我们的结果为进一步的支架优化和基于结构的药物设计提供了基础,该药物设计旨在鉴定靶向多种PTR1变体的有效抗胰蛋白酶的化合物。

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