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Inhibition of Leishmania infantum trypanothione reductase by diaryl sulfide derivatives

机译:二芳基硫醚衍生物对婴儿利什曼原虫锥虫硫磷还原酶的抑制作用

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摘要

The study presented here aimed at identifying a new class of compounds acting against Leishmania parasites, the causative agent of Leishmaniasis. For this purpose, the thioether derivatives of our in-house library have been evaluated in whole-cell screening assays in order to determine their in vitro activity against Leishmania protozoan. Among them, promising results have been achieved with compound RDS 777 (6-(sec-butoxy)-2-((3-chlorophenyl)thio)pyrimidin-4-amine) (IC50 = 29.43 µM), which is able to impair the mechanism of the parasite defence against the reactive oxygen species by inhibiting the trypanothione reductase (TR) with high efficiency (Ki 0.25 ± 0.18 µM). The X-ray structure of L. infantum TR in complex with RDS 777 disclosed the mechanism of action of this compound that binds to the catalytic site and engages in hydrogen bonds the residues more involved in the catalysis, namely Glu466', Cys57 and Cys52, thereby inhibiting the trypanothione binding and avoiding its reduction.
机译:此处提出的研究旨在鉴定对抗利什曼原虫病的致病因子利什曼原虫寄生虫的新型化合物。为此,我们在全细胞筛选测定中评估了我们内部库中的硫醚衍生物,以确定它们对利什曼原虫的体外活性。其中,使用化合物RDS 777(6-(仲丁氧基)-2-((3-氯苯基)硫基)嘧啶-4-胺)(IC50 = 29.43 µM)取得了可喜的结果,该化合物能够降低通过高效抑制锥虫毒素还原酶(TR)抑制寄生虫防御活性氧的机理(Ki 0.25±0.18 M)。婴儿乳杆菌TR与RDS 777配合使用的X射线结构揭示了该化合物的作用机理,该化合物结合到催化位点并与氢键结合,从而使更多参与催化的残基(即Glu466',Cys57和Cys52,从而抑制锥虫硫醚的结合并避免其还原。

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