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New chemotypes as Trypanosoma cruzi triosephosphate isomerase inhibitors: a deeper insight into the mechanism of inhibition

机译:作为克氏锥虫三糖磷酸异构酶抑制剂的新化学型:对抑制机制的更深入了解

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Context: Triosephosphate isomerase (TIM) is a ubiquitous enzyme that has been targeted for the discovery of new small molecular weight compounds used against Trypanosoma cruzi, the causative agent of Chagas disease. We have identified phenazine and 1,2,6-thiadiazine chemotypes as novel inhibitors of TIM from T. cruzi (TcTIM).Objective: Study the mechanism of TcTIM inhibition by a phenazine derivative and by a 1,2,6-thiadiazine derivative.Methods: We performed biochemical and theoretical molecular docking studies to characterize the interaction of the derivatives with wild-type and mutant TcTIM.Results and conclusion: At low micromolar concentrations, the compounds induce highly selective irreversible inactivation of parasitic TIM. The molecular docking simulations indicate that the phenazine derivative likely interferes with the association of the two monomers of the dimeric enzyme by locating at the dimer interface, while 1,2,6-thiadiazine could act as an inhibitor binding to a region surrounding Cys-118.
机译:背景:磷酸三糖异构酶(TIM)是一种普遍存在的酶,已被发现用于发现新型的小分子化合物,这些化合物可用于治疗恰加斯氏病的致病性克鲁氏锥虫。我们已经鉴定出吩嗪和1,2,6-噻二嗪化学型是克氏锥虫(TcTIM)TIM的新型抑制剂。目的:研究吩嗪衍生物和1,2,6-噻二嗪衍生物抑制TcTIM的机制。方法:我们进行了生化和理论分子对接研究,以表征衍生物与野生型和突变型TcTIM的相互作用。结果与结论:在低微摩尔浓度下,这些化合物可诱导高选择性的TIM不可逆失活。分子对接模拟表明,吩嗪衍生物可能通过位于二聚体界面而干扰二聚酶的两个单体的缔合,而1,2,6-噻二嗪可作为与Cys-118周围区域结合的抑制剂。

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