巴西利什曼原虫
利什曼原虫
生物化学
亚精胺
化学
婴儿利什曼原虫
生物
立体化学
布氏锥虫
利什曼病
酶
基因
内脏利什曼病
遗传学
皮肤利什曼病
万维网
寄生虫寄主
计算机科学
作者
Andrea Medeiros,Diego Benítez,Ricarda S. Korn,Vinicius C. Ferreira,Exequiel Barrera,Federico Carrión,Otto Pritsch,Sergio Pantano,Conrad Kunick,Camila I. de Oliveira,Oliver C. F. Orban,Marcelo A. Comini
标识
DOI:10.1080/14756366.2020.1780227
摘要
Trypanothione synthetase (TryS) produces N1,N8-bis(glutathionyl)spermidine (or trypanothione) at the expense of ATP. Trypanothione is a metabolite unique and essential for survival and drug-resistance of trypanosomatid parasites. In this study, we report the mechanistic and biological characterisation of optimised N5-substituted paullone analogues with anti-TryS activity. Several of the new derivatives retained submicromolar IC50 against leishmanial TryS. The binding mode to TryS of the most potent paullones has been revealed by means of kinetic, biophysical and molecular modelling approaches. A subset of analogues showed an improved potency (EC50 0.5-10 µM) and selectivity (20-35) against the clinically relevant stage of Leishmania braziliensis (mucocutaneous leishmaniasis) and L. infantum (visceral leishmaniasis). For a selected derivative, the mode of action involved intracellular depletion of trypanothione. Our findings shed light on the molecular interaction of TryS with rationally designed inhibitors and disclose a new set of compounds with on-target activity against different Leishmania species.
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