Craig Evan, Huyghues-Despointes Charles-Eugene, Yu Chun, Handy Emma L, Sello Jason K, Kima Peter E
Department of Microbiology and Cell Science, University of Florida, Gainesville, Florida, United States of America.
Department of Chemistry, Brown University, Providence Rhode Island, United States of America.
PLoS Negl Trop Dis. 2017 May 15;11(5):e0005556. doi: 10.1371/journal.pntd.0005556. eCollection 2017 May.
In infected mammalian cells, Leishmania parasites reside within specialized compartments called parasitophorous vacuoles (LPVs). We have previously shown that Retro-2, a member of a novel class of small retrograde pathway inhibitors caused reduced LPV sizes and lower parasite numbers during experimental L. mexicana sp. infections. The purpose of this study was to determine if structural analogs of Retro-2cycl reported to have superior potency in the inhibition of retrograde pathway-dependent phenomena (i.e., polyomavirus cellular infection by polyomavrius and Shiga toxin trafficking in cells) are also more effective than the parent compound at controlling Leishmania infections. In addition to their effects on LPV development, we show that two optimized analogs of Retro-2cycl, DHQZ 36 and DHQZ 36.1 limit Leishmania amazonensis infection in macrophages at EC50 of 13.63+/-2.58μM and10.57+/-2.66μM, respectively, which is significantly lower than 40.15μM the EC50 of Retro-2cycl. In addition, these analogs caused a reversal in Leishmania induced suppression of IL-6 release by infected cells after LPS activation. Moreover, we show that in contrast to Retro-2cycl that is Leishmania static, the analogs can kill Leishmania parasites in axenic cultures, which is a desirable attribute for any drug to treat Leishmania infections. Together, these studies validate and extend the published structure-activity relationship analyses of Retro-2cycl.
在受感染的哺乳动物细胞中,利什曼原虫寄生于称为寄生泡(LPVs)的特殊区室中。我们之前已经表明,Retro-2是一类新型小逆行途径抑制剂的成员,在实验性墨西哥利什曼原虫感染期间,它可使LPV尺寸减小且寄生虫数量减少。本研究的目的是确定据报道在抑制逆行途径依赖性现象(即多瘤病毒细胞感染多瘤病毒和细胞中志贺毒素的运输)方面具有更高效力的Retro-2cycl的结构类似物在控制利什曼原虫感染方面是否也比母体化合物更有效。除了它们对LPV发育的影响外,我们还表明,Retro-2cycl的两种优化类似物DHQZ 36和DHQZ 36.1在巨噬细胞中限制亚马逊利什曼原虫感染的半数有效浓度(EC50)分别为13.63±2.58μM和10.57±2.66μM,这显著低于Retro-2cycl的EC50(40.15μM)。此外,这些类似物可使利什曼原虫诱导的经脂多糖(LPS)激活后的感染细胞白细胞介素-6释放抑制发生逆转。而且,我们表明,与具有利什曼原虫静止作用的Retro-2cycl不同,这些类似物可在无菌培养物中杀死利什曼原虫寄生虫,这是任何治疗利什曼原虫感染的药物都期望具备的特性。总之,这些研究验证并扩展了已发表的Retro-2cycl的构效关系分析。