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Phenotypic Characterization of a Leishmania donovani Cyclophilin 40 Null Mutant

机译:Leishmania donovani Cyclophilin 40 Null突变体的表型表征

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Protozoan parasites of the genus Leishmania adapt to their arthropod and vertebrate hosts through the development of defined life cycle stages. Stage differentiation is triggered by environmental stress factors and has been linked to parasite chaperone activities. Using a null mutant approach we previously revealed important, nonredundant functions of the cochaperone cyclophilin 40 in L. donovani-infected macrophages. Here, we characterized in more detail the virulence defect of cyp40-/- null mutants. In vitro viability assays, infection tests using macrophages, and mixed infection experiments ruled out a defect of cyp40-/- parasites in resistance to oxidative and hydrolytic stresses encountered inside the host cell phagolysosome. Investigation of the CyP40dependent proteome by quantitative 2D-DiGE analysis revealed up regulation of various stress proteins in the null mutant, presumably a response to compensate for the lack of CyP40. Applying transmission electron microscopy we showed accumulation of vesicular structures in the flagellar pocket of cyp40-/- parasites that we related to a significant increase in exosome production, a phenomenon previously linked to the parasite stress response. Together these data suggest that cyp40-/- parasites experience important intrinsic homeostatic stress that likely abrogates parasite viability during intracellular infection.
机译:利什曼原虫属的原生动物寄生虫通过确定的生命周期阶段适应其节肢动物和脊椎动物宿主。阶段分化是由环境压力因素触发的,并已与寄生虫伴侣活动相关。使用无效突变方法,我们先前揭示了伴侣蛋白亲环蛋白40在L. donovani感染的巨噬细胞中的重要,非冗余功能。在这里,我们更详细地表征了cyp40-/-null突变体的毒力缺陷。体外生存力测定,使用巨噬细胞的感染测试以及混合感染实验排除了cyp40-/-寄生虫对宿主细胞吞噬溶酶体内部遇到的氧化和水解压力的抵抗力方面的缺陷。通过定量2D-DiGE分析对CyP40依赖性蛋白质组的研究揭示了null突变体中各种应激蛋白的上调,可能是对弥补CyP40缺乏的反应。应用透射电子显微镜,我们发现cyp40-/-寄生虫的鞭毛袋中囊泡结构的积累,我们与外泌体生产的显着增加有关,这种现象以前与寄生虫的应激反应有关。这些数据加在一起表明cyp40-/-寄生虫经历了重要的内在稳态压力,这很可能在细胞内感染期间消除了寄生虫的生存力。

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