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首页> 外文期刊>PLoS Pathogens >Leishmania donovani resides in modified early endosomes by upregulating Rab5a expression via the downregulation of miR-494
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Leishmania donovani resides in modified early endosomes by upregulating Rab5a expression via the downregulation of miR-494

机译:Leishmania Donovani通过MiR-494的下调将Rab5a表达上调旋转Rab5a表达,在改良早期的胚胎中。

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摘要

Several intracellular pathogens arrest the phagosome maturation in the host cells to avoid transport to lysosomes. In contrast, the Leishmania containing parasitophorous vacuole (PV) is shown to recruit lysosomal markers and thus Leishmania is postulated to be residing in the phagolysosomes in macrophages. Here, we report that Leishmania donovani specifically upregulates the expression of Rab5a by degrading c-Jun via their metalloprotease gp63 to downregulate the expression of miR-494 in THP-1 differentiated human macrophages. Our results also show that miR-494 negatively regulates the expression of Rab5a in cells. Subsequently, L. donovani recruits and retains Rab5a and EEA1 on PV to reside in early endosomes and inhibits transport to lysosomes in human macrophages. Similarly, we have also observed that Leishmania PV also recruits Rab5a by upregulating its expression in human PBMC differentiated macrophages. However, the parasite modulates the endosome by recruiting Lamp1 and inactive pro-CathepsinD on PV via the overexpression of Rab5a in infected cells. Furthermore, siRNA knockdown of Rab5a or overexpression of miR-494 in human macrophages significantly inhibits the survival of the parasites. These results provide the first mechanistic insights of parasite-mediated remodeling of endo-lysosomal trafficking to reside in a specialized early endocytic compartment.
机译:几种细胞内病原体抑制了宿主细胞中的吞噬物质成熟以避免运输到溶酶体。相反,含有寄生泡泡(PV)的Leishmania显示出募集溶酶体标记物,因此Leishmania假设以驻留在巨噬细胞中的吞噬细胞中。在这里,我们认为Leishmania Donovani通过其金属蛋白酶GP63降解C-Jun来明确地提出了Rab5a的表达,以下调MiR-494在THP-1分化的人巨噬细胞中的表达。我们的结果还表明,MIR-494负调节rab5a在细胞中的表达。随后,L. Dovovani新培训和保留PV的RAB5A和EEA1,以存在于早期的胚胎中并抑制人巨噬细胞中的溶酶体。同样,我们还观察到Leishmania PV还通过将其在人类PBMC分化巨噬细胞中的表达上调来招募Rab5a。然而,寄生虫通过通过感染细胞中的Rab5a的过度表达募集灯1和非活性的PV-invo.4 rab5a来调节内体组。此外,人巨噬细胞中的Rab5a或过表达的siRNA敲低明显抑制寄生虫的存活。这些结果提供了寄生虫介导的内透溶血剂贩运的重塑的第一机械洞察,以存在于专门的早期内吞室中。

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