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LmABCB3, an atypical mitochondrial ABC transporter essential for Leishmania major virulence, acts in heme and cytosolic iron/sulfur clusters biogenesis

机译:LmABCB3是利什曼原虫主要毒力必不可少的非典型线粒体ABC转运蛋白,在血红素和胞质铁/硫簇生物发生中起作用

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摘要

Abstract\ud\udBackground\udMitochondria play essential biological functions including the synthesis and trafficking of porphyrins and iron/sulfur clusters (ISC), processes that in mammals involve the mitochondrial ATP-Binding Cassette (ABC) transporters ABCB6 and ABCB7, respectively. The mitochondrion of pathogenic protozoan parasites such as Leishmania is a promising goal for new therapeutic approaches. Leishmania infects human macrophages producing the neglected tropical disease known as leishmaniasis. Like most trypanosomatid parasites, Leishmania is auxotrophous for heme and must acquire porphyrins from the host.\ud\udMethods\udLmABCB3, a new Leishmania major protein with significant sequence similarity to human ABCB6/ABCB7, was identified and characterized using bioinformatic tools. Fluorescent microscopy was used to determine its cellular localization, and its level of expression was modulated by molecular genetic techniques. Intracellular in vitro assays were used to demonstrate its role in amastigotes replication, and an in vivo mouse model was used to analyze its role in virulence. Functional characterization of LmABCB3 was carried out in Leishmania promastigotes and Saccharomyces cerevisiae. Structural analysis of LmABCB3 was performed using molecular modeling software.\ud\udResults\udLmABCB3 is an atypical ABC half-transporter that has a unique N-terminal extension not found in any other known ABC protein. This extension is required to target LmABCB3 to the mitochondrion and includes a potential metal-binding domain. We have shown that LmABCB3 interacts with porphyrins and is required for the mitochondrial synthesis of heme from a host precursor. We also present data supporting a role for LmABCB3 in the biogenesis of cytosolic ISC, essential cofactors for cell viability in all three kingdoms of life. LmABCB3 fully complemented the severe growth defect shown in yeast lacking ATM1, an orthologue of human ABCB7 involved in exporting from the mitochondria a gluthatione-containing compound required for the generation of cytosolic ISC. Indeed, docking analyzes performed with a LmABCB3 structural model using trypanothione, the main thiol in this parasite, as a ligand showed how both, LmABCB3 and yeast ATM1, contain a similar thiol-binding pocket. Additionally, we show solid evidence suggesting that LmABCB3 is an essential gene as dominant negative inhibition of LmABCB3 is lethal for the parasite. Moreover, the abrogation of only one allele of the gene did not impede promastigote growth in axenic culture but prevented the replication of intracellular amastigotes and the virulence of the parasites in a mouse model of cutaneous leishmaniasis.\ud\udConclusions\udAltogether our results present the previously undescribed LmABCB3 as an unusual mitochondrial ABC transporter essential for Leishmania survival through its role in the generation of heme and cytosolic ISC. Hence, LmABCB3 could represent a novel target to combat leishmaniasis.\ud\udKeywords\ud\udHeme trafficking and metabolism Iron/sulfur clusters Trypanosomatid parasites Mitochondrial ABC transporter Leishmania
机译:摘要\ ud \ ud背景\ ud线粒体起着至关重要的生物学功能,包括卟啉和铁/硫簇(ISC)的合成和运输,在哺乳动物中这些过程分别涉及线粒体ATP结合盒(ABC)转运蛋白ABCB6和ABCB7。致病性原生动物寄生虫如利什曼原虫的线粒体是新治疗方法的有希望的目标。利什曼原虫感染人类巨噬细胞,产生被称为利什曼病的被忽视的热带病。像大多数锥虫一样的寄生虫,利什曼原虫是血红素的营养缺陷型,必须从宿主中获取卟啉。荧光显微镜用于确定其细胞定位,并通过分子遗传技术调节其表达水平。使用细胞内体外试验来证明其在变形虫复制中的作用,并使用体内小鼠模型来分析其在毒力中的作用。在利什曼原虫前鞭毛体和酿酒酵母中进行了LmABCB3的功能表征。 LmABCB3的结构分析是使用分子建模软件进行的。\ ud \ udResults \ udLmABCB3是一种非典型的ABC半转运蛋白,具有独特的N端延伸,在任何其他已知的ABC蛋白中都找不到。此扩展是将LmABCB3靶向线粒体所必需的,并包括潜在的金属结合域。我们已经显示LmABCB3与卟啉相互作用,并且是从宿主前体线粒体合成血红素所必需的。我们还提出了支持LmABCB3在胞质ISC生物发生中的作用的数据,胞质ISC是生命的所有三个王国中细胞生存力的必要辅助因子。 LmABCB3完全弥补了缺少ATM1的酵母中显示的严重生长缺陷,该酵母是人ABCB7的直系同源物,参与从线粒体输出生成胞质ISC所需的含谷氨酸的化合物。确实,使用LmABCB3结构模型进行的对接分析使用锥虫硫烷(该寄生虫中的主要硫醇)作为配体,显示了LmABCB3和酵母ATM1如何包含相似的硫醇结合口袋。此外,我们显示有力的证据表明LmABCB3是必不可少的基因,因为LmABCB3的显性负抑制作用可致命。此外,在皮肤利什曼病的小鼠模型中,仅消除该基因的一个等位基因并不会阻止前鞭毛体在无性培养中的生长,但阻止了胞内变形虫的复制和寄生虫的毒力。以前未描述的LmABCB3是异常的线粒体ABC转运蛋白,通过其在血红素和胞质ISC生成中的作用,对于利什曼原虫的生存至关重要。因此,LmABCB3可能代表了对抗利什曼病的新靶标。\ ud \ ud关键字\ ud \ ud血红素运输和新陈代谢铁/硫簇锥虫寄生线粒体ABC转运蛋白利什曼原虫

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