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首页> 外文期刊>PLoS Pathogens >An Interactome-Centered Protein Discovery Approach Reveals Novel Components Involved in Mitosome Function and Homeostasis in Giardia lamblia
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An Interactome-Centered Protein Discovery Approach Reveals Novel Components Involved in Mitosome Function and Homeostasis in Giardia lamblia

机译:一种以相互作用组为中心的蛋白质发现方法揭示了贾第鞭毛虫的线粒体功能和体内平衡的新成分。

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Protozoan parasites of the genus Giardia are highly prevalent globally, and infect a wide range of vertebrate hosts including humans, with proliferation and pathology restricted to the small intestine. This narrow ecological specialization entailed extensive structural and functional adaptations during host-parasite co-evolution. An example is the streamlined mitosomal proteome with iron-sulphur protein maturation as the only biochemical pathway clearly associated with this organelle. Here, we applied techniques in microscopy and protein biochemistry to investigate the mitosomal membrane proteome in association to mitosome homeostasis. Live cell imaging revealed a highly immobilized array of 30–40 physically distinct mitosome organelles in trophozoites. We provide direct evidence for the single giardial dynamin-related protein as a contributor to mitosomal morphogenesis and homeostasis. To overcome inherent limitations that have hitherto severely hampered the characterization of these unique organelles we applied a novel interaction-based proteome discovery strategy using forward and reverse protein co-immunoprecipitation. This allowed generation of organelle proteome data strictly in a protein-protein interaction context. We built an initial Tom40-centered outer membrane interactome by co-immunoprecipitation experiments, identifying small GTPases, factors with dual mitosome and endoplasmic reticulum (ER) distribution, as well as novel matrix proteins. Through iterative expansion of this protein-protein interaction network, we were able to i) significantly extend this interaction-based mitosomal proteome to include other membrane-associated proteins with possible roles in mitosome morphogenesis and connection to other subcellular compartments, and ii) identify novel matrix proteins which may shed light on mitosome-associated metabolic functions other than Fe-S cluster biogenesis. Functional analysis also revealed conceptual conservation of protein translocation despite the massive divergence and reduction of protein import machinery in Giardia mitosomes.
机译:贾第鞭毛虫属的原生动物寄生虫在全球高度流行,并感染包括人类在内的多种脊椎动物宿主,其增殖和病理仅限于小肠。这种狭窄的生态专业化要求在宿主-寄生虫共同进化过程中进行广泛的结构和功能适应。一个示例是精简的线粒体蛋白质组,其中铁-硫蛋白成熟是与该细胞器明显相关的唯一生化途径。在这里,我们将技术应用于显微镜和蛋白质生物化学研究与线粒体稳态相关的线粒体膜蛋白质组。活细胞成像显示在滋养体中高度固定的30–40个物理上不同的线粒体细胞器阵列。我们提供了单一的贾第尔动力蛋白相关蛋白作为线粒体形态发生和稳态的直接证据。为了克服迄今为止严重阻碍这些独特细胞器表征的固有局限性,我们使用正向和反向蛋白质共免疫沉淀技术,应用了一种基于相互作用的新型蛋白质组发现策略。这允许严格在蛋白质-蛋白质相互作用的情况下生成细胞器蛋白质组数据。我们通过免疫共沉淀实验建立了一个初始的以Tom40为中心的外膜相互作用组,确定了小GTP酶,具有双重线粒体和内质网(ER)分布的因子以及新型基质蛋白。通过此蛋白质-蛋白质相互作用网络的迭代扩展,我们能够i)显着扩展这种基于相互作用的线粒体蛋白质组,使其包含其他与膜相关的蛋白质,这些蛋白质可能与线粒体的形态发生以及与其他亚细胞区室的连接有关,并且ii)可能揭示与Fe-S簇生物发生不同的与微粒体相关的代谢功能的基质蛋白。功能分析还显示,尽管贾第鞭毛虫线粒体中的蛋白质进口机制存在巨大差异和减少,但蛋白质转运的概念性保守。

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