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Actin-interacting and flagellar proteins in Leishmania spp.: Bioinformatics predictions to functional assignments in phagosome formation

机译:利什曼原虫中的肌动蛋白相互作用和鞭毛蛋白:吞噬体形成中功能分配的生物信息学预测

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摘要

Several motile processes are responsible for the movement of proteins into and within the flagellar membrane, but little is known about the process by which specific proteins (either actin-associated or not) are targeted to protozoan flagellar membranes. Actin is a major cytoskeleton protein, while polymerization and depolymerization of parasite actin and actin-interacting proteins (AIPs) during both processes of motility and host cell entry might be key events for successful infection. For a better understanding the eukaryotic flagellar dynamics, we have surveyed genomes, transcriptomes and proteomes of pathogenic Leishmania spp. to identify pertinent genes/proteins and to build in silico models to properly address their putative roles in trypanosomatid virulence. In a search for AIPs involved in flagellar activities, we applied computational biology and proteomic tools to infer from the biological meaning of coronins and Arp2/3, two important elements in phagosome formation after parasite phagocytosis by macrophages. Results presented here provide the first report of Leishmania coronin and Arp2/3 as flagellar proteins that also might be involved in phagosome formation through actin polymerization within the flagellar environment. This is an issue worthy of further in vitro examination that remains now as a direct, positive bioinformatics-derived inference to be presented.
机译:几种运动过程负责蛋白质在鞭毛膜内和膜内的运动,但对于将特定蛋白(肌动蛋白相关或未与之结合)靶向原生动物鞭毛膜的过程知之甚少。肌动蛋白是主要的细胞骨架蛋白,而在运动和宿主细胞进入过程中,寄生虫肌动蛋白和肌动蛋白相互作用蛋白(AIP)的聚合和解聚可能是成功感染的关键事件。为了更好地了解真核鞭毛动力学,我们调查了致病利什曼原虫属的基因组,转录组和蛋白质组。以确定相关的基因/蛋白质并建立计算机模拟模型,以正确解决其在锥虫毒力中的假定作用。在寻找与鞭毛活动有关的AIP时,我们应用了计算生物学和蛋白质组学工具,从冠状蛋白和Arp2 / 3的生物学意义来推断,这是巨噬细胞寄生虫吞噬后吞噬体形成中的两个重要元素。此处提供的结果首次报道了利什曼原虫coronin和Arp2 / 3作为鞭毛蛋白,也可能通过鞭毛环境中肌动蛋白的聚合作用参与吞噬体的形成。这是一个值得进一步体外检查的问题,现在仍然可以作为直接,积极的生物信息学推论来提出。

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