首页> 外文期刊>BMC Evolutionary Biology >Development of a toolbox to dissect host-endosymbiont interactions and protein trafficking in the trypanosomatid Angomonas deanei
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Development of a toolbox to dissect host-endosymbiont interactions and protein trafficking in the trypanosomatid Angomonas deanei

机译:开发了一个工具箱,用于剖析锥虫的锥虫(Angomonas deanei)中的宿主-共生体相互作用和蛋白质运输

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Background Bacterial endosymbionts are found across the eukaryotic kingdom and profoundly impacted eukaryote evolution. In many endosymbiotic associations with vertically inherited symbionts, highly complementary metabolic functions encoded by host and endosymbiont genomes indicate integration of metabolic processes between the partner organisms. While endosymbionts were initially expected to exchange only metabolites with their hosts, recent evidence has demonstrated that also host-encoded proteins can be targeted to the bacterial symbionts in various endosymbiotic systems. These proteins seem to participate in regulating symbiont growth and physiology. However, mechanisms required for protein targeting and the specific endosymbiont targets of these trafficked proteins are currently unexplored owing to a lack of molecular tools that enable functional studies of endosymbiotic systems. Results Here we show that the trypanosomatid Angomonas deanei , which harbors a β-proteobacterial endosymbiont, is readily amenable to genetic manipulation. Its rapid growth, availability of full genome and transcriptome sequences, ease of transfection, and high frequency of homologous recombination have allowed us to stably integrate transgenes into the A. deanei nuclear genome, efficiently generate null mutants, and elucidate protein localization by heterologous expression of a fluorescent protein fused to various putative targeting signals. Combining these novel tools with proteomic analysis was key for demonstrating the routing of a host-encoded protein to the endosymbiont, suggesting the existence of a specific endosymbiont-sorting machinery in A. deanei . Conclusions After previous reports from plants, insects, and a cercozoan amoeba we found here that also in A. deanei , i.e. a member of a fourth eukaryotic supergroup, host-encoded proteins can be routed to the bacterial endosymbiont. This finding adds further evidence to our view that the targeting of host proteins is a general strategy of eukaryotes to gain control over and interact with a bacterial endosymbiont. The molecular resources reported here establish A. deanei as a time and cost efficient reference system that allows for a rigorous dissection of host-symbiont interactions that have been, and are still being shaped over evolutionary time. We expect this system to greatly enhance our understanding of the biology of endosymbiosis.
机译:背景技术在真核生物界发现了细菌共生菌,并深刻影响了真核生物的进化。在具有垂直遗传共生体的许多内共生关系中,宿主和内共生体基因组编码的高度互补的代谢功能表明伴侣生物之间代谢过程的整合。虽然最初预期共生共生体只能与它们的宿主交换代谢物,但最近的证据表明,宿主编码蛋白也可以靶向各种共生共生系统中的细菌共生体。这些蛋白质似乎参与调节共生体的生长和生理。然而,由于缺乏能够进行共生共生系统功能研究的分子工具,因此目前尚未探索蛋白质靶向和这些被贩运蛋白质的特定共生共轭目标所需的机制。结果在这里我们表明,具有β-蛋白细菌内共生体的锥虫网状嗜藻Angomonas deanei易于进行基因操作。它的快速生长,全基因组和转录组序列的可用性,易转染以及同源重组的高频率使我们能够将转基因稳定地整合到Deanei核基因组中,有效地产生无效突变体,并通过异源表达阐明蛋白的定位。与各种假定的靶向信号融合的荧光蛋白。将这些新颖的工具与蛋白质组学分析相结合,是证明宿主编码蛋白向内共生体传递途径的关键,这表明拟南芥中存在特定的内共生分选机制。结论在先前来自植物,昆虫和头孢虫变形虫的报道之后,我们在这里发现,即使在迪氏土壤杆菌中,即第四真核超群的成员,宿主编码的蛋白质也可以被路由至细菌内共生体。这一发现为我们的观点提供了进一步的证据,即宿主蛋白的靶向是真核生物控制细菌内共生体并与之相互作用的一般策略。此处报道的分子资源将A. deanei建立为节省时间和成本的参考系统,可以严格解剖已经存在且仍在进化过程中形成的宿主-共生体相互作用。我们希望该系统能够大大增强我们对内共生生物学的理解。

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