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在 Angomonas deanei 中,宿主-共生体相互作用包括在共生体分裂部位周围进化出一个由宿主衍生的动力蛋白环。

Host-symbiont interactions in Angomonas deanei include the evolution of a host-derived dynamin ring around the endosymbiont division site.

机构信息

Institute of Microbial Cell Biology, Department of Biology, Heinrich Heine University Düsseldorf, Universitätsstr. 1, 40225 Düsseldorf, Germany.

Institute of Molecular Medicine, Proteome Research, Medical Faculty and University Hospital, Heinrich Heine University Düsseldorf, Universitätsstr. 1, 40225 Düsseldorf, Germany.

出版信息

Curr Biol. 2023 Jan 9;33(1):28-40.e7. doi: 10.1016/j.cub.2022.11.020. Epub 2022 Dec 7.

Abstract

The trypanosomatid Angomonas deanei is a model to study endosymbiosis. Each cell contains a single β-proteobacterial endosymbiont that divides at a defined point in the host cell cycle and contributes essential metabolites to the host metabolism. Additionally, one endosymbiont gene, encoding an ornithine cyclodeaminase (OCD), was transferred by endosymbiotic gene transfer (EGT) to the nucleus. However, the molecular mechanisms mediating the intricate host/symbiont interactions are largely unexplored. Here, we used protein mass spectrometry to identify nucleus-encoded proteins that co-purify with the endosymbiont. Expression of fluorescent fusion constructs of these proteins in A. deanei confirmed seven host proteins to be recruited to specific sites within the endosymbiont. These endosymbiont-targeted proteins (ETPs) include two proteins annotated as dynamin-like protein and peptidoglycan hydrolase that form a ring-shaped structure around the endosymbiont division site that remarkably resembles organellar division machineries. The EGT-derived OCD was not among the ETPs, but instead localizes to the glycosome, likely enabling proline production in the glycosome. We hypothesize that recalibration of the metabolic capacity of the glycosomes that are closely associated with the endosymbiont helps to supply the endosymbiont with metabolites it is auxotrophic for and thus supports the integration of host and endosymbiont metabolic networks. Hence, scrutiny of endosymbiosis-induced protein re-localization patterns in A. deanei yielded profound insights into how an endosymbiotic relationship can stabilize and deepen over time far beyond the level of metabolite exchange.

摘要

根瘤鞭毛虫 Angomonas deanei 是研究共生关系的模式生物。每个细胞中只含有一个β-变形菌内共生体,该内共生体在宿主细胞周期的特定时间点分裂,并为宿主代谢贡献必需的代谢物。此外,一个内共生体基因,编码鸟氨酸环化脱氨酶(OCD),通过内共生基因转移(EGT)转移到核内。然而,介导复杂的宿主/共生体相互作用的分子机制在很大程度上仍未被探索。在这里,我们使用蛋白质质谱法来鉴定与内共生体共纯化的核编码蛋白。这些蛋白质的荧光融合构建体在 A. deanei 中的表达证实了有 7 种宿主蛋白被招募到内共生体的特定部位。这些内共生体靶向蛋白(ETP)包括两种被注释为类似于动力蛋白的蛋白和肽聚糖水解酶,它们在内共生体分裂部位周围形成一个环形结构,与细胞器分裂机制非常相似。EGT 衍生的 OCD 不在 ETP 之列,而是定位于糖质体,可能使脯氨酸在糖质体中产生。我们假设与内共生体密切相关的糖质体的代谢能力的重新校准有助于为内共生体提供其需要的代谢物,从而支持宿主和内共生体代谢网络的整合。因此,对 A. deanei 中内共生诱导的蛋白质重定位模式的仔细研究深入了解了共生关系如何随着时间的推移而稳定和深化,远远超出了代谢物交换的水平。

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