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In Vivo Interaction Proteomics in Caenorhabditis elegans Embryos Provides New Insights into P Granule Dynamics

机译:秀丽隐杆线虫胚胎的体内相互作用蛋白质组学为P颗粒动力学提供了新见解

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Studying protein interactions in whole organisms is fundamental to understanding development. Here, we combine in vivo expressed GFP-tagged proteins with quantitative proteomics to identify protein-protein interactions of selected key proteins involved in early C. elegans embryogenesis. Co-affinity purification of interaction partners for eight bait proteins resulted in a pilot in vivo interaction map of proteins with a focus on early development. Our network reflects known biology and is highly enriched in functionally relevant interactions. To demonstrate the utility of the map, we looked for new regulators of P granule dynamics and found that GEI-12, a novel binding partner of the DYRK family kinase MBK-2, is a key regulator of P granule formation and germline maintenance. Our data corroborate a recently proposed model in which the phosphorylation state of GEI-12 controls P granule dynamics. In addition, we find that GEI-12 also induces granule formation in mammalian cells, suggesting a common regulatory mechanism in worms and humans. Our results show that in vivo interaction proteomics provides unique insights into animal development.
机译:研究整个生物体中的蛋白质相互作用是理解发育的基础。在这里,我们结合体内表达的GFP标记的蛋白质与定量蛋白质组学,以鉴定参与早期秀丽隐杆线虫胚胎发生的选定关键蛋白质的蛋白质-蛋白质相互作用。共亲和纯化八个诱饵蛋白相互作用伴侣的结果是初步的体内蛋白相互作用图谱,重点是早期开发。我们的网络反映了已知的生物学,并且在功能上相关的相互作用方面高度丰富。为了证明该图谱的实用性,我们寻找了P颗粒动力学的新调节剂,并发现DYRK家族激酶MBK-2的新型结合伴侣GEI-12是P颗粒形成和种系维持的关键调节剂。我们的数据证实了最近提出的模型,其中GEI-12的磷酸化状态控制着P颗粒的动力学。此外,我们发现GEI-12还可以诱导哺乳动物细胞中的颗粒形成,这表明蠕虫和人类具有共同的调节机制。我们的结果表明,体内相互作用蛋白质组学为动物发育提供了独特的见解。

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