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Caenorhabditis elegans germ granules are present in distinct and assemble in a hierarchical manner

机译:秀丽隐杆线虫(Caenorhabditis elegans)的胚芽颗粒以不同的方式存在,并以分层方式组装

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RNA silencing pathways are complex, highly conserved, and perform crucial regulatory roles. In Caenorhabditis elegans germlines, RNA surveillance occurs through a series of perinuclear germ granule compartments - P granules, Z granules, SIMR foci, and Mutator foci - multiple of which form via phase separation. Although the functions of individual germ granule proteins have been extensively studied, the relationships between germ granule compartments (collectively, 'nuage') are less understood. We find that key germ granule proteins assemble into separate but adjacent condensates, and that boundaries between germ granule compartments re-establish after perturbation. We discover a toroidal P granule morphology, which encircles the other germ granule compartments in a consistent exterior-to-interior spatial organization, providing broad implications for the trajectory of an RNA as it exits the nucleus. Moreover, we quantify the stoichiometric relationships between germ granule compartments and RNA to reveal discrete populations of nuage that assemble in a hierarchical manner and differentially associate with RNAi-targeted transcripts, possibly suggesting functional differences between nuage configurations. Our work creates a more accurate model of C. elegans nuage and informs the conceptualization of RNA silencing through the germ granule compartments.
机译:RNA沉默途径复杂,高度保守,并发挥关键的调节作用。在秀丽隐杆线虫种系中,RNA监测通过一系列核周胚芽颗粒区室(P颗粒、Z颗粒、SIMR病灶和突变体病灶)进行,其中多个通过相分离形成。尽管单个胚芽颗粒蛋白的功能已被广泛研究,但胚芽颗粒区室(统称为“nuage”)之间的关系却知之甚少。我们发现关键的胚粒蛋白组装成独立但相邻的凝聚物,并且胚粒隔室之间的边界在扰动后重新建立。我们发现了一种环形 P 颗粒形态,它以一致的从外到内的空间组织包围其他胚芽颗粒隔室,为 RNA 离开细胞核时的轨迹提供了广泛的意义。此外,我们量化了胚芽颗粒区室和 RNA 之间的化学计量关系,以揭示以分层方式组装并与 RNAi 靶向转录本差异相关的离散 nuage 群体,这可能表明 nuage 构型之间的功能差异。我们的工作创建了一个更准确的秀丽隐杆线虫 nuage 模型,并为通过胚粒隔室的 RNA 沉默的概念化提供了信息。

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