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生殖颗粒以不同的形态存在,这些形态与RNA干扰靶向的RNA有不同的关联。

germ granules are present in distinct configurations that differentially associate with RNAi-targeted RNAs.

作者信息

Uebel Celja J, Rajeev Sanjana, Phillips Carolyn M

机构信息

Department of Biological Sciences, University of Southern California, Los Angeles, CA 90089.

Present address: Departments of Developmental Biology and Genetics, Stanford University School of Medicine, Stanford CA, 94305.

出版信息

bioRxiv. 2023 May 25:2023.05.25.542330. doi: 10.1101/2023.05.25.542330.

Abstract

RNA silencing pathways are complex, highly conserved, and perform widespread, critical regulatory roles. In germlines, RNA surveillance occurs through a series of perinuclear germ granule compartments-P granules, Z granules, SIMR foci, and foci-multiple of which form via phase separation and exhibit liquid-like properties. The functions of individual proteins within germ granules are well-studied, but the spatial organization, physical interaction, and coordination of biomolecule exchange between compartments within germ granule "nuage" is less understood. Here we find that key proteins are sufficient for compartment separation, and that the boundary between compartments can be reestablished after perturbation. Using super-resolution microscopy, we discover a toroidal P granule morphology which encircles the other germ granule compartments in a consistent exterior-to-interior spatial organization. Combined with findings that nuclear pores primarily interact with P granules, this nuage compartment organization has broad implications for the trajectory of an RNA as it exits the nucleus and enters small RNA pathway compartments. Furthermore, we quantify the stoichiometric relationships between germ granule compartments and RNA to reveal discrete populations of nuage that differentially associate with RNAi-targeted transcripts, possibly suggesting functional differences between nuage configurations. Together, our work creates a more spatially and compositionally accurate model of nuage which informs the conceptualization of RNA silencing through different germ granule compartments.

摘要

RNA沉默途径复杂、高度保守,并发挥着广泛的关键调控作用。在生殖细胞系中,RNA监测通过一系列核周生殖颗粒区室进行——P颗粒、Z颗粒、SIMR病灶以及多个通过相分离形成并具有类液体性质的病灶。生殖颗粒内单个蛋白质的功能已得到充分研究,但生殖颗粒“云状结构”内各隔室之间的空间组织、物理相互作用以及生物分子交换的协调机制尚不清楚。在这里,我们发现关键蛋白质足以实现隔室分离,并且在受到干扰后隔室之间的边界可以重新建立。利用超分辨率显微镜,我们发现了一种环形P颗粒形态,它以一致的由外到内的空间组织环绕着其他生殖颗粒隔室。结合核孔主要与P颗粒相互作用的发现,这种云状结构隔室组织对RNA离开细胞核并进入小RNA途径隔室的轨迹具有广泛影响。此外,我们量化了生殖颗粒隔室与RNA之间的化学计量关系,以揭示与RNA干扰靶向转录本有差异关联的不同云状结构群体,这可能暗示了云状结构配置之间的功能差异。总之,我们的工作创建了一个在空间和组成上更准确的云状结构模型,为通过不同生殖颗粒隔室进行RNA沉默的概念化提供了依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d16/10246010/e817ba36a5b5/nihpp-2023.05.25.542330v1-f0001.jpg

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