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斑马鱼中相分离凝聚体内 RNA 分子的空间组织和功能受 Dnd1 控制。

Spatial organization and function of RNA molecules within phase-separated condensates in zebrafish are controlled by Dnd1.

机构信息

Institute of Cell Biology, Center for Molecular Biology of Inflammation, University of Münster, 48149 Münster, Germany.

Department of Chemistry & Biochemistry and The Baylor Synthesis and Drug-Lead Discovery Laboratory, Baylor University, Waco, TX 76706, USA.

出版信息

Dev Cell. 2023 Sep 11;58(17):1578-1592.e5. doi: 10.1016/j.devcel.2023.06.009. Epub 2023 Jul 17.

Abstract

Germ granules, condensates of phase-separated RNA and protein, are organelles that are essential for germline development in different organisms. The patterning of the granules and their relevance for germ cell fate are not fully understood. Combining three-dimensional in vivo structural and functional analyses, we study the dynamic spatial organization of molecules within zebrafish germ granules. We find that the localization of RNA molecules to the periphery of the granules, where ribosomes are localized, depends on translational activity at this location. In addition, we find that the vertebrate-specific Dead end (Dnd1) protein is essential for nanos3 RNA localization at the condensates' periphery. Accordingly, in the absence of Dnd1, or when translation is inhibited, nanos3 RNA translocates into the granule interior, away from the ribosomes, a process that is correlated with the loss of germ cell fate. These findings highlight the relevance of sub-granule compartmentalization for post-transcriptional control and its importance for preserving germ cell totipotency.

摘要

生殖质颗粒是一种由相分离的 RNA 和蛋白质凝聚而成的细胞器,对于不同生物的生殖细胞发育至关重要。然而,生殖质颗粒的形成模式及其与生殖细胞命运的相关性尚不完全清楚。本研究结合三维体内结构和功能分析,研究了斑马鱼生殖质颗粒内分子的动态空间组织。我们发现,RNA 分子定位于颗粒的外围(核糖体所在的位置)取决于该位置的翻译活性。此外,我们发现脊椎动物特异性的 Dead end (Dnd1) 蛋白对于 nanos3 RNA 在凝聚物外围的定位是必不可少的。因此,在缺乏 Dnd1 或翻译被抑制的情况下,nanos3 RNA 会转移到颗粒内部,远离核糖体,这一过程与生殖细胞命运的丧失相关。这些发现强调了亚颗粒区室化对于转录后调控的相关性及其对保持生殖细胞全能性的重要性。

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