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Son Is Essential for Nuclear Speckle Organization and Cell Cycle Progression

机译:儿子对于核斑点组织和细胞周期进程至关重要

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摘要

Subnuclear organization and spatiotemporal regulation of pre-mRNA processing factors is essential for the production of mature protein-coding mRNAs. We have discovered that a large protein called Son has a novel role in maintaining proper nuclear organization of pre-mRNA processing factors in nuclear speckles. The primary sequence of Son contains a concentrated region of multiple unique tandem repeat motifs that may support a role for Son as a scaffolding protein for RNA processing factors in nuclear speckles. We used RNA interference (RNAi) approaches and high-resolution microscopy techniques to study the functions of Son in the context of intact cells. Although Son precisely colocalizes with pre-mRNA splicing factors in nuclear speckles, its depletion by RNAi leads to cell cycle arrest in metaphase and causes dramatic disorganization of small nuclear ribonuclear protein and serine-arginine rich protein splicing factors during interphase. Here, we propose that Son is essential for appropriate subnuclear organization of pre-mRNA splicing factors and for promoting normal cell cycle progression.
机译:前核糖核酸加工因子的亚核组织和时空调节对于产生成熟的编码蛋白质的核糖核酸至关重要。我们发现一种叫做Son的大蛋白在维持核斑点中前mRNA加工因子的适当核组织方面具有新颖的作用。 Son的一级序列包含多个独特的串联重复基序的浓缩区,这可能支持Son作为核斑点中RNA处理因子的支架蛋白的作用。我们使用RNA干扰(RNAi)方法和高分辨率显微镜技术来研究Son在完整细胞中的功能。尽管Son确实与前mRNA剪接因子共定位于核斑点中,但RNAi对其的消耗会导致中期细胞周期停滞,并导致中间核小的核核蛋白和富含丝氨酸精氨酸的蛋白剪接因子急剧混乱。在这里,我们建议Son对于适当的pre-mRNA剪接因子亚核组织和促进正常细胞周期进程至关重要。

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