Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, CT, USA.
Institute of Molecular Biology (IMB) , Mainz, Germany.
J Cell Biol. 2025 Feb 3;224(2). doi: 10.1083/jcb.202305081. Epub 2024 Nov 27.
The cell nucleus contains distinct biomolecular condensates that form at specific genetic loci, organize chromosomes in 3D space, and regulate RNA processing. Among these, Cajal bodies (CBs) require key "scaffolding" proteins for their assembly, which is not fully understood. Here, we employ proximity biotinylation, mass spectrometry, and functional screening to comprehensively identify and test the functions of CB components. We document 144 protein interactors of coilin, of which 70 were newly detected, and establish 25 players needed for CB assembly and/or maintenance. Surprisingly, the depletion of nine coilin interactors-mostly constituents of the 60S ribosome (RPLs)-increased CB number and caused subdomains defined by coilin and the survival motor neuron protein (SMN) to merge. These phenotypes were traceable to altered nuclear levels of dimethylarginine. Our data implicate RPL24 and other players in the regulation of CBs by modulating posttranslational modifications. Moreover, the prevalence of transcription factors among the identified components highlights roles for gene activity in CB assembly and nuclear positioning.
细胞核包含独特的生物分子凝聚物,这些凝聚物在特定的遗传基因座形成,在 3D 空间组织染色体,并调节 RNA 加工。在这些凝聚物中,Cajal 体 (CB) 需要关键的“支架”蛋白来组装,但其组装机制尚未完全阐明。在这里,我们采用邻近生物素标记、质谱分析和功能筛选,全面鉴定和测试 CB 成分的功能。我们记录了 coilin 的 144 种蛋白相互作用者,其中 70 种是新发现的,并确定了 25 种组装和/或维持 CB 所必需的参与者。令人惊讶的是,九个 coilin 相互作用者(大多数是 60S 核糖体(RPL)的组成部分)的耗竭增加了 CB 的数量,并导致 coilin 和运动神经元存活蛋白 (SMN) 定义的亚域融合。这些表型可以追溯到二甲基精氨酸的核内水平改变。我们的数据表明,RPL24 和其他参与者通过调节翻译后修饰来调节 CB。此外,鉴定出的成分中转录因子的普遍性突出了基因活性在 CB 组装和核定位中的作用。