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首页> 外文期刊>Journal of cell biology >Nucleolar Components Involved in Ribosome Biogenesis Cycle between the Nucleolus and Nucleoplasm in Interphase Cells
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Nucleolar Components Involved in Ribosome Biogenesis Cycle between the Nucleolus and Nucleoplasm in Interphase Cells

机译:涉及间期细胞核仁和核质之间核糖体生物发生周期的核仁成分。

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摘要

We examined the mobilities of nucleolar components that act at various steps of the ribosome biogenesis pathway. Fluorescence recovery after photobleaching (FRAP) and fluorescence loss in photobleaching (FLIP) analyses demonstrate that factors involved in rRNA transcription (upstream-binding factor [UBF]), processing (nucleolin, fibrillarin, and RNase MRP subunits, Rpp29), and ribosome assembly (B23) exchange rapidly between the nucleoplasm and nucleolus. In contrast, the mobilities of ribosomal subunit proteins (S5, L9) are much slower. Selective inhibition of RNA polymerase I transcription does not prevent the exchanges but influences the rates of exchange differentially for different nucleolar components. These findings suggest that the rapid exchange of nucleolar components between the nucleolus and nucleoplasm may represent a new level of regulation for rRNA synthesis. The different dynamic properties of proteins involved in different steps of ribosome biogenesis imply that the nucleolar association of these proteins is due to their specific functional roles rather than simply their specific nucleolar-targeting events.
机译:我们检查了核糖体生物发生途径的各个步骤的核仁成分的迁移率。光漂白后的荧光恢复(FRAP)和光漂白后的荧光损失(FLIP)分析表明,涉及rRNA转录(上游结合因子[UBF]),加工(核仁素,原纤维蛋白和RNase MRP亚基,Rpp29)和核糖体装配的因素。 (B23)在核质和核仁之间快速交换。相反,核糖体亚基蛋白(S5,L9)的迁移速度要慢得多。 RNA聚合酶I转录的选择性抑制不会阻止交换,但会不同地影响不同核仁成分的交换速率。这些发现表明核仁和核质之间的核仁成分的快速交换可能代表了rRNA合成的新的调控水平。参与核糖体生物发生的不同步骤的蛋白质的不同动态特性意味着,这些蛋白质的核仁缔合是由于其特定的功能作用,而不是简单地是其特定的核仁靶向事件。

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