Krüger Tim, Zentgraf Hanswalter, Scheer Ulrich
Department of Cell and Developmental Biology, Biocenter, University of Würzburg, Würzburg, Germany.
J Cell Biol. 2007 May 21;177(4):573-8. doi: 10.1083/jcb.200612048.
Considerable efforts are being undertaken to elucidate the processes of ribosome biogenesis. Although various preribosomal RNP complexes have been isolated and molecularly characterized, the order of ribosomal protein (r-protein) addition to the emerging ribosome subunits is largely unknown. Furthermore, the correlation between the ribosome assembly pathway and the structural organization of the dedicated ribosome factory, the nucleolus, is not well established. We have analyzed the nucleolar localization of several early binding r-proteins in human cells, applying various methods, including live-cell imaging and electron microscopy. We have located all examined r-proteins (S4, S6, S7, S9, S14, and L4) in the granular component (GC), which is the nucleolar region where later pre-ribosomal RNA (rRNA) processing steps take place. These results imply that early binding r-proteins do not assemble with nascent pre-rRNA transcripts in the dense fibrillar component (DFC), as is generally believed, and provide a link between r-protein assembly and the emergence of distinct granules at the DFC-GC interface.
人们正在付出巨大努力来阐明核糖体生物发生的过程。尽管已经分离出各种前核糖体核糖核蛋白复合物并对其进行了分子表征,但核糖体蛋白(r蛋白)添加到新出现的核糖体亚基上的顺序在很大程度上仍不清楚。此外,核糖体组装途径与专门的核糖体工厂即核仁的结构组织之间的相关性尚未完全确立。我们应用了包括活细胞成像和电子显微镜在内的各种方法,分析了几种早期结合的r蛋白在人类细胞中的核仁定位。我们已将所有检测的r蛋白(S4、S6、S7、S9、S14和L4)定位在颗粒组分(GC)中,颗粒组分是核仁区域,后期的前核糖体RNA(rRNA)加工步骤在此发生。这些结果表明,早期结合的r蛋白并非如普遍认为的那样在致密纤维组分(DFC)中与新生的前rRNA转录本组装在一起,并在r蛋白组装与DFC-GC界面处不同颗粒的出现之间建立了联系。