Fischer D, Weisenberger D, Scheer U
Institute of Zoology, University of Würzburg, Federal Republic of Germany.
Chromosoma. 1991 Dec;101(3):133-40. doi: 10.1007/BF00355363.
Nucleoli provide the fascinating possibility of linking morphologically distinct structures such as those seen in the electron microscope with biochemical features of the formation and stepwise maturation of ribosomes. Localization of proteins by immunocytochemistry and of rRNA genes and their transcripts by in situ hybridization has greatly improved our understanding of the structural-functional relationships of the nucleolus. The present review describes some recent results obtained by electron microscopic in situ hybridization and argues that this approach has the potential to correlate each step of the complex pre-rRNA maturation pathway with nucleolar structures. Evidence is accumulating that the nucleolus-specific U3 snRNPs (small nuclear ribonucleoprotein particles) participate in rRNA processing events, similar to the role played by the nucleoplasmic snRNPs in mRNA maturation. The intranucleolar distribution of U3 snRNA is consistent with the view that it is involved in both early and late stages of pre-rRNA processing.
核仁提供了一种引人入胜的可能性,即将电子显微镜下看到的形态上不同的结构与核糖体形成及逐步成熟的生化特征联系起来。通过免疫细胞化学对蛋白质进行定位,以及通过原位杂交对rRNA基因及其转录本进行定位,极大地增进了我们对核仁结构-功能关系的理解。本综述描述了通过电子显微镜原位杂交获得的一些最新结果,并认为这种方法有潜力将复杂的前体rRNA成熟途径的每一步与核仁结构联系起来。越来越多的证据表明,核仁特异性U3小核核糖核蛋白颗粒(small nuclear ribonucleoprotein particles, snRNPs)参与rRNA加工事件,类似于核质snRNPs在mRNA成熟中所起的作用。U3 snRNA在核仁内的分布与它参与前体rRNA加工早期和晚期阶段的观点一致。