Matera A G, Tycowski K T, Steitz J A, Ward D C
Department of Genetics, Case Western Reserve University, Cleveland, Ohio 44106-4955, USA.
Mol Biol Cell. 1994 Dec;5(12):1289-99. doi: 10.1091/mbc.5.12.1289.
The organization of the U3, U8, and U13 small nucleolar ribonucleoproteins (snoRNPs) has been investigated in HeLa cells using antisense DNA and 2'-OMe RNA oligonucleotides. Oligomers corresponding to deoxynucleotides that target RNase H degradation of intact RNP particles were synthesized and used for fluorescence in situ hybridization. U3 and U13 are distributed throughout the nucleolus and colocalize with anti-fibrillarin antibodies. U8, however, is organized in discrete ring-like structures near the center of the nucleolus and surround bright punctate regions visualized with anti-RNA polymerase I and anti-UBF/NOR-90 antibodies. In decondensed nucleoli, a necklace of smaller ring-like structures of U8 RNA appear. A model for the recruitment of U8 (and presumably other processing factors) to the sites of rRNA transcription is discussed. Hybridization to mitotic cells showed that unlike pol I and NOR-90, U8 is dispersed into the cytoplasm during mitosis. The subnucleolar organization of U8 is consistent with its demonstrated participation in early intermediate steps in pre-rRNA processing. In contrast, the more dispersed intranucleolar distribution of U3 agrees with its putative involvement in both early and late steps of rRNA maturation. These studies illustrate the feasibility of mapping functional domains within the nucleolus by correlating the in vitro activities of small nuclear RNPs with their in situ locations.
利用反义DNA和2'-OMe RNA寡核苷酸,在HeLa细胞中研究了U3、U8和U13小核仁核糖核蛋白(snoRNP)的组织情况。合成了与靶向完整RNP颗粒的核糖核酸酶H降解的脱氧核苷酸对应的寡聚物,并将其用于荧光原位杂交。U3和U13分布于整个核仁,并与抗纤维蛋白原抗体共定位。然而,U8则组织成位于核仁中心附近的离散环状结构,并围绕着用抗RNA聚合酶I和抗UBF/NOR-90抗体观察到的明亮点状区域。在解聚的核仁中,出现了由较小的U8 RNA环状结构组成的项链状结构。讨论了U8(可能还有其他加工因子)募集到rRNA转录位点的模型。与有丝分裂细胞的杂交显示,与聚合酶I和NOR-90不同,U8在有丝分裂期间分散到细胞质中。U8的核仁亚组织与其在rRNA前体加工早期中间步骤中的参与情况一致。相比之下,U3在核仁内更分散的分布与其在rRNA成熟早期和晚期步骤中的假定参与情况相符。这些研究说明了通过将小核核糖核蛋白的体外活性与其原位位置相关联来绘制核仁内功能域的可行性。