Matera A G, Frey M R, Margelot K, Wolin S L
Department of Genetics, Case Western Reserve University, Cleveland, Ohio 44106-4955, USA.
J Cell Biol. 1995 Jun;129(5):1181-93. doi: 10.1083/jcb.129.5.1181.
We have investigated the subcellular organization of the four human Y RNAs. These RNAs, which are transcribed by RNA polymerase III, are usually found complexed with the Ro autoantigen, a 60-kD protein. We designed 2'-OMe oligoribonucleotides that were complementary to accessible single-stranded regions of Y RNAs within Ro RNPs and used them in fluorescence in situ hybridization. Although all four Y RNAs were primarily cytoplasmic, oligonucleotides directed against three of the RNAs hybridized to discrete structures near the nucleolar rim. We have termed these structures "perinucleolar compartments" (PNCs). Double labeling experiments with appropriate antisera revealed that PNCs are distinct from coiled bodies and fibrillar centers. Co-hybridization with a genomic DNA clone spanning the human Y1 and Y3 genes showed that PNCs are not stably associated with the transcription site for these Y RNAs. Although 5S rDNA was often located near the nucleolar periphery, PNCs are not associated with 5S gene loci. Two additional pol III transcripts, the RNA components of RNase P and RNase MRP, did colocalize within PNCs. Most interestingly, the polypyrimidine tract-binding protein hnRNP I/PTB was also concentrated in this compartment. Possible roles for this novel nuclear subdomain in macromolecular assembly and/or nucleocytoplasmic shuttling of these five pol III transcripts, along with hnRNP I/PTB, are discussed.
我们研究了四种人类Y RNA的亚细胞组织。这些由RNA聚合酶III转录的RNA,通常与Ro自身抗原(一种60kD的蛋白质)结合存在。我们设计了与Ro核糖核蛋白颗粒(RNP)内Y RNA可及单链区域互补的2'-O-甲基寡核糖核苷酸,并将其用于荧光原位杂交。尽管所有四种Y RNA主要位于细胞质中,但针对其中三种RNA的寡核苷酸与核仁边缘附近的离散结构杂交。我们将这些结构称为“核仁周围区室”(PNC)。用合适的抗血清进行的双重标记实验表明,PNC与卷曲小体和纤维中心不同。与跨越人类Y1和Y3基因的基因组DNA克隆共杂交表明,PNC与这些Y RNA的转录位点没有稳定关联。尽管5S rDNA常常位于核仁周边附近,但PNC与5S基因位点无关。另外两种由RNA聚合酶III转录的产物,即核糖核酸酶P和核糖核酸酶MRP的RNA组分,确实在PNC中共定位。最有趣的是,多嘧啶序列结合蛋白hnRNP I/PTB也集中在这个区室中。本文讨论了这个新的核亚结构域在这五种由RNA聚合酶III转录的产物以及hnRNP I/PTB的大分子组装和/或核质穿梭中的可能作用。