Bordonné R, Banroques J, Abelson J, Guthrie C
Department of Biochemistry and Biophysics, University of California, San Francisco 94143.
Genes Dev. 1990 Jul;4(7):1185-96. doi: 10.1101/gad.4.7.1185.
U4 small nuclear RNA (snRNA) contains two intramolecular stem-loop structures, located near each end of the molecule. The 5' stem-loop is highly conserved in structure and separates two regions of U4 snRNA that base-pair with U6 snRNA in the U4/U6 small nuclear ribonucleoprotein particle (snRNP). The 3' stem-loop is highly divergent in structure among species and lies immediately upstream of the binding site for Sm proteins. To investigate the function of these two domains, mutants were constructed that delete the yeast U4 snRNA 5' stem-loop and that replace the yeast 3' stem-loop with that from trypanosome U4 snRNA. Both mutants fail to complement a null allele of the yeast U4 gene. The defects of the mutants have been examined in heterozygous strains by native gel electrophoresis, glycerol gradient centrifugation, and immunoprecipitation. The chimeric yeast-trypanosome RNA does not associate efficiently with U6 snRNA, suggesting that the 3' stem-loop of yeast U4 snRNA might be a binding site for a putative protein that facilitates assembly of the U4/U6 complex. In contrast, the 5' hairpin deletion mutant associates efficiently with U6 snRNA. However, it does not bind the U4/U6-specific protein PRP4 and does not assemble into a U4/U5/U6 snRNA. Thus, we propose that the role of the PRP4 protein is to promote interactions between the U4/U6 snRNP and the U5 snRNP.
U4小核RNA(snRNA)含有两个分子内茎环结构,位于分子的两端附近。5'茎环在结构上高度保守,将U4 snRNA与U4/U6小核核糖核蛋白颗粒(snRNP)中的U6 snRNA碱基配对的两个区域分隔开。3'茎环在物种间结构高度不同,位于Sm蛋白结合位点的紧邻上游。为了研究这两个结构域的功能,构建了缺失酵母U4 snRNA 5'茎环以及用锥虫U4 snRNA的3'茎环替换酵母3'茎环的突变体。这两个突变体均不能互补酵母U4基因的无效等位基因。通过天然凝胶电泳、甘油梯度离心和免疫沉淀在杂合菌株中检测了突变体的缺陷。嵌合的酵母-锥虫RNA不能有效地与U6 snRNA结合,这表明酵母U4 snRNA的3'茎环可能是促进U4/U6复合体组装的一种假定蛋白质的结合位点。相比之下,5'发夹缺失突变体与U6 snRNA有效结合。然而,它不结合U4/U6特异性蛋白PRP4,也不能组装成U4/U5/U6 snRNA。因此,我们提出PRP4蛋白的作用是促进U4/U6 snRNP与U5 snRNP之间的相互作用。