Belisova Aurélia, Semrad Katharina, Mayer Oliver, Kocian Grazia, Waigmann Elisabeth, Schroeder Renée, Steiner Günter
Department of Medical Biochemistry, Medical University of Vienna, Vienna Biocenter, Dr. Bohrgasse 9, A-1030 Vienna, Austria.
RNA. 2005 Jul;11(7):1084-94. doi: 10.1261/rna.7263905. Epub 2005 May 31.
Ro ribonucleoprotein (RNP) complexes are composed of one molecule of a small noncoding cytoplasmic RNA, termed Y RNA, and the two proteins Ro60 and La. Additional proteins such as hnRNP I, hnRNP K, or nucleolin have recently been shown to be associated with subpopulations of Y RNAs. Ro RNPs appear to be localized in the cytoplasm of all higher eukaryotic cells but their functions have remained elusive. To shed light on possible functions of Ro RNPs, we tested protein components of these complexes for RNA chaperone properties employing two in vitro chaperone assays and additionally an in vivo chaperone assay. In these assays the splicing activity of a group I intron is measured. La showed pronounced RNA chaperone activity in the cis-splicing assay in vitro and also in vivo, whereas no activity was seen in the trans-splicing assay in vitro. Both hnRNP I and hnRNP K exhibited strong chaperone activity in the two in vitro assays, however, proved to be cytotoxic in the in vivo assay. No chaperone activity was observed for Ro60 in vitro and a moderate activity was detected in vivo. In vitro chaperone activities of La and hnRNP I were completely inhibited upon binding of Y RNA. Taken together, these data suggest that the Ro RNP components La, hnRNP K, and hnRNP I possess RNA chaperone activity, while Ro60-Y RNA complexes might function as transporters, bringing other Y RNA binding proteins to their specific targets.
Ro核糖核蛋白(RNP)复合物由一个小的非编码细胞质RNA分子(称为Y RNA)以及两种蛋白质Ro60和La组成。最近研究表明,其他蛋白质如hnRNP I、hnRNP K或核仁素与Y RNA的亚群相关。Ro RNP似乎定位于所有高等真核细胞的细胞质中,但其功能仍不清楚。为了阐明Ro RNP的可能功能,我们采用两种体外伴侣测定法以及另外一种体内伴侣测定法,测试了这些复合物的蛋白质成分的RNA伴侣特性。在这些测定法中,测量了I组内含子的剪接活性。La在体外顺式剪接测定法以及体内均表现出明显的RNA伴侣活性,而在体外反式剪接测定法中未观察到活性。hnRNP I和hnRNP K在两种体外测定法中均表现出很强的伴侣活性,然而,在体内测定法中被证明具有细胞毒性。Ro60在体外未观察到伴侣活性,在体内检测到中等活性。Y RNA结合后,La和hnRNP I的体外伴侣活性被完全抑制。综上所述,这些数据表明Ro RNP成分La、hnRNP K和hnRNP I具有RNA伴侣活性,而Ro60 - Y RNA复合物可能作为转运体,将其他Y RNA结合蛋白带到其特定靶点。