Key result
Ro RNP components La, hnRNP K, and hnRNP I demonstrated RNA chaperone activity in splicing assays, whereas Ro60 showed no in vitro and moderate in vivo activity.
The Ro RNP components La, hnRNP K, and hnRNP I possess RNA chaperone activity, suggesting a functional role in RNA processing or transport.
Hypothesis-generating for Ro RNP roles in RNA processing; human validation required before any clinical consideration.
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.
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Belisova et al. (2005) studied this question. Protein components of Ro RNPs (La, hnRNP I, hnRNP K, Ro60) was evaluated on RNA chaperone activity (splicing activity of a group I intron). Ro RNP components La, hnRNP K, and hnRNP I demonstrated RNA chaperone activity in splicing assays, whereas Ro60 showed no in vitro and moderate in vivo activity.
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