首页> 外文期刊>Biochimie >PROCESSING OF FIBRILLARIN-ASSOCIATED SNORNAS FROM PRE-MRNA INTRONS - AN EXONUCLEOLYTIC PROCESS EXCLUSIVELY DIRECTED BY THE COMMON STEM-BOX TERMINAL STRUCTURE
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PROCESSING OF FIBRILLARIN-ASSOCIATED SNORNAS FROM PRE-MRNA INTRONS - AN EXONUCLEOLYTIC PROCESS EXCLUSIVELY DIRECTED BY THE COMMON STEM-BOX TERMINAL STRUCTURE

机译:前mRNA内含子对原纤维蛋白结合的鼻息肉的处理-共有杆盒末端结构独家指导的核酸外过程

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摘要

Nucleoli contain complex populations of small nucleolar RNAs (snoRNAs) likely to be involved in pre-rRNA processing and ribosome biogenesis. A growing family of snoRNAs which interacts with nucleolar protein fibrillarin is structurally related by the presence of long complementarities to rRNA (12 to 21 nucleotides) and of a pair of common sequence motifs, termed boxes C and D. All are encoded in introns and produced by processing of intronic RNA. We have analysed the mechanism of processing of one of these snoRNAs, U20, by transfection in mouse cells. We show here that the cia-acting signals for its processing are restricted to a minor portion of the mature snoRNA sequence. A terminal structure in which the two box moths are brought in close vicinity by the pairing of the 5' and 3' terminal nucleotides is sufficient to direct faithful processing. Particularly, the key role of the terminal stem shared by most snoRNAs of this family is demonstrated by the effect of compensatory mutations. Our results also indicate that faithful processing at both ends of the snoRNA can be uncoupled and that it is not strictly dependent on pre-mRNA splicing. Finally, our data point to the exclusive involvement of 5'-->3' and 3'-->5' exonucleolytic activities in the processing of intronic snoRNAs of this family. [References: 45]
机译:核仁包含复杂的小核仁RNA(snoRNA)种群,可能参与前rRNA加工和核糖体生物发生。与核仁蛋白原纤维蛋白相互作用的一个不断增长的snoRNA家族在结构上与rRNA(12至21个核苷酸)长互补性以及一对常见的序列基序(称为框C和D)存在相关性。所有这些均在内含子中编码并产生通过处理内含子RNA。我们已经分析了通过转染小鼠细胞来处理其中一种snoRNAs U20的机制。我们在这里显示,其处理的cia-acting信号仅限于成熟snoRNA序列的一小部分。通过5'和3'末端核苷酸的配对使两个盒蛾紧密靠近的末端结构足以指导忠实的加工。特别地,该家族的大多数snoRNA共享的末端茎的关键作用通过补偿性突变的作用得以证明。我们的结果还表明,在snoRNA两端的忠实处理可以解偶联,并且它并不严格依赖于mRNA之前的剪接。最后,我们的数据表明5'-> 3'和3'-> 5'的核酸外切活性仅参与该家族内含子snoRNA的加工。 [参考:45]

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