首页> 美国卫生研究院文献>The EMBO Journal >Processing of the intron-encoded U16 and U18 snoRNAs: the conserved C and D boxes control both the processing reaction and the stability of the mature snoRNA.
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Processing of the intron-encoded U16 and U18 snoRNAs: the conserved C and D boxes control both the processing reaction and the stability of the mature snoRNA.

机译:内含子编码的U16和U18 snoRNA的加工:保守的C和D盒控制加工反应和成熟snoRNA的稳定性。

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摘要

A novel class of small nucleolar RNAs (snoRNAs), encoded in introns of protein coding genes and originating from processing of their precursor molecules, has recently been described. The L1 ribosomal protein (r-protein) gene of Xenopus laevis and its human homologue contain two snoRNAs, U16 and U18. It has been shown that these snoRNAs are excised from their intron precursors by endonucleolytic cleavage and that their processing is alternative to splicing. Two sequences, internal to the snoRNA coding region, have been identified as indispensable for processing the conserved boxes C and D. Competition experiments have shown that these sequences interact with diffusible factors which can bind both the pre-mRNA and the mature U16 snoRNA. Fibrillarin, which is known to associate with complexes formed on C and D boxes of other snoRNAs, is found in association with mature U16 RNA, as well as with its precursor molecules. This fact suggests that the complex formed on the pre-mRNA remains bound to U16 throughout all the processing steps. We also show that the complex formed on the C and D boxes is necessary to stabilize mature snoRNA.
机译:最近已经描述了一类新型的小核仁RNA(snoRNA),它们在蛋白质编码基因的内含子中编码,并起源于其前体分子的加工。非洲爪蟾的L1核糖体蛋白(r蛋白)基因及其人类同源物包含两个snoRNA,即U16和U18。已经显示这些snoRNA通过内切核酸酶切从它们的内含子前体中切除,并且它们的加工是剪接的替代方法。 snoRNA编码区内部的两个序列已被鉴定为加工保守框C和D必不可少的。竞争实验表明,这些序列与可与前mRNA和成熟的U16 snoRNA结合的扩散因子相互作用。发现与已知的其他snoRNA的C和D盒上形成的复合物缔合的原纤维蛋白与成熟的U16 RNA及其前体分子缔合。这一事实表明,在所有加工步骤中,前mRNA上形成的复合物仍与U16结合。我们还表明,在C和D盒上形成的复合物对于稳定成熟的snoRNA是必需的。

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