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C/D-box snoRNAs form methylating and non-methylating ribonucleoprotein complexes: Old dogs show new tricks

机译:C / D-box snoRNAs形成甲基化和非甲基化的核糖核蛋白复合物:老狗表现出新的把戏

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摘要

C/D box snoRNAs (SNORDs) are an abundantly expressed class of short, non-coding RNAs that have been long known to perform 2′-O-methylation of rRNAs. However, approximately half of human SNORDs have no predictable rRNA targets, and numerous SNORDs have been associated with diseases that show no defects in rRNAs, among them Prader-Willi syndrome, Duplication 15q syndrome and cancer. This apparent discrepancy has been addressed by recent studies showing that SNORDs can act to regulate pre-mRNA alternative splicing, mRNA abundance, activate enzymes, and be processed into shorter ncRNAs resembling miRNAs and piRNAs. Furthermore, recent biochemical studies have shown that a given SNORD can form both methylating and non-methylating ribonucleoprotein complexes, providing an indication of the likely physical basis for such diverse new functions. Thus, SNORDs are more structurally and functionally diverse than previously thought, and their role in gene expression is under-appreciated. The action of SNORDs in non-methylating complexes can be substituted with oligonucleotides, allowing devising therapies for diseases like Prader-Willi syndrome.
机译:C / D盒snoRNA(SNORD)是一类高度表达的短非编码RNA,众所周知,它们执行rRNA的2'-O-甲基化。然而,大约一半的人类SNORD没有可预测的rRNA靶标,并且许多SNORD与没有rRNA缺陷的疾病相关,其中包括Prader-Willi综合征,Duplicate 15q综合征和癌症。最近的研究已经解决了这种明显的差异,该研究表明SNORD可以调节mRNA前的选择性剪接,mRNA丰度,激活酶,并被加工成类似miRNA和piRNA的较短ncRNA。此外,最近的生化研究表明,给定的SNORD可以同时形成甲基化和非甲基化的核糖核蛋白复合物,从而为这种多样化的新功能提供了可能的物理基础。因此,SNORDs在结构和功能上比以前认为的要多样化,并且它们在基因表达中的作用未被充分认识。 SNORD在非甲基化复合物中的作用可以被寡核苷酸取代,从而可以设计出针对诸如Prader-Willi综合征等疾病的疗法。

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