首页> 外文期刊>Biochemical and Biophysical Research Communications >Characterization and functional analysis of a novel double-guide C/D box snoRNA in the fission yeast.
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Characterization and functional analysis of a novel double-guide C/D box snoRNA in the fission yeast.

机译:裂殖酵母中新型双向导C / D盒snoRNA的表征和功能分析。

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摘要

Ribose methylation of eukaryotic rRNA is directed by box C/D small nucleolar RNAs (snoRNAs), which pinpoint the nucleotide to be methylated in specific position within the rRNA sequence. Here, we report the identification of a novel double-guide C/D box snoRNA termed snR88 that directs methylation of two previously undetermined sites in 25S rRNA from the fission yeast. Knockout of the predicted TATA box of the snR88 gene resulted in the complete blocking of its expression, showing that snR88 is an independently transcribed gene and dispensable for yeast viability. The depletion of snR88 abolished 25S rRNA methylation at U2304 and U2497 simultaneously. Interestingly, an unusual pause of reverse transcription at U2495 was observed, which implies an unknown structure of 25S rRNA related to ribose methylation at U2497 in the fission yeast.
机译:真核rRNA的核糖甲基化由盒C / D小核仁RNA(snoRNA)指导,该RNA精确定位要被甲基化的核苷酸在rRNA序列内的特定位置。在这里,我们报告鉴定为新型的双引导C / D盒snoRNA,称为snR88,它指导裂变酵母中25S rRNA中两个先前未确定位点的甲基化。敲除snR88基因的预期TATA框会导致其表达的完全阻断,表明snR88是一个独立转录的基因,对于酵母的生存力是不重要的。 snR88的消耗同时消除了U2304和U2497处的25S rRNA甲基化。有趣的是,在U2495处观察到反转录异常停止,这暗示了裂变酵母中与U2497处的核糖甲基化有关的25S rRNA结构未知。

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