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Alteration of 28S rRNA 2′-O-methylation by etoposide correlates with decreased SMN phosphorylation and reduced Drosha levels

机译:依托泊苷改变28S rRNA 2'-O-甲基化与SMN磷酸化降低和Drosha水平降低相关

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The most common types of modification in human rRNA are pseudouridylation and 2′-Oribose methylation. These modifications are performed by small nucleolar ribonucleoproteins (snoRNPs) which contain a guide RNA (snoRNA) that base pairs at specific sites within the rRNA to direct the modification. rRNA modifications can vary, generating ribosome heterogeneity. One possible method that can be used to regulate rRNA modifications is by controlling snoRNP activity. RNA fragments derived from some small Cajal body-specific RNAs (scaRNA 2, 9 and 17) may influence snoRNP activity. Most scaRNAs accumulate in the Cajal body – a subnuclear domain – where they participate in the biogenesis of small nuclear RNPs, but scaRNA 2, 9 and 17 generate nucleolus-enriched fragments of unclear function, and we hypothesize that these fragments form regulatory RNPs that impact snoRNP activity and modulate rRNA modifications. Our previous work has shown that SMN, Drosha and various stresses, including etoposide treatment, may alter regulatory RNP formation. Here we demonstrate that etoposide treatment decreases the phosphorylation of SMN, reduces Drosha levels and increases the 2′-O-methylation of two sites within 28S rRNA. These findings further support a role for SMN and Drosha in regulating rRNA modification, possibly by affecting snoRNP or regulatory RNP activity.
机译:人rRNA中最常见的修饰类型是伪尿苷酸化和2'-核糖甲基化。这些修饰是通过小的核仁核糖核蛋白(snoRNPs)进行的,其中包含一个指导RNA(snoRNA),该指导RNA在rRNA内的特定位点碱基配对以指导修饰。 rRNA修饰可能会发生变化,从而产生核糖体异质性。可以用来调节rRNA修饰的一种可能方法是控制snoRNP活性。源自一些小的Cajal体特异性RNA(scaRNA 2、9和17)的RNA片段可能会影响snoRNP活性。大多数scaRNA聚集在Cajal体(亚核域)中,在那里它们参与小核RNP的生物发生,但是scaRNA 2、9和17会生成功能不清楚的核仁富集片段,我们推测这些片段会形成影响其的调节性RNP。 snoRNP活性并调节rRNA修饰。我们以前的工作表明,SMN,Drosha和各种压力(包括依托泊苷治疗)可能会改变调节性RNP的形成。在这里,我们证明依托泊苷治疗降低SMN的磷酸化,降低Drosha水平,并增加28S rRNA中两个位点的2'-O-甲基化。这些发现进一步支持SMN和Drosha在调节rRNA修饰中的作用,可能是通过影响snoRNP或调节性RNP活性。

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