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源自小核仁RNA的小RNA。

Small RNAs derived from snoRNAs.

作者信息

Taft Ryan J, Glazov Evgeny A, Lassmann Timo, Hayashizaki Yoshihide, Carninci Piero, Mattick John S

机构信息

Australian Research Council Special Research Centre for Functional and Applied Genomics, Institute for Molecular Bioscience, The University of Queensland, St. Lucia, QLD 4072, Australia.

出版信息

RNA. 2009 Jul;15(7):1233-40. doi: 10.1261/rna.1528909. Epub 2009 May 27.

Abstract

Small nucleolar RNAs (snoRNAs) guide RNA modification and are localized in nucleoli and Cajal bodies in eukaryotic cells. Components of the RNA silencing pathway associate with these structures, and two recent reports have revealed that a human and a protozoan snoRNA can be processed into miRNA-like RNAs. Here we show that small RNAs with evolutionary conservation of size and position are derived from the vast majority of snoRNA loci in animals (human, mouse, chicken, fruit fly), Arabidopsis, and fission yeast. In animals, sno-derived RNAs (sdRNAs) from H/ACA snoRNAs are predominantly 20-24 nucleotides (nt) in length and originate from the 3' end. Those derived from C/D snoRNAs show a bimodal size distribution at approximately 17-19 nt and >27 nt and predominantly originate from the 5' end. SdRNAs are associated with AGO7 in Arabidopsis and Ago1 in fission yeast with characteristic 5' nucleotide biases and show altered expression patterns in fly loquacious and Dicer-2 and mouse Dicer1 and Dgcr8 mutants. These findings indicate that there is interplay between the RNA silencing and snoRNA-mediated RNA processing systems, and that sdRNAs comprise a novel and ancient class of small RNAs in eukaryotes.

摘要

小核仁RNA(snoRNA)指导RNA修饰,定位于真核细胞的核仁与卡哈尔体中。RNA沉默途径的组分与这些结构相关联,最近的两项报告显示,一种人类snoRNA和一种原生动物snoRNA可被加工成类似miRNA的RNA。在此我们表明,在大小和位置上具有进化保守性的小RNA源自动物(人类、小鼠、鸡、果蝇)、拟南芥和裂殖酵母中绝大多数的snoRNA基因座。在动物中,来自H/ACA snoRNA的sno衍生RNA(sdRNA)长度主要为20 - 24个核苷酸(nt),起源于3'端。来自C/D snoRNA的sdRNA呈现出双峰大小分布,分别约为17 - 19 nt和>27 nt,且主要起源于5'端。sdRNA在拟南芥中与AGO7以及在裂殖酵母中与Ago1相关联,具有特征性的5'核苷酸偏好,并在果蝇的loquacious和Dicer - 蛋白2以及小鼠的Dicer1和Dgcr8突变体中表现出改变的表达模式。这些发现表明,RNA沉默和snoRNA介导的RNA加工系统之间存在相互作用,并且sdRNA构成了真核生物中一类新型的古老小RNA。

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