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源自真核生物核糖体RNA的小非编码RNA

Small Non-Coding RNAs Derived From Eukaryotic Ribosomal RNA.

作者信息

Lambert Marine, Benmoussa Abderrahim, Provost Patrick

机构信息

CHU de Québec Research Center/CHUL Pavilion, 2705 Blvd Laurier, Quebec City, QC, G1V 4G2 and Department of Microbiology, Infectious Diseases and Immunology, Faculty of Medicine, Université Laval, Quebec City, QC G1V 0A6, Canada.

出版信息

Noncoding RNA. 2019 Feb 4;5(1):16. doi: 10.3390/ncrna5010016.

Abstract

The advent of RNA-sequencing (RNA-Seq) technologies has markedly improved our knowledge and expanded the compendium of small non-coding RNAs, most of which derive from the processing of longer RNA precursors. In this review article, we will present a nonexhaustive list of referenced small non-coding RNAs (ncRNAs) derived from eukaryotic ribosomal RNA (rRNA), called rRNA fragments (rRFs). We will focus on the rRFs that are experimentally verified, and discuss their origin, length, structure, biogenesis, association with known regulatory proteins, and potential role(s) as regulator of gene expression. This relatively new class of ncRNAs remained poorly investigated and underappreciated until recently, due mainly to the a priori exclusion of rRNA sequences-because of their overabundance-from RNA-Seq datasets. The situation surrounding rRFs resembles that of microRNAs (miRNAs), which used to be readily discarded from further analyses, for more than five decades, because no one could believe that RNA of such a short length could bear biological significance. As if we had not yet learned our lesson not to restrain our investigative, scientific mind from challenging widely accepted beliefs or dogmas, and from looking for the hidden treasures in the most unexpected places.

摘要

RNA测序(RNA-Seq)技术的出现显著增进了我们的认识,并扩展了小型非编码RNA的种类,其中大多数来源于更长RNA前体的加工过程。在这篇综述文章中,我们将列出一份非详尽的源自真核生物核糖体RNA(rRNA)的小型非编码RNA(ncRNA)清单,这些ncRNA被称为rRNA片段(rRF)。我们将聚焦于经过实验验证的rRF,并讨论它们的起源、长度、结构、生物合成、与已知调控蛋白的关联以及作为基因表达调节因子的潜在作用。直到最近,这类相对较新的ncRNA仍未得到充分研究和重视,主要原因是由于rRNA序列在RNA-Seq数据集中数量过多,人们在分析时事先将其排除。rRF的情况与微小RNA(miRNA)类似,在五十多年的时间里,miRNA常常被直接排除在进一步分析之外,因为没有人相信如此短的RNA能够具有生物学意义。仿佛我们尚未吸取教训,不应限制我们探索科学的思维,不敢挑战广泛接受的观念或教条,也不敢在最意想不到的地方寻找隐藏的宝藏。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a7f1/6468398/0702376da895/ncrna-05-00016-g001.jpg

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