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全基因组鉴定含 2',3'-环状磷酸的短 RNA 及其在衰老中的调控作用。

Genome-wide identification of short 2',3'-cyclic phosphate-containing RNAs and their regulation in aging.

机构信息

Computational Medicine Center, Sidney Kimmel Medical College, Thomas Jefferson University, Philadelphia, Pennsylvania, United States of America.

出版信息

PLoS Genet. 2019 Nov 13;15(11):e1008469. doi: 10.1371/journal.pgen.1008469. eCollection 2019 Nov.

Abstract

RNA molecules generated by ribonuclease cleavage sometimes harbor a 2',3'-cyclic phosphate (cP) at their 3'-ends. Those cP-containing RNAs (cP-RNAs) form a hidden layer of transcriptome because standard RNA-seq cannot capture them as a result of cP's prevention of an adapter ligation reaction. Here we provide genome-wide analyses of short cP-RNA transcriptome across multiple mouse tissues. Using cP-RNA-seq that can exclusively sequence cP-RNAs, we identified numerous novel cP-RNA species which are mainly derived from cytoplasmic tRNAs, mRNAs, and rRNAs. Determination of the processing sites of substrate RNAs for cP-RNA generation revealed highly-specific RNA cleavage events between cytidine and adenosine in cP-RNA biogenesis. cP-RNAs were not evenly derived from the overall region of substrate RNAs but rather from specific sites, implying that cP-RNAs are not from random degradation but are produced through a regulated biogenesis pathway. The identified cP-RNAs were abundantly accumulated in mouse tissues, and the expression levels of cP-RNAs showed age-dependent reduction. These analyses of cP-RNA transcriptome unravel a novel, abundant class of non-coding RNAs whose expression could have physiological roles.

摘要

核糖核酸内切酶切割产生的 RNA 分子有时在其 3' 末端带有 2',3'-环磷酸 (cP)。由于 cP 阻止衔接子连接反应,那些含有 cP 的 RNA(cP-RNA)形成了转录组的隐藏层。在这里,我们对多个小鼠组织中的短 cP-RNA 转录组进行了全基因组分析。使用专门能够对 cP-RNAs 进行测序的 cP-RNA-seq,我们鉴定了许多新的 cP-RNA 种类,它们主要来源于细胞质 tRNA、mRNA 和 rRNA。对 cP-RNA 生成的底物 RNA 的加工位点的测定揭示了 cP-RNA 生物发生中在 cP-RNA 生物发生中在胞嘧啶和腺苷之间发生的高度特异性 RNA 切割事件。cP-RNAs 不是均匀地来源于底物 RNA 的整个区域,而是来源于特定的位点,这表明 cP-RNAs 不是来自随机降解,而是通过受调控的生物发生途径产生的。鉴定出的 cP-RNAs 在小鼠组织中大量积累,并且 cP-RNAs 的表达水平随年龄的增长而降低。对 cP-RNA 转录组的这些分析揭示了一类新的、丰富的非编码 RNA,其表达可能具有生理作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7074/6853296/d9d1789da348/pgen.1008469.g001.jpg

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