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Non-polyadenylated transcription in embryonic stem cells reveals novel non-coding RNA related to pluripotency and differentiation

机译:胚胎干细胞中的非聚腺苷酸转录揭示了与多能性和分化有关的新型非编码RNA

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摘要

The transcriptional landscape in embryonic stem cells (ESCs) and during ESC differentiation has received considerable attention, albeit mostly confined to the polyadenylated fraction of RNA, whereas the non-polyadenylated (NPA) fraction remained largely unexplored. Notwithstanding, the NPA RNA super-family has every potential to participate in the regulation of pluripotency and stem cell fate. We conducted a comprehensive analysis of NPA RNA in ESCs using a combination of whole-genome tiling arrays and deep sequencing technologies. In addition to identifying previously characterized and new non-coding RNA members, we describe a group of novel conserved RNAs (snacRNAs: small NPA conserved), some of which are differentially expressed between ESC and neuronal progenitor cells, providing the first evidence of a novel group of potentially functional NPA RNA involved in the regulation of pluripotency and stem cell fate. We further show that minor spliceosomal small nuclear RNAs, which are NPA, are almostcompletely absent in ESCs and are upregulated in differentiation. Finally, we show differential processing of the minor intron of the polycomb group gene Eed. Our data suggest that NPA RNA, both known and novel, play important roles in ESCs.
机译:胚胎干细胞(ESCs)和ESC分化过程中的转录景观受到了相当大的关注,尽管它主要限于RNA的聚腺苷酸化部分,而未聚腺苷酸化(NPA)部分仍未开发。尽管如此,NPA RNA超家族具有参与多能性和干细胞命运调节的所有潜力。我们结合了全基因组平铺阵列和深度测序技术,对ESC中的NPA RNA进行了全面分析。除了确定以前表征的和新的非编码RNA成员外,我们还描述了一组新的保守RNA(snacRNA:小NPA保守),其中一些在ESC和神经元祖细胞之间差异表达,为发现新的RNA提供了先证。一组潜在功能的NPA RNA,涉及多能性和干细胞命运的调节。我们进一步显示,较小的剪接小核RNA是NPA,在ESC中几乎完全不存在,并且在分化中上调。最后,我们显示了多梳子基因Eed的次要内含子的差异加工。我们的数据表明,已知和新颖的NPA RNA在ESC中均起重要作用。

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