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Integrative transcriptome sequencing identifies trans-splicing events with important roles in human embryonic stem cell pluripotency

机译:整合转录组测序鉴定在人类胚胎干细胞多能性中具有重要作用的转拼事件

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Trans-splicing is a post-transcriptional event that joins exons from separate pre-mRNAs. Detection of trans-splicing is usually severely hampered by experimental artifacts and genetic rearrangements. Here, we develop a new computational pipeline, TSscan, which integrates different types of high-throughput long-/short-read transcriptome sequencing of different human embryonic stem cell (hESC) lines to effectively minimize false positives while detecting trans-splicing. Combining TSscan screening with multiple experimental validation steps revealed that most chimeric RNA products were platformdependent experimental artifacts of RNA sequencing. We successfully identified and confirmed four trans-spliced RNAs, including the first reported trans-spliced large intergenic noncoding RNA ("tsRMST"). We showed that these trans-spliced RNAs were all highly expressed in human pluripotent stem cells and differentially expressed during hESC differentiation. Our results further indicated that tsRMST can contribute to pluripotency maintenance of hESCs by suppressing lineagespecific gene expression through the recruitment of NANOG and the PRC2 complex factor, SUZ12. Taken together, our findings provide important insights into the role of trans-splicing in pluripotency maintenance of hESCs and help to facilitate future studies into trans-splicing, opening up this important but understudied class of post-transcriptional events for comprehensive characterization.
机译:反式剪接是转录后的事件,它连接来自单独的前mRNA的外显子。通常,实验伪像和遗传重排严重阻碍了转拼的检测。在这里,我们开发了一条新的计算管道TSscan,该扫描管道集成了不同类型的不同人类胚胎干细胞(hESC)系的高通量长/短读转录组测序,以在检测转拼时有效地减少假阳性。将TSscan筛选与多个实验验证步骤结合起来发现,大多数嵌合RNA产物是平台依赖的RNA测序实验伪像。我们成功地鉴定并确认了四个反式剪接的RNA,包括第一个报道的反式剪接的大型基因间非编码RNA(“ tsRMST”)。我们表明,这些反式剪接的RNA都在人类多能干细胞中高表达,并在hESC分化过程中差异表达。我们的结果进一步表明,tsRMST可以通过募集NANOG和PRC2复杂因子SUZ12抑制谱系特异性基因表达来促进hESC的多能性维持。综上所述,我们的发现为反剪接在hESC的多能性维持中的作用提供了重要的见解,并有助于促进对反剪接的未来研究,从而开辟了这一重要但尚未深入研究的转录后事件类别,以进行全面表征。

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