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Deep-transcriptome and ribonome sequencing redefines the molecular networks of pluripotency and the extracellular space in human embryonic stem cells

机译:深度转录组和核糖体测序重新定义了人类胚胎干细胞中多能性和细胞外空间的分子网络

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摘要

Recent RNA-sequencing studies have shown remarkable complexity in the mammalian transcriptome. The ultimate impact of this complexity on the predicted proteomic output is less well defined. We have undertaken strand-specific RNA sequencing of multiple cellular RNA fractions (>20 Gb) to uncover the transcriptional complexity of human embryonic stem cells (hESCs). We have shown that human embryonic stem (ES) cells display a high degree of transcriptional diversity, with more than half of active genes generating RNAs that differ from conventional gene models. We found evidence that more than 1000 genes express long 5′ and/or extended 3′UTRs, which was confirmed by “virtual Northern” analysis. Exhaustive sequencing of the membrane-polysome and cytosolic/untranslated fractions of hESCs was used to identify RNAs encoding peptides destined for secretion and the extracellular space and to demonstrate preferential selection of transcription complexity for translation in vitro. The impact of this newly defined complexity on known gene-centric network models such as the Plurinet and the cell surface signaling machinery in human ES cells revealed a significant expansion of known transcript isoforms at play, many predicting possible alternative functions based on sequence alterations within key functional domains.
机译:最近的RNA测序研究表明,哺乳动物转录组具有显着的复杂性。这种复杂性对预测的蛋白质组输出的最终影响尚不清楚。我们已经对多个细胞RNA片段(> 20 Gb)进行了链特异性RNA测序,以揭示人类胚胎干细胞(hESCs)的转录复杂性。我们已经表明,人类胚胎干(ES)细胞表现出高度的转录多样性,超过一半的活性基因产生不同于常规基因模型的RNA。我们发现了超过1000个基因表达长5'和/或扩展3'UTR的证据,这通过“虚拟Northern”分析得到了证实。 hESCs的膜多核糖体和胞质/非翻译部分的穷举测序被用来鉴定RNA编码的肽,这些肽预定用于分泌和胞外空间,并证明了优先选择转录复杂性进行体外翻译。这种新定义的复杂性对已知的以基因为中心的网络模型(例如Plurinet和人类ES细胞中的细胞表面信号传导机制)的影响揭示了已知转录本同工型的显着扩展,许多人根据关键基因内的序列改变预测了可能的替代功能功能域。

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