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Characterization of the imprinting signature of mouse embryo fibroblasts by RNA deep sequencing

机译:RNA深度测序表征小鼠胚胎成纤维细胞的印迹特征

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Mouse embryo fibroblasts (MEFs) are convenient sources for biochemical studies when cell number in mouse embryos is limiting. To derive the imprinting signature of MEFs and potentially detect novel imprinted genes we performed strand- and allele-specific RNA deep sequencing. We used sequenom allelotyping in embryo and adult organs to verify parental allele-specific expression. Thirty-two known ubiquitously imprinted genes displayed correct parental allele-specific transcripts in MEFs. Our analysis did not reveal any novel imprinted genes, but detected extended parental allele-specific transcripts in several known imprinted domains: maternal allele-specific transcripts downstream of Grb10 and downstream of Meg3, Rtl1as and Rian in the Dlk1-Dio3 cluster, an imprinted domain implicated in development and pluripotency. We detected paternal allele-specific transcripts downstream of Nespas, Peg3, Peg12 and Snurf/Snrpn. These imprinted transcript extensions were not unique to MEFs, but were also present in other somatic cells. The 5' end points of the imprinted transcript extensions did not carry opposing chromatin marks or parental allele-specific DNA methylation, suggesting that their parental allele-specific transcription is under the control of the extended imprinted genes. Based on the imprinting signature of MEFs, these cells provide valid models for understanding the biochemical aspects of genomic imprinting.
机译:当小鼠胚胎中的细胞数量受到限制时,小鼠胚胎成纤维细胞(MEF)是生化研究的便捷来源。为了获得MEF的印迹特征并潜在地检测新的印迹基因,我们进行了链和等位基因特异性RNA深度测序。我们在胚胎和成年器官中使用sequenom等位基因分型,以验证父母等位基因特异性表达。 32个已知的普遍印记基因在MEF中显示正确的父母等位基因特异性转录本。我们的分析没有发现任何新的印迹基因,但是在几个已知的印迹域中检测到了扩展的父母等位基因特异性转录本:Dlk1-Dio3簇中Grb10下游和Meg3,Rtl1as和Rian下游的母体等位基因特异性转录本。与发展和多能性有关。我们检测到Nespas,Peg3,Peg12和Snurf / Snrpn下游的父本等位基因特异性转录本。这些印迹的转录延伸不是MEF所独有的,但也存在于其他体细胞中。印记的转录延伸的5'端点没有携带相反的染色质标记或父母等位基因特异性的DNA甲基化,这表明它们的父母等位基因特异性转录受扩展的印迹基因的控制。基于MEF的印迹特征,这些细胞为理解基因组印迹的生化方面提供了有效的模型。

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