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Epigenetic silencing of Oct4 by a complex containing SUV39H1 and Oct4 pseudogene IncRNA

机译:通过包含SUV39H1和Oct4假基因IncRNA的复合体对Oct4进行表观遗传沉默

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摘要

Pseudogene-derived, long non-coding RNAs (lncRNAs) act as epigenetic regulators of gene expression. Here we present a panel of new mouse Oct4 pseudogenes and demonstrate that the X-linked Oct4 pseudogene Oct4P4 critically impacts mouse embryonic stem cells (mESCs) self-renewal. Sense Oct4P4 transcription produces a spliced, nuclear-restricted lncRNA that is efficiently upregulated during mESC differentiation. Oct4P4 lncRNA forms a complex with the SUV39H1 HMTase to direct the imposition of H3K9me3 and HP1 alpha to the promoter of the ancestral Oct4 gene, located on chromosome 17, leading to gene silencing and reduced mESC self-renewal. Targeting Oct4P4 expression in primary mouse embryonic fibroblasts causes the re-acquisition of self-renewing features of mESC. We demonstrate that Oct4P4 lncRNA plays an important role in inducing and maintaining silencing of the ancestral Oct4 gene in differentiating mESCs. Our data introduces a sense pseudogene-lncRNA-based mechanism of epigenetic gene regulation that controls the cross-talk between pseudogenes and their ancestral genes.
机译:假基因衍生的长非编码RNA(lncRNA)充当基因表达的表观遗传调控因子。在这里,我们介绍一组新的小鼠Oct4假基因,并证明X链接的Oct4假基因Oct4P4严重影响小鼠胚胎干细胞(mESCs)的自我更新。正义Oct4P4转录产生一个剪接的,核限制的lncRNA,在mESC分化过程中被有效上调。 Oct4P4 lncRNA与SUV39H1 HMTase形成复合体,以将H3K9me3和HP1α的插入引导至位于染色体17上的祖先Oct4基因的启动子,从而导致基因沉默和mESC自我更新减少。靶向原代小鼠胚胎成纤维细胞中的Oct4P4表达可导致重新获得mESC的自我更新特征。我们证明,Oct4P4 lncRNA在诱导和维持祖先Oct4基因在分化mESCs的沉默中起重要作用。我们的数据介绍了基于表观遗传基因调控的有义假基因-lncRNA机制,可控制假基因与其祖先基因之间的串扰。

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