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首页> 外文期刊>Stem Cells >Differentiation of mouse embryonic stem cells after RNA interference-mediated silencing of OCT4 and Nanog.
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Differentiation of mouse embryonic stem cells after RNA interference-mediated silencing of OCT4 and Nanog.

机译:RNA干扰介导的OCT4和Nanog沉默后小鼠胚胎干细胞的分化。

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RNA interference (RNAi) holds great promise as a tool to study the basic biology of stem cells or to direct differentiation in a specific manner. Barriers to achieving efficient and specific gene silencing in RNAi experiments include limitations in transfection efficiency and in the efficacy and specificity of RNAi silencing effectors. Here, we combine methods of efficient lipid-mediated delivery with chemically modified RNAi compounds to silence genes related to pluripotency, in order to direct differentiation of mouse embryonic stem cells. After transfection of embryonic stem cells with OCT4- or Nanog-targeted RNAi compounds, levels of OCT4 or Nanog transcript and protein were reduced accordingly. Reduction in OCT4 expression correlated with induction of trophectoderm genes Cdx2, Hand1, and PL-1, with formation of cells with trophoblast giant cell phenotype after 6 days. Reduction in Nanog expression correlated with induction of extraembryonic endoderm genes GATA4, GATA6, and laminin B1, with subsequent generation of groups of cells with parietal endoderm phenotype. Our results indicate that transient inhibition of OCT4 or Nanog by RNAi compounds is sufficient to induce differentiation toward extraembryonic lineages, which supports the model that these transcription factors function in a dose-dependent manner to influence cell fate.
机译:RNA干扰(RNAi)作为研究干细胞的基本生物学或以特定方式指导分化的工具,具有广阔的前景。在RNAi实验中实现有效和特异性基因沉默的障碍包括转染效率以及RNAi沉默效应子的功效和特异性的限制。在这里,我们结合有效的脂质介导的传递与化学修饰的RNAi化合物的方法,以沉默与多能性相关的基因,以指导小鼠胚胎干细胞的分化。用OCT4或Nanog靶向的RNAi化合物转染胚胎干细胞后,OCT4或Nanog转录本和蛋白质的水平相应降低。 OCT4表达的减少与滋养外胚层基因Cdx2,Hand1和PL-1的诱导相关,并与6天后形成具有滋养层巨细胞表型的细胞有关。 Nanog表达的减少与胚外内胚层基因GATA4,GATA6和层粘连蛋白B1的诱导有关,并伴随着具有顶内胚层表型的细胞群的产生。我们的结果表明,RNAi化合物对OCT4或Nanog的瞬时抑制足以诱导向胚胎外谱系的分化,这支持了这些转录因子以剂量依赖性的方式影响细胞命运的模型。

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