首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Activation of the Imprinted Dlk1-Dio3 Region Correlates with Pluripotency Levels of Mouse Stem Cells
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Activation of the Imprinted Dlk1-Dio3 Region Correlates with Pluripotency Levels of Mouse Stem Cells

机译:印记的Dlk1-Dio3区的激活与小鼠干细胞的多能性水平相关。

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摘要

Low reprogramming efficiency and reduced pluripotency have been the two major obstacles in induced pluripotent stem (iPS) cell research. An effective and quick method to assess the pluripotency levels of iPS cells at early stages would significantly increase the success rate of iPS cell generation and promote its applications. We have identified a conserved imprinted region of the mouse genome, the Dlk1-Dio3 region, which was activated in fully pluripotent mouse stem cells but repressed in partially pluripotent cells. The degree of activation of this region was positively correlated with the pluripotency levels of stem cells. A mammalian conserved cluster of microRNAs encoded by this region exhibited significant expression differences between full and partial pluripotent stem cells. Several microRNAs from this cluster potentially target components of the polycomb repressive complex 2 (PRC2) and may form a feedback regulatory loop resulting in the expression of all genes and non-coding RNAs encoded by this region in full pluripotent stem cells. No other genomic regions were found to exhibit such clear expression changes between cell lines with different pluripotency levels; therefore, the Dlk1-Dio3 region may serve as a marker to identify fully pluripotent iPS or embryonic stem cells from partial pluripotent cells. These findings also provide a step forward toward understanding the operating mechanisms during reprogramming to produce iPS cells and can potentially promote the application of iPS cells in regenerative medicine and cancer therapy.
机译:低重编程效率和降低的多能性已经成为诱导多能干(iPS)细胞研究的两个主要障碍。一种有效,快捷的评估iPS细胞早期多能性水平的方法将显着提高iPS细胞生成的成功率并促进其应用。我们已经确定了小鼠基因组的一个保守的印记区域Dlk1-Dio3区域,该区域在完全多能小鼠干细胞中被激活,但在部分多能细胞中被抑制。该区域的活化程度与干细胞的多能性水平正相关。由该区域编码的哺乳动物保守的microRNA簇在全能和部分多能干细胞之间表现出明显的表达差异。来自该簇的几个微RNA可能靶向多梳抑制复合物2(PRC2)的成分,并可能形成反馈调节环,从而导致该基因编码的所有基因和非编码RNA在全能干细胞中表达。没有发现其他基因组区域在具有不同多能性水平的细胞系之间表现出如此清晰的表达变化。因此,Dlk1-Dio3区可作为标记物,从部分多能细胞中鉴定出完全多能的iPS或胚胎干细胞。这些发现也为理解iPS细胞重编程过程中的操作机制提供了一个前进的方向,并可能促进iPS细胞在再生医学和癌症治疗中的应用。

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