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首页> 外文期刊>Reproduction: The official journal of the Society for the Study of Fertility >Effects of TET1 knockdown on gene expression and DNA methylation in porcine induced pluripotent stem cells
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Effects of TET1 knockdown on gene expression and DNA methylation in porcine induced pluripotent stem cells

机译:TET1基因敲低对猪诱导性多能干细胞基因表达和DNA甲基化的影响

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TET1 is implicated in maintaining the pluripotency of embryonic stem cells. However, its precise effects on induced pluripotent stem cells (iPSCs), and particularly on porcine iPSCs (piPSCs), are not well defined. To investigate the role of TET1 in the pluripotency and differentiation of piPSCs, piPSCs were induced from porcine embryonic fibroblasts by overexpression of POU5F1 ( OCT4 ), SOX2 , KLF4 , and MYC ( C-MYC ). siRNAs targeting to TET1 were used to transiently knockdown the expression of TET1 in piPSCs. Morphological abnormalities and loss of the undifferentiated state of piPSCs were observed in the piPSCs after the downregulation of TET1 . The effects of TET1 knockdown on the expression of key stem cell factors and differentiation markers were analyzed to gain insights into the molecular mechanisms underlying the phenomenon. The results revealed that knockdown of TET1 resulted in the downregulated expression of pluripotency-related genes, such as LEFTY2 , KLF2 , and SOX2 , and the upregulated expression of differentiation-related genes including PITX2 , HAND1 , GATA6 , and LEF1 . However, POU5F1 , M YC , KLF4 , and NANOG were actually not downregulated. Further analysis showed that the methylation levels of the promoters for POU5F1 and M YC increased significantly after TET1 downregulation, whereas there were no obvious changes in the promoters of SOX2 , KLF4 , and NANOG . The methylation of the whole genome increased, while hydroxymethylation slightly declined. Taken together, these results suggest that TET1 may play important roles in the self-renewal of piPSCs and the maintenance of their characteristics by regulating the expression of genes and the DNA methylation.
机译:TET1与维持胚胎干细胞的多能性有关。但是,它对诱导多能干细胞(iPSC),特别是对猪iPSC(piPSC)的确切作用尚不明确。为了研究TET1在piPSC的多能性和分化中的作用,通过过表达POU5F1(OCT4),SOX2,KLF4和MYC(C-MYC)从猪胚胎成纤维细胞中诱导出piPSC。靶向TET1的siRNA用于瞬时敲低piPSC中TET1的表达。 TET1下调后,在piPSCs中观察到了piPSCs的形态学异常和未分化状态的丧失。分析了TET1基因敲低对关键干细胞因子和分化标志物表达的影响,以深入了解这一现象的分子机制。结果显示,敲低TET1导致多能性相关基因(如LEFTY2,KLF2和SOX2)的表达下调,以及分化相关基因(包括PITX2,HAND1,GATA6和LEF1)的表达上调。但是,POU5F1,M YC,KLF4和NANOG实际上并未下调。进一步的分析表明,TET1下调后,POU5F1和M YC的启动子的甲基化水平显着增加,而SOX2,KLF4和NANOG的启动子没有明显变化。整个基因组的甲基化增加,而羟甲基化略有下降。综上,这些结果表明,TET1可能通过调节基因表达和DNA甲基化在piPSC的自我更新及其特征维持中发挥重要作用。

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