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首页> 外文期刊>Stem Cells >Methylation status of imprinting centers for H19/IGF2 and SNURF/SNRPN in primate embryonic stem cells.
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Methylation status of imprinting centers for H19/IGF2 and SNURF/SNRPN in primate embryonic stem cells.

机译:灵长类胚胎干细胞中H19 / IGF2和SNURF / SNRPN印迹中心的甲基化状态。

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Embryonic stem cells (ESCs) hold promise for cell and tissue replacement approaches to treating human diseases based on their capacity to differentiate into a wide variety of somatic cells and tissues. However, long-term in vitro culture and manipulations of ESCs may adversely affect their epigenetic integrity, including imprinting. We have recently reported aberrant biallelic expression of IGF2 and H19 in several rhesus monkey ESC lines, whereas SNRPN and NDN were normally imprinted and expressed predominantly from the paternal allele. The dysregulation of IGF2 and H19 that is associated with tumorigenesis in humans may result from improper maintenance of allele-specific methylation patterns at an imprinting center (IC) upstream of H19. To test this possibility, we performed methylation analysis of several monkey ESC lines by genomic bisulfite sequencing. We investigated methylation profiles of CpG islands within the IGF2/H19 IC harboring the CTCF-6 binding site. In addition, the methylation status ofthe IC within the promoter/exon 1 of SNURF/SNRPN known as the Prader-Willi syndrome IC was examined. Our results demonstrate abnormal hypermethylation within the IGF2/H19 IC in all analyzed ESC lines, whereas the SNURF/SNRPN IC was differentially methylated, consistent with monoallelic expression.
机译:胚胎干细胞(ESC)基于其分化为多种体细胞和组织的能力,有望用于细胞和组织替代治疗人类疾病的方法。但是,ESC的长期体外培养和操作可能会对它们的表观遗传完整性(包括印迹)产生不利影响。我们最近报道了几种恒河猴ESC细胞系中IGF2和H19的异常双等位基因表达,而SNRPN和NDN通常是由父系等位基因印记和表达的。与人类肿瘤发生有关的IGF2和H19失调可能是由于在H19上游的印迹中心(IC)维持等位基因特异性甲基化模式的不当造成的。为了测试这种可能性,我们通过基因组亚硫酸氢盐测序对几种猴子ESC品系进行了甲基化分析。我们调查了包含CTCF-6结合位点的IGF2 / H19 IC中CpG岛的甲基化谱。此外,还检查了SNURF / SNRPN的启动子/外显子1中IC的甲基化状态,称为Prader-Willi综合征IC。我们的结果表明,在所有分析的ESC品系中,IGF2 / H19 IC中的异常甲基化异常,而SNURF / SNRPN IC被差异化甲基化,与单等位基因表达一致。

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