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Dynamic DNA Methylation and Histone Modifications Contribute to Lentiviral Transgene Silencing in Murine Embryonic Carcinoma Cells

机译:动态DNA甲基化和组蛋白修饰有助于慢病毒转基因沉默在小鼠胚胎癌细胞中。

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摘要

Embryonic stem cells are subjected to a dynamic genome regulation during development. Here we report that the ectopic lentiviral transgenes are quickly silenced in murine embryonic carcinoma P19 cells. The silencing was correlated with CpG hypermethylation in the transgene promoter. Using high-resolution sodium bisulfite genome sequencing, we detected distinct DNA methylation kinetics in different proviral regions. DNase I sensitivity and chromatin immunoprecipitation assays revealed condensed chromatin structure and histone code switch during silencing. Longitudinal analysis of nonsilenced and silenced identical single-cell clones revealed that the silencing was coupled with CpG methylation in the promoter, as well as a global histone H3 deacetylation. Interestingly, the primer binding site and the packaging signal region appeared to serve as a DNA methylation initiation center which was rapidly hypermethylated regardless of transgene silencing and chromatin modifications. Analysis of cellular genes 45 to 50 kbp upstream and downstream of the integration site indicated that transcriptional activities of the flanking host genes were not affected. Genetic modifications of stem cells have great therapeutic potentials and our results picture a dynamic embryonic genome response to ectopic transgene integration that may have important implications in the future safety and efficacy modifications of stem cells.
机译:胚胎干细胞在发育过程中受到动态基因组调控。在这里,我们报告异位慢病毒转基因在小鼠胚胎癌P19细胞中迅速沉默。沉默与转基因启动子中的CpG超甲基化相关。使用高分辨率的亚硫酸氢钠基因组测序,我们在不同的前病毒区域中检测到不同的DNA甲基化动力学。 DNase I敏感性和染色质免疫沉淀测定显示沉默过程中染色质结构浓缩和组蛋白编码转换。对未沉默和沉默的相同单细胞克隆的纵向分析显示,沉默与启动子中的CpG甲基化以及整体组蛋白H3脱乙酰化相关。有趣的是,无论转基因沉默和染色质修饰如何,引物结合位点和包装信号区似乎都起着快速甲基化的DNA甲基化起始中心作用。分析整合位点上游和下游45至50kbp的细胞基因表明,侧翼宿主基因的转录活性不受影响。干细胞的遗传修饰具有巨大的治疗潜力,我们的研究结果表明,动态胚胎基因组对异位转基因整合的反应可能对干细胞的未来安全性和功效修饰产生重要影响。

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