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Stability of single copy transgene expression in CHOK1 cells is affected by histone modifications but not by DNA methylation

机译:单拷贝转基因在CHOK1细胞中表达的稳定性受组蛋白修饰影响,但不受DNA甲基化影响

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Intraclonal heterogeneity of genetically modified mammalian cells has been observed as a phenomenon that has a strong impact on overall transgene expression levels and that limits the predictability of transgene expression in genetically modified cells, thereby hampering single cell based screening approaches. The underlying mechanism(s) leading to this variance are poorly understood. To study the dynamics and mechanisms of heterogeneity of early stage silencing we analyzed the expression in more than 100 independent clones of CHOK1 cells that harbour genetically stable integrates of single copy reporter cassettes driven by EF1 alpha and CMV promoters. Single cell analysis showed intraclonal variability with heterogeneity in expression in genetically uniform populations. DNA methylation is a well known mechanism responsible for silencing of gene expression. Interestingly, loss of expression was not associated with DNA methylation of the CMV promoter. However, in most of the clonal populations expression could be increased by inhibitors of the histone deacetylases (HDACi) suggesting that heterogeneity of transgene expression is crucially governed by histone modifications. Further, to determine if the epigenetic status of transgene expression is governed by the chromosomal integration locus we targeted heterologous expression cassettes into two chromosomal sites using recombinase mediated cassette exchange (RMCE). The expression status of a particular clone was faithfully re-established when the same promoter used. In this way the problem of early stage cell clone instability can be bypassed. However, upon introduction of an unrelated promoter methylation-independent silencing was observed. Together, these results suggest that histone modifications are the relevant mechanisms by which epigenetic modulation of transgene expression cassettes is governed in the early phase of clone generation. (C) 2014 Elsevier B.V. All rights reserved.
机译:已经观察到转基因哺乳动物细胞的克隆内异质性是对总体转基因表达水平有强烈影响并且限制了转基因细胞中转基因表达的可预测性的现象,从而妨碍了基于单细胞的筛选方法。导致这种差异的潜在机制了解甚少。为了研究早期沉默的异质性动力学和机制,我们分析了CHOK1细胞的100多个独立克隆中的表达,这些克隆具有由EF1 alpha和CMV启动子驱动的单拷贝报告基因盒的遗传稳定整合。单细胞分析显示,在遗传上均一的群体中,克隆内变异性具有异质性。 DNA甲基化是导致基因表达沉默的众所周知的机制。有趣的是,表达的丧失与CMV启动子的DNA甲基化无关。但是,在大多数克隆种群中,组蛋白脱乙酰基酶(HDACi)的抑制剂可增加表达,这表明转基因表达的异质性受组蛋白修饰的关键控制。此外,为了确定转基因表达的表观遗传状态是否受染色体整合基因座的控制,我们使用重组酶介导的盒交换(RMCE)将异源表达盒靶向两个染色体位点。当使用相同的启动子时,将忠实地重新建立特定克隆的表达状态。这样,可以绕过早期细胞克隆不稳定性的问题。然而,在引入无关的启动子后,观察到甲基化非依赖性沉默。总之,这些结果表明,组蛋白修饰是在克隆产生的早期阶段控制转基因表达盒的表观遗传调控的相关机制。 (C)2014 Elsevier B.V.保留所有权利。

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