首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >Radiation-induced genomic instability is associated with DNA methylation changes in cultured human keratinocytes.
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Radiation-induced genomic instability is associated with DNA methylation changes in cultured human keratinocytes.

机译:辐射诱导的基因组不稳定性与培养的人类角质形成细胞中DNA甲基化的变化有关。

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摘要

The mechanism by which radiation-induced genomic instability is initiated, propagated and effected is currently under intense scrutiny. We have investigated the potential role of altered genomic methylation patterns in the cellular response to irradiation and have found evidence for widespread dysregulation of CpG methylation persisting up to 20 population doublings post-irradiation. Similar effects are seen with cells treated with medium from irradiated cells (the 'bystander effect') rather than subjected to direct irradiation. Using an arbitrarily primed methylation sensitive PCR screening method we have demonstrated that irradiation causes reproducible alterations in the methylation profile of a human keratinocyte cell line, HPV-G, and have further characterised one of these sequences as being a member of a retrotransposon element derived sequence family on chromosome 7; MLT1A. Multiple changes were also detected in the screen, which indicate that although the response of cells is predominantly hypermethylation, specific hypomethylation occurs as well. Sequence specific changes are also reported in the methylation of the pericentromeric SAT2 satellite sequence. This is the first demonstration that irradiation results in the induction of heritable methylation changes in mammalian cells, and provides a link between the various non-radiological instigators of genomic instability, the perpetuation of the unstable state and several of its manifestations.
机译:辐射引起的基因组不稳定性的起始,传播和影响机制目前受到严格审查。我们已经研究了改变基因组甲基化模式在细胞对辐射的反应中的潜在作用,并发现了CpG甲基化广泛失调的证据,辐照后CpG甲基化持续存在多达20倍。用来自辐照细胞的培养基处理过的细胞(“旁观者效应”)而不是直接辐照,会看到类似的效果。使用任意引发的甲基化敏感性PCR筛选方法,我们证明了辐照会导致人角质形成细胞系HPV-G的甲基化特性发生可再现的改变,并且进一步将这些序列之一定性为反转录转座子元件衍生序列的成员7号染色体上的家庭; MLT1A。在屏幕上还检测到多个变化,这表明尽管细胞的反应主要是甲基化过高,但也会发生特定的甲基化不足。还报道了着丝粒SAT2卫星序列的甲基化中的序列特异性变化。这是第一个证明,辐射导致哺乳动物细胞中可遗传的甲基化变化的诱导,并提供了基因组不稳定的各种非放射学诱因,不稳定状态的延续及其几种表现之间的联系。

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