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首页> 外文期刊>Radiation Research: Official Organ of the Radiation Research Society >Epigenetic gene silencing is a novel mechanism involved in delayed manifestation of radiation-induced genomic instability in mammalian cells
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Epigenetic gene silencing is a novel mechanism involved in delayed manifestation of radiation-induced genomic instability in mammalian cells

机译:表观遗传基因沉默是一种新型机制,参与哺乳动物细胞中辐射诱导的基因组不稳定的延迟表现

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We examined mechanisms involved in delayed mutagenesis in CHO-LacZeo cells harboring the fusion gene between the bacterial LacZ and the Zeocin-resistance genes. After X irradiation, Zeocin-resistant primary colonies were isolated, and the primary clones were subjected to the secondary colony formation in the absence of Zeocin. We found that the surviving primary clones showed a significantly higher delayed mutation frequency compared with those derived from nonirradiated CHO-LacZeo cells. The mutation spectrum of the LacZ gene was analyzed by the LacZ gene-specific PCR. We found that more than 90% of the spontaneous and direct mutants were PCR-product negative, indicating that deletion of the LacZ gene was a predominant change in these mutants. While deletion of the LacZ gene was also observed in delayed mutants, we found that more than 20% of delayed mutants had a PCR product similar to that of the parental CHO-LacZeo cells. These PCR product-positive mutants spontaneously reverted to LacZ-positive (LacZ+) cells, and all of these mutants became LacZ-positive after 5-azacytidine treatment. These results indicate that epigenetic gene silencing, in addition to elevated recombination, is involved in delayed mutagenesis, which is a novel mechanism underlying delayed manifestations of radiation-induced genomic instability.
机译:我们检查了在细菌LacZ和Zeocin抗性基因之间具有融合基因的CHO-LacZeo细胞中延迟诱变的机制。 X射线照射后,分离出耐Zeocin的原代菌落,并在不存在Zeocin的情况下对原克隆进行次要菌落形成。我们发现,与未辐照的CHO-LacZeo细胞衍生的克隆相比,存活的初级克隆显示出显着更高的延迟突变频率。通过LacZ基因特异性PCR分析了LacZ基因的突变谱。我们发现超过90%的自发和直接突变体均为PCR产物阴性,这表明LacZ基因的缺失是这些突变体的主要变化。虽然在延迟突变体中也观察到了LacZ基因的缺失,但我们发现超过20%的延迟突变体具有与亲代CHO-LacZeo细胞相似的PCR产物。这些PCR产物阳性突变体自发地恢复为LacZ阳性(LacZ +)细胞,并且所有这些突变体在5-氮杂胞苷处理后均变为LacZ阳性。这些结果表明,表观遗传基因沉默,除了提高的重组,还参与了延迟诱变,这是一种潜在的辐射诱导基因组不稳定性延迟表现的新机制。

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