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Role of DNA damage and epigenetic DNA methylation changes in radiation-induced genomic instability and bystander effects in germline in vivo.

机译:DNA损伤和表观遗传的DNA甲基化变化在体内辐射诱导的基因组不稳定性和旁观者效应中的作用。

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摘要

Ionizing radiation (IR) is a curative treatment for many human malignancies, an important diagnostic modality, and a pivotal preparative regimen for bone marrow transplantation. On the other hand, IR is a potent damaging agent that can affect a variety of processes in directly exposed cells, in their descendents, and in neighboring un-irradiated naive 'bystander' cells. Accumulation of DNA damage caused by IR in conjunction with disrupted cellular regulation processes can lead to genome instability in the germline, and therefore to transgenerational genome instability in offspring of exposed males. The exact mechanisms of IR-induced genome instability in directly exposed and in naive bystander germ cells remain obscure, yet accumulating evidence points to the role of DNA damage and DNA methylation changes in genome instability development. In the current study, we used a well-established murine model to define the role of DNA methylation, DNA damage, as well as two important germline regulators of DNA methylation, Brother of the Regulator of Imprinted Sites (BORIS) and CCCTC binding factor (CTCF), in IR and bystander responses of the male germline. Here we report that irradiation leads to a significant accumulation of DNA damage in the exposed and bystander testis tissue, and to altered DNA methylation and dysregulated BORIS expression in the exposed testis tissue. The possible molecular mechanisms and biological consequences of the observed changes are discussed.
机译:电离辐射(IR)是许多人类恶性肿瘤的治疗方法,是一种重要的诊断方法,也是骨髓移植的关键性制备方案。另一方面,IR是一种强力破坏剂,可以影响直接暴露的细胞,其后代以及邻近的未经辐照的幼稚“旁观者”细胞中的各种过程。由IR引起的DNA损伤的积累以及细胞调节过程的破坏会导致种系中的基因组不稳定,从而导致裸露的雄性后代的跨代基因组不稳定。在直接暴露的天真的旁观者生殖细胞中,IR诱导的基因组不稳定性的确切机制仍不清楚,但是越来越多的证据表明DNA损伤和DNA甲基化变化在基因组不稳定性发展中的作用。在当前的研究中,我们使用了完善的鼠模型来定义DNA甲基化,DNA损伤的作用,以及两个重要的DNA甲基化种系调节剂,即印记位点调节剂(BORIS)和CCCTC结合因子( CTCF),以及雄性种系的IR和旁观者反应。在这里我们报道辐射导致裸露的和旁观者睾丸组织中DNA损伤的大量积累,以及裸露的睾丸组织中DNA甲基化改变和BORIS表达失调。讨论了观察到的变化的可能的分子机制和生物学后果。

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