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首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >Cadmium-induced changes in genomic DNA-methylation status increase aneuploidy events in a pig Robertsonian translocation model.
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Cadmium-induced changes in genomic DNA-methylation status increase aneuploidy events in a pig Robertsonian translocation model.

机译:猪罗伯逊易位模型中基因组DNA-甲基化状态增加非倍差事件的镉诱导的变化。

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Although cadmium is a well-established human carcinogen, the mechanisms by which it induces cancer are poorly understood. It is suggested that cadmium-mediated carcinogenesis may include the modulation of gene expression and signal-transduction pathways, interference with antioxidant enzymes, inhibition of DNA repair and DNA methylation, and induction of apoptosis. Nevertheless, no predominant mechanism playing a role in metal-induced carcinogenesis has been reported. In the present study, we used a pig Robertsonian translocation model, which is a cross between a wild boar and domestic pig resulting in Robertsonian translocation (37,XX,der15;17 or 37,XY,der15;17), to determine the role of cadmium sulfate in the modulation of genomic DNA-methylation status and the induction of aneuploidy. We found a cadmium-mediated increase in aneuploidy within chromosome group A and C, but not within chromosome group D containing the translocated chromosome der15,17 which indicates that translocated chromosome is not more prone to chromosomal aberrations than are other chromosomes. We suggest that cadmium-induced aneuploidy (up to 5-μM concentration) may be mediated by global DNA hypermethylation as monitored with HPLC and 5-mdC immunostaining. In addition, the cyto- and genotoxic potential of cadmium was evaluated. Cadmium sulfate was able to induce apoptosis, inhibit cell-proliferative status and expression of nucleolar organizer regions (NORs), and increase oxidative DNA damage (8-oxoG content).
机译:虽然镉是一种成熟的人类致癌物,但它诱导癌症的机制很差。建议镉介导的致癌物可包括对基因表达和信号转导途径的调节,干扰抗氧化剂酶,抑制DNA修复和DNA甲基化,以及诱导细胞凋亡。然而,已经报道了在金属诱导的致癌作用中没有发挥作用的主要机制。在本研究中,我们使用了猪罗伯逊易位模型,这是野猪和家养猪之间的交叉,导致罗伯逊易位(37,xx,der15; 17或37,xy,der15; 17),以确定角色硫酸镉在基因组DNA - 甲基化状态调节中及诱导非倍差。我们发现染色体组A和C内的非倍性增加的镉介导,但不含含有漂移的染色体DER1517的染色体组D,表明脱位染色体不容易容易容易呈染色体畸变,而不是其他染色体。我们表明镉诱导的非植物倍性(最多5μm浓度)可以通过用HPLC和5-MDC免疫染色监测的全局DNA高甲基化介导。此外,评价镉的细胞和遗传毒性潜力。硫酸镉能够诱导细胞凋亡,抑制细胞增殖状态和核仁组织区(NOR)的表达,并增加氧化DNA损伤(8-氧含量)。

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