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首页> 外文期刊>Nucleic Acids Research >Gene silencing induced by oxidative DNA base damage: association with local decrease of histone H4 acetylation in the promoter region
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Gene silencing induced by oxidative DNA base damage: association with local decrease of histone H4 acetylation in the promoter region

机译:氧化性DNA碱基损伤诱导的基因沉默:与启动子区域中组蛋白H4乙酰化的局部降低有关

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摘要

Oxidized DNA bases, particularly 7,8-dihydro-8-oxoguanine (8-oxoG), are endogenously generated in cells, being a cause of carcinogenic mutations and possibly interfering with gene expression. We found that expression of an oxidatively damaged plasmid DNA is impaired after delivery into human host cells not only due to decreased retention in the transfected cells, but also due to selective silencing of the damaged reporter gene. To test whether the gene silencing was associated with a specific change of the chromatin structure, we determined the levels of histone modifications related to transcriptional activation (acetylated histones H3 and H4) or repression (methylated K9 and K27 of the histone H3, and histone H1) in the promoter region and in the downstream transcribed DNA. Acetylation of histone H4 was found to be specifically decreased by 25% in the proximal promoter region of the damaged gene, while minor quantitative changes in other tested chromatin components could not be proven as significant. Treatment with an inhibitor of histone deacetylases, trichostatin A, partially restored expression of the damaged DNA, suggesting a causal connection between the changes of histone acetylation and persistent gene repression. Based on these findings, we propose that silencing of the oxidatively damaged DNA may occur in a chromatin-mediated mechanism.
机译:氧化的DNA碱基,尤其是7,8-二氢-8-氧鸟嘌呤(8-oxoG)是在细胞内源性产生的,是致癌突变的原因,并可能干扰基因表达。我们发现,氧化损伤的质粒DNA的表达在递送到人宿主细胞后受到损害,这不仅是由于转染细胞中保留的减少,而且还因为损伤的报道基因的选择性沉默。为了测试基因沉默是否与染色质结构的特定变化有关,我们确定了与转录激活(乙酰化的组蛋白H3和H4)或阻抑(组蛋白H3的甲基化K9和K27和组蛋白H1)相关的组蛋白修饰水平)在启动子区域和下游转录的DNA中。发现在受损基因的近端启动子区域中,组蛋白H4的乙酰化被特异性降低了25%,而其他测试染色质组分的微小定量变化则无法证明是显着的。用组蛋白脱乙酰基酶抑制剂曲古抑菌素A处理可以部分恢复受损DNA的表达,这表明组蛋白乙酰化的变化与基因的持久抑制之间存在因果关系。基于这些发现,我们建议氧化染色的DNA沉默可能发生在染色质介导的机制中。

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