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Effect of oxidative DNA damage in promoter elements on transcription factor binding.

机译:启动子元件中的氧化DNA损伤对转录因子结合的影响。

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Reactive oxygen species produced by endogenous metabolic activity and exposure to a multitude of exogenous agents impact cells in a variety of ways. The DNA base damage 8-oxodeoxyguanosine (8-oxodG) is a prominent indicator of oxidative stress and has been well-characterized as a premutagenic lesion in mammalian cells and putative initiator of the carcinogenic process. Commensurate with the recent interest in epigenetic pathways of cancer causation we investigated how 8-oxodG alters the interaction between cis elements located on gene promoters and sequence-specific DNA binding proteins associated with these promoters. Consensus binding sequences for the transcription factors AP-1, NF-kappaB and Sp1 were modified site-specifically at guanine residues and electrophoretic mobility shift assays were performed to assess DNA-protein interactions. Our results indicate that whereas a single 8-oxodG was sufficient to inhibit transcription factor binding to AP-1 and Sp1 sequences it had no effect on binding to NF-kappaB, regardless of its position. We conclude from these data that minor alterations in base composition at a crucial position within some, but not all, promoter elements have the ability to disrupt transcription factor binding. The lack of inhibition by damaged NF-kappaB sequences suggests that DNA-protein contact sites may not be as determinative for stable p50 binding to this promoter as other, as yet undefined, structural parameters.
机译:由内源性代谢活性和暴露于多种外源性物质产生的活性氧以多种方式影响细胞。 DNA碱基损伤的8-氧代脱氧鸟苷(8-oxodG)是氧化应激的重要指标,并且已被很好地表征为哺乳动物细胞中的致突变前病变和可能的致癌过程。与癌症致病性表观遗传途径的最新兴趣相对应,我们研究了8-oxodG如何改变基因启动子上的顺式元件与与这些启动子相关的序列特异性DNA结合蛋白之间的相互作用。转录因子AP-1,NF-kappaB和Sp1的共识结合序列在鸟嘌呤残基位点特异性修饰,并进行电泳迁移率迁移分析以评估DNA-蛋白质相互作用。我们的结果表明,尽管单个8-oxodG足以抑制转录因子与AP-1和Sp1序列的结合,但无论其位置如何,对结合NF-kappaB都没有影响。从这些数据中我们得出结论,在一些(但不是全部)启动子元件的关键位置上,碱基组成的微小变化具有破坏转录因子结合的能力。缺少受损的NF-κB序列的抑制作用表明,DNA-蛋白质接触位点可能无法像其他尚未确定的结构参数那样确定与该启动子的稳定p50结合。

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