首页> 外文期刊>Molecular cancer research: MCR >Mutations in the SOD2 promoter reveal a molecular basis for an activating protein 2-dependent dysregulation of manganese superoxide dismutase expression in cancer cells.
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Mutations in the SOD2 promoter reveal a molecular basis for an activating protein 2-dependent dysregulation of manganese superoxide dismutase expression in cancer cells.

机译:SOD2启动子中的突变揭示了癌细胞中锰超氧化物歧化酶表达的活化蛋白2依赖性失调的分子基础。

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A primary antioxidant enzyme in mitochondria, manganese superoxide dismutase (MnSOD), plays a critical role in the survival of aerobic life. It is well documented that, compared with normal cell counterparts, MnSOD level is decreased in neoplastic transformed cells but is increased in aggressive cancers. However, the underlying mechanism for the observed dysregulation of MnSOD in cancer is unknown. We have identified previously a unique set of mutations located in the promoter region of the SOD2 gene in several types of cancer cells. We found that a C-to-T transition at -102 and an insertion of A at -93 down-regulate MnSOD transcription by interrupting the formation of a single-stranded loop that is essential for a high level of promoter activity. Here, we show that the additional downstream mutation, C-to-G transversion at -38, creates a binding site for the transcription factors specificity protein 1 (Sp1) and activating protein 2 (AP-2). The promoter function is regulated by the relative levels of Sp1 and AP-2. In cytokine-induced expression of the SOD2 gene, Sp1 cooperates with a transcriptional complex containing nuclear factor-kappaB and nucleophosmin. The presence of AP-2 attenuates this induction. Our results suggest that the high level of MnSOD observed in aggressive cancer cells may be due, in part, to the absence of AP-2 transcriptional repression.
机译:线粒体中的主要抗氧化酶,锰超氧化物歧化酶(MnSOD),在有氧生命的生存中起着至关重要的作用。有充分的证据表明,与正常细胞相比,MnSOD水平在肿瘤转化细胞中降低,而在侵袭性癌症中升高。但是,尚不清楚在癌症中观察到的MnSOD失调的潜在机制。我们以前已经确定了几种类型的癌细胞中位于SOD2基因启动子区域的一组独特的突变。我们发现-102的C到T过渡和-93的A插入通过中断单链环的形成而下调了MnSOD转录,这对于高水平的启动子活性至关重要。在这里,我们显示了额外的下游突变,-38处的C-G转换,为转录因子特异性蛋白1(Sp1)和激活蛋白2(AP-2)创建了结合位点。启动子功能由Sp1和AP-2的相对水平调节。在细胞因子诱导的SOD2基因表达中,Sp1与包含核因子-κB和核磷蛋白的转录复合体协同作用。 AP-2的存在会减弱这种诱导作用。我们的结果表明,在侵袭性癌细胞中观察到的高水平的MnSOD可能部分归因于AP-2转录抑制的缺乏。

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