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The role of Nrf2 in increased reactive oxygen species and DNA damage in prostate tumorigenesis

机译:NRF2在前列腺瘤瘤中的反应性氧物种和DNA损伤增加中的作用

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摘要

The impact of oxidative stress in human cancer has been extensively studied. It is accepted that elevated reactive oxygen species (ROS) promote mutagenic DNA damage. Even with an extensive armament of cellular antioxidants and detoxification enzymes, alterations to DNA occur that initiate cellular transformation. Erythroid 2p45 (NF-E2)-related factor 2 (Nrf2) is a basic-region leucine zipper transcription factor that mediates the expression of key protective enzymes through the antioxidant-response element (ARE). By analysing 10 human prostate cancer microarray data sets, we have determined that Nrf2 and members of the glutathione-S-transferase (GST) mu family are extensively decreased in human prostate cancer. Using the TRAMP transgene and Rb and Nrf2 knockout murine models, we demonstrated that the loss of Nrf2 initiates a detrimental cascade of reduced GST expression, elevated ROS levels and ultimately DNA damage associated with tumorigenesis. Based on overwhelming data from clinical samples and the current functional analysis, we propose that the disruption of the Nrf2-antioxidant axis leads to increased oxidative stress and DNA damage in the initiation of cellular transformation in the prostate gland.
机译:广泛研究了人类癌症中氧化应激的影响。接受升高的活性氧(ROS)促进诱变DNA损伤。即使具有细胞抗氧化剂和排毒酶的广泛武力,也会发生对DNA的改变,以引发细胞转化。红细胞2P45(NF-E2) - 相关因子2(NRF2)是碱性亮氨酸拉链转录因子,介导通过抗氧化剂 - 反应元素(是)的关键保护酶的表达。通过分析10个人前列腺癌微阵列数据集,我们已经确定了NRF2和谷胱甘肽-S-转移酶(GST)MU系列的成员在人类前列腺癌中广泛降低。使用流浪转基因和RB和NRF2敲除鼠模型,我们证明NRF2的丧失引发了一种有害的GST表达,升高的ROS水平和最终与肿瘤发生相关的DNA损伤。基于来自临床样本的压倒性数据和目前的功能分析,我们提出了NRF2-抗氧化轴的破坏导致氧化应激和前列腺细胞转化中的氧化应激和DNA损伤增加。

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