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SOD1 Is Essential for the Viability of DT40 Cells and Nuclear SOD1 Functions as a Guardian of Genomic DNA

机译:SOD1对于DT40细胞的生存至关重要而核SOD1作为基因组DNA的守护者发挥作用

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摘要

Reactive oxygen species (ROSs) are produced during normal cellular metabolism, particularly by respiration in mitochondria, and these ROSs are considered to cause oxidative damage to macromolecules, including DNA. In our previous paper, we found no indication that depletion of mitochondrial superoxide dismutase, SOD2, resulted in an increase in DNA damage. In this paper, we examined SOD1, which is distributed in the cytoplasm, nucleus, and mitochondrial intermembrane space. We generated conditional SOD1 knockout cells from chicken DT40 cells and analyzed their phenotypes. The results revealed that SOD1 was essential for viability and that depletion of SOD1, especially nuclear SOD1, increased sister chromatid exchange (SCE) frequency, suggesting that superoxide is generated in or near the nucleus and that nuclear SOD1 functions as a guardian of the genome. Furthermore, we found that ascorbic acid could offset the defects caused by SOD1 depletion, including cell lethality and increases in SCE frequency and apurinic/apyrimidinic sites.
机译:活性氧(ROSs)是在正常细胞代谢过程中产生的,尤其是通过线粒体中的呼吸作用产生的,这些ROS被认为会对包括DNA在内的大分子造成氧化损伤。在我们以前的论文中,我们没有发现线粒体超氧化物歧化酶SOD2耗尽导致DNA损伤增加的迹象。在本文中,我们研究了SOD1,它分布在细胞质,细胞核和线粒体膜间空间中。我们从鸡DT40细胞中产生了条件性SOD1敲除细胞,并分析了它们的表型。结果表明,SOD1对生存力至关重要,并且SOD1(特别是核SOD1)的耗竭会增加姐妹染色单体交换(SCE)频率,表明超氧化物在核内或附近产生,并且核SOD1充当基因组的守护者。此外,我们发现抗坏血酸可以弥补由SOD1耗竭引起的缺陷,包括细胞致死性和SCE频率以及嘌呤/嘧啶位的增加。

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