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Surviving an Oxygen Atmosphere: DNA Damage and Repair

机译:幸存氧气气氛:DNA损伤和修复

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As a consequence of life's coexistence with the reactive diradical O_2, cells have adapted biochemical defense mechanisms for protection from oxidative damage. Nevertheless, it is estimated that each cell's genomic DNA undergoes thousands of oxidative hits per day, and even more under conditions of stress. Unrepaired oxidative damage to DNA leads to mutations that underlie cancer, aging and neurological disease. Recent studies have helped unravel the oxidation chemistry of the DNA bases, and the myriad biochemical responses of DNA processing enzymes that battle against mutation. On the positive side, oxidative damage to nucleobases may accelerate the evolution of genomes and could have played a role in the ancestry of redox-active nucleoside cofactors as well as the adaptation of early life to changes in the environment.
机译:由于生命与反应性Diradical O_2的共存,细胞具有适应的生物化学防御机制,以防止氧化损伤。然而,估计每个细胞的基因组DNA每天经历数千个氧化命中,并且在应力条件下甚至更多。未填充的DNA氧化损伤导致癌症,老化和神经疾病的突变导致突变。最近的研究有助于解开DNA碱基的氧化化学,以及DNA加工酶的无数生化反应,与突变进行战斗。在阳性方面,对核碱基的氧化损伤可以加速基因组的演变,并且可以在氧化还原活性核苷辅因子的血液中发挥作用以及对环境变化的早期生命的改编。

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