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人类细胞中氧化DNA碱基损伤产物的修复

Repair of products of oxidative DNA base damage in human cells.

作者信息

Jaruga P, Dizdaroglu M

机构信息

Chemical Science and Technology Laboratory, National Institute of Standards and Technology, Gaitersburg, MD 20899, USA.

出版信息

Nucleic Acids Res. 1996 Apr 15;24(8):1389-94. doi: 10.1093/nar/24.8.1389.

Abstract

Oxidative DNA damage is the most frequent type of damage encountered by aerobic cells and may play an important role in biological processes such as mutagenesis, carcinogenesis and aging in humans. Oxidative damage generates a myriad of modifications in DNA. We investigated the cellular repair of DNA base damage products in DNA of cultured human lymphoblast cells, which were exposed to oxidative stress by H2O2. This DNA-damaging agent is known to cause base modifications in genomic DNA of mammalian cells [Dizdaroglu, M., Nackerdien, Z., Chao, B.-C., Gajewski, E. and Rao, G. (1991) Arch. Biochem. Biophys. 285, 388-390]. Following treatment with H2O2, the culture medium was freed from H2O2 and cells were incubated for time periods ranging from 10 min to 6 h. DNA was isolated from control cells, hydrogen peroxide-treated cells and cells incubated after H2O2 exposure. DNA samples were analyzed by gas chromatography/isotope-dilution mass spectrometry. Eleven modified bases were identified and quantified. The results showed a significant formation of these DNA base products upon H2O2-treatment of cells. Subsequent incubation of cells caused a time-dependent excision of these products from cellular DNA. The cell viability did not change significantly by various treatments. There were distinct differences between the kinetics of excision of individual products. The observed excisions were attributed to DNA repair in cells. The rate of repair of purine lesions was slower than that of pyrimidine lesions. Most of the identified products are known to possess various premutagenic properties. The results of this work may contribute to the understanding of the cellular repair of oxidative DNA damage in human and other mammalian cells.

摘要

氧化DNA损伤是需氧细胞中最常见的损伤类型,可能在诸如人类诱变、致癌和衰老等生物学过程中发挥重要作用。氧化损伤会在DNA中产生大量修饰。我们研究了培养的人淋巴母细胞DNA中DNA碱基损伤产物的细胞修复情况,这些细胞通过过氧化氢暴露于氧化应激。已知这种DNA损伤剂会导致哺乳动物细胞基因组DNA中的碱基修饰[迪兹达罗格卢,M.,纳克迪恩,Z.,赵,B.-C.,加耶夫斯基,E.和拉奥,G.(1991年)《生物化学与生物物理学报》285卷,第388 - 390页]。用过氧化氢处理后,将培养基中的过氧化氢去除,然后将细胞孵育10分钟至6小时。从对照细胞、过氧化氢处理的细胞以及过氧化氢暴露后孵育的细胞中分离DNA。通过气相色谱/同位素稀释质谱法分析DNA样本。鉴定并定量了11种修饰碱基。结果表明,细胞用过氧化氢处理后,这些DNA碱基产物大量形成。随后细胞孵育导致这些产物从细胞DNA中随时间切除。不同处理对细胞活力没有显著影响。各个产物的切除动力学存在明显差异。观察到的切除归因于细胞中的DNA修复。嘌呤损伤的修复速度比嘧啶损伤慢。大多数鉴定出的产物已知具有各种前诱变特性。这项工作的结果可能有助于理解人类和其他哺乳动物细胞中氧化DNA损伤的细胞修复。

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