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首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >Oxygen radical-induced single-strand DNA breaks and repair of the damage in a cell-free system.
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Oxygen radical-induced single-strand DNA breaks and repair of the damage in a cell-free system.

机译:氧自由基诱导的单链DNA断裂并修复无细胞系统中的损伤。

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摘要

Ferric nitrilotriacetate (Fe(3+)-NTA) catalyzes hydrogen peroxide-derived production of hydroxyl radicals, which are known to cause DNA damage. In the present work, Fe(3+)-NTA plus hydrogen peroxide-induced single-strand DNA breaks and repair of the DNA damage were studied in vitro by monitoring DNA damage- and DNA repair-dependent conformational changes of pUC18 plasmid DNA. Single-strand DNA breaks were induced in the pUC18 DNA by Fe(3+)-NTA plus hydrogen peroxide in a dose-dependent fashion. Induction of the DNA damage was inhibited by deferoxamine mesylate (an iron chelator) and by hydroxyl radical scavengers such as dimethyl sulfoxide (DMSO), D-mannitol and ethanol indicating that the DNA damage was caused by hydroxyl radicals which were generated by reaction of Fe(3+)-NTA with hydrogen peroxide. The oxygen radical-induced single-strand DNA breaks were repaired partly (more than 50%) by incubating the damaged DNA at 37 degrees C for 3 h with a partially purified preparation of APEX nuclease (a multifunctional DNA repair enzyme), DNA polymerase beta, four deoxyribonucleoside triphosphates, T4 DNA ligase and ATP. Analyses of the partially purified preparation of APEX nuclease revealed that a 45-kDa protein as well as APEX nuclease in the preparation were involved in the repair of the single-strand DNA breaks. APEX nuclease was suggested to initiate the repair by removing 3' termini blocked by the nucleotide fragments and also by incising the 5' side of AP sites. The 45-kDa protein was suggested to be required for removal of the 5' tags such as 5'-terminal deoxyribose phosphate residues produced by the action of APEX nuclease on AP sites.
机译:次氮基三乙酸铁(Fe(3 +)-NTA)催化过氧化氢衍生的羟基自由基的产生,已知该自由基会引起DNA损伤。在目前的工作中,通过监测pUC18质粒DNA的DNA损伤和DNA修复依赖性构象变化,在体外研究了Fe(3 +)-NTA加上过氧化氢诱导的单链DNA断裂和DNA损伤的修复。 Fe(3 +)-NTA加过氧化氢以剂量依赖性方式在pUC18 DNA中诱导单链DNA断裂。 DNA损伤的诱导被甲磺酸去铁胺(铁螯合剂)和羟自由基清除剂如二甲基亚砜(DMSO),D-甘露醇和乙醇抑制,表明DNA损伤是由Fe反应生成的羟基自由基引起的(3 +)-NTA与过氧化氢。通过将部分纯化的APEX核酸酶(一种多功能DNA修复酶)制剂DNA聚合酶beta在37℃下孵育受损的DNA 3小时,可以部分修复氧自由基诱导的单链DNA断裂(超过50%)。 ,四个脱氧核糖核苷三磷酸,T4 DNA连接酶和ATP。对部分纯化的APEX核酸酶制剂的分析表明,该制剂中的45 kDa蛋白和APEX核酸酶都参与了单链DNA断裂的修复。建议通过去除核苷酸片段阻断的3'末端并切开AP位点的5'端来启动APEX核酸酶。提示需要45 kDa的蛋白质来去除5'标签,例如APEX核酸酶在AP位点上产生的5'-末端脱氧核糖磷酸残基。

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