Modulation of DNA breakage induced via the Fenton reaction

M.L. Muiras, P.U. Giacomoni, P. Tachon
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引用次数: 24

Abstract

The conversion of the covalently closed circular double-stranded supercoiled DNA (pBR322) to a relaxed circle was used to investigate DNA nicking induced by Fe2+ and H2O2. In our experimental conditions of ionic strength (150 mM NaCl), pH = 7 and temperature (37°C), the dose-response curve for the ferrous iron mediated H2O2 dependent DNA nicking is peculiar. For a fixed concentration of ferrous iron (2 μM), the concentration of H2O2 producing a maximum extent of DNA nicking was about 10–30 μM. The DNA single-strand breakage decreased with an increase of H2O2 concentration. We have investigated the effects of several factors such as the nature of the buffer, ionic strength, temperature and pH. Buffer components leading to the autoxidation of ferrous iron to ferric iron (phosphate) or to the scavenging of reactive oxygen species (Tris) greatly alter the dose-response curve. The H2O2 concentrations required for producing the maximum extent of DNA single-strand breaks at 4°C and 56°C were respectively 30 μM and 3 μM. At pH = 10, the pattern of the dose-response curve was totally different.

The data showed that the peculiar dose-response curve for the ferrous iron mediated H2O2 dependent DNA nicking greatly depended on the experimental conditions.

Fenton反应诱导DNA断裂的调控
利用共价闭合双链超螺旋DNA (pBR322)向松弛环的转化,研究了Fe2+和H2O2诱导的DNA缺口。在离子强度(150 mM NaCl)、pH = 7、温度(37℃)的实验条件下,亚铁介导的H2O2依赖性DNA刻痕的剂量响应曲线是特殊的。在固定浓度的亚铁(2 μM)下,H2O2在10 ~ 30 μM左右产生最大的DNA刻痕。DNA单链断裂随着H2O2浓度的增加而减少。我们研究了缓冲液的性质、离子强度、温度和ph等因素的影响。导致亚铁自氧化为三铁(磷酸盐)或清除活性氧(Tris)的缓冲液成分极大地改变了剂量-响应曲线。在4°C和56°C条件下,产生DNA单链断裂最大程度所需的H2O2浓度分别为30 μM和3 μM。在pH = 10时,剂量-响应曲线的模式完全不同。结果表明,亚铁介导的H2O2依赖性DNA刻痕的特殊剂量-响应曲线在很大程度上取决于实验条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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