首页> 美国卫生研究院文献>Biochemical Journal >Effects of quin2 acetoxymethyl ester on H2O2-induced DNA single-strand breakage in mammalian cells: H2O2-concentration-dependent inhibition of damage and additive protective effect with the hydroxyl-radical scavenger dimethyl sulphoxide.
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Effects of quin2 acetoxymethyl ester on H2O2-induced DNA single-strand breakage in mammalian cells: H2O2-concentration-dependent inhibition of damage and additive protective effect with the hydroxyl-radical scavenger dimethyl sulphoxide.

机译:quin2乙酰氧基甲基酯对H2O2诱导的哺乳动物细胞DNA单链断裂的影响:羟基自由基清除剂二甲基亚砜对H2O2浓度的损伤抑制作用和附加保护作用。

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摘要

The cell-membrane-permeable calcium probe quin2 acetoxymethyl ester (quin2 AM) was ineffective, in comparison with o-phenanthroline, in protecting cells against H2O2-induced DNA single-strand breakage at H2O2 concentrations of about, and higher than, 0.5 mM. The present study shows that quin2 actually potentiated intracellular DNA damage at high H2O2 concentrations. H2O2-induced DNA breakage appeared within 5 min after exposure, and quin2 affected the induction of DNA breaks at both 0 degree C and 37 degrees C. Aurintricarboxylic acid, an endonuclease inhibitor, or a decrease in extracellular Ca2+, did not reduce DNA damage. These facts strongly suggest that the breaks were not produced by a Ca(2+)-dependent nuclease. We showed previously that, in the presence of Fe3+ and H2O2, quin2 strongly potentiated the formation of oxidizing species as well as plasmid DNA breakage, and, as could be expected for a transition-metal chelator, quin2 inhibited the Fenton reaction when Cu2+ was tested instead of Fe3+ [Sandström, Granström and Marklund (1994) Free Radicals Biol. Med. 16, 177-185]. In the present work with cultured cells, titration with quin2 AM showed that, despite the fact that Cu2+ has a three-to-four-orders-of-magnitude higher affinity for quin2 than has Fe3+, both inhibition and potentiation of H2O2-induced DNA damage occurred at quin2 AM concentrations of about 100 nM. Thus inhibition appeared not to involve Cu2+. The combination of quin2 AM and dimethyl sulphoxide (DMSO) gave an additive effect on H2O2-induced DNA damage compared with the effect of quin2 AM or DMSO alone, whereas the combination of o-phenanthroline and DMSO gave about the same effect as o-phenanthroline alone. In conclusion, our results do not support a role for Ca2+ in the inhibiting effect of quin2 on H2O2-induced DNA damage. Instead, it is likely that inhibition and potentiation by quin2 involves interaction with Fe ions.
机译:与邻菲咯啉相比,可透过细胞膜的钙探针quin2乙酰氧基甲基酯(quin2 AM)在保护细胞免受H2O2诱导的H2O2诱导的DNA单链断裂(约大于或等于0.5 mM)时无效。本研究表明,quin2实际上在高H2O2浓度下增强了细胞内DNA的损伤。 H2O2诱导的DNA断裂在暴露后5分钟内出现,而quin2在0摄氏度和37摄氏度下都影响DNA断裂的诱导。核酸内切酶抑制剂金三羧酸或细胞外Ca2 +的减少并未减少DNA损伤。这些事实强烈表明,中断不是由Ca(2+)依赖的核酸酶产生的。我们以前曾证明,在存在Fe3 +和H2O2的情况下,quin2强烈增强了氧化物质的形成以及质粒DNA的断裂,并且,正如过渡金属螯合剂所预期的那样,当测试Cu2 +时,quin2抑制了Fenton反应。而不是Fe3 + [Sandström,Granström和Marklund(1994)Free Radicals Biol。中16,177-185]。在目前的培养细胞研究中,用quin2 AM滴定表明,尽管Cu2 +对quin2的亲和力比Fe3 +高三到四个数量级,但H2O2诱导的DNA的抑制和增强在quin2 AM浓度约为100 nM时发生损坏。因此抑制似乎不涉及Cu 2+。与单独的quin2 AM或DMSO相比,quin2 AM和二甲基亚砜(DMSO)的组合对H2O2诱导的DNA损伤具有加和作用,而邻菲咯啉和DMSO的组合与邻菲咯啉具有相同的作用单独。总之,我们的结果不支持Ca2 +在quin2对H2O2诱导的DNA损伤的抑制作用中的作用。相反,quin2的抑制和增强可能涉及与Fe离子的相互作用。

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