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首页> 外文期刊>Metallomics >Photo-induced DNA scission by Cu(II)-meso-tetrakis(n-N-methylpyridiniumyl)porphyrins (n = 2, 3, 4) and their binding modes to supercoiled DNA
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Photo-induced DNA scission by Cu(II)-meso-tetrakis(n-N-methylpyridiniumyl)porphyrins (n = 2, 3, 4) and their binding modes to supercoiled DNA

机译:Cu(II)-间-四-(n-N-甲基吡啶基)卟啉(n = 2、3、4)光诱导的DNA断裂及其与超螺旋DNA的结合方式

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摘要

The photo-induced cleavage of pGEM-7zf-NIS super-coiled DNA by Cu(II)-meso-tetrakis(n-N-methylpyridiniumyl)porphyrins (n = 2, 3, 4 referred to as o-, m- and p-CuTMPyP, respectively) and their binding mode were investigated in this study. m-CuTMPyP was most efficient in cleavage than o- and p-CuTMPyP isomers. Cleavage was suppressed by N2 bubbling, suggesting that the cleavage occurred by an oxidative cleavage mechanism. Sodium azide, an 1O2 quencher, and DMSO, a hydroxyl radical scavenger, inhibited cleavage, indicating that hydroxyl radicals and singlet oxygen were likely reactive species responsible for the cleavage. Reduced linear dichroism spectroscopy showed angles of o-CuTMPyP's electric transition moments, in which the periphery pyridinium ring was prevented from free rotation, of 59° and 61° with respect to the local DNA helix axis. The spectra of m- and p-CuTMPyP complexed with pGEM-7zf-NIS DNA were characterized by large signals in the Soret band, coincident with those of known intercalated porphyrins.
机译:铜(II)-间-四(nN-甲基吡啶鎓)卟啉(n = 2、3、4分别称为o-,m-和p-CuTMPyP)对pGEM-7zf-NIS超螺旋DNA的光诱导裂解,分别)和他们的结合模式进行了这项研究。 m-CuTMPyP的裂解比o-CuTM和p-CuTMPyP异构体最有效。 N 2 起泡抑制了切割,表明该切割是通过氧化切割机制发生的。叠氮化钠(一种 1 O 2 淬灭剂)和DMSO(一种羟基自由基清除剂)抑制了裂解,表明羟基和单线态氧很可能是造成裂解的反应性物种。还原线性二色性光谱显示,o-CuTMPyP的电跃迁角相对于局部DNA螺旋轴成59°和61°的角度,在该角处阻止了吡啶鎓环的周围自由旋转。与pGEM-7zf-NIS DNA复合的m-和p-CuTMPyP的光谱的特征是Soret带中的大信号,与已知的插入卟啉的信号重合。

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  • 来源
    《Metallomics》 |2012年第5期|p.417-421|共5页
  • 作者单位

    1. Department of Chemistry,Yeungnam University, Gyeongsan City, Republic of Korea;

    1. Department of Chemistry,Yeungnam University, Gyeongsan City, Republic of Korea;

    1. Department of Chemistry,Yeungnam University, Gyeongsan City, Republic of Korea;

    1. Department of Chemistry and Green-Nano Materials Research Center,Kyungpook National University, Daegu City, Republic of Korea;

    1. Department of Chemistry,Yeungnam University, Gyeongsan City, Republic of Korea;

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