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Studies on the Mechanism of the Photo-Induced DNA Damage in the Presence of Acridizinium Salts-Involvement of Singlet Oxygen and an Unusual Source for Hydroxyl Radicals

机译:cri啶鎓盐存在下光诱导DNA损伤的机理研究-涉及单线态氧和羟基自由基的异常来源

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摘要

Mechanistic investigations of the photoinduced DNA damage by acridizinium salts (4a-azonia-anthracene derivatives) are presented.Irradiation of 9-bromoacridizinium in the presence of defined double-and single-stranded DNA oligomers under aerobic conditions leads to both frank strand breaks and alkali-labile sites as determined by polyacrylamide gel electrophoresis (PAGE).The extent of the DNA damage increases significantly in D_2O and occurs selectively at guanosine residues.These observations reveal the formation of singlet oxygen (~1O2) as reactive species,which oxidizes the DNA bases,above all the guanine bases.Further evidence for 1O_2 formation was obtained from laser-flash spectroscopic investigations,which show intersystem crossing (Si to T,) of the excited states of the parent acridizinium and of the 9-bromo- and 9-amino-substituted derivatives.The resulting triplet state is efficiently quenched by oxygen (K_q > 10~9 s~1M~1) to yield 1O_2.Under anaerobic conditions,no significant alkali-labile lesions are observed,but frank strand breaks are induced;however,to lesser extent than under aerobic conditions.The DNA damage is suppressed in the presence of a radical scavenger,namely t-BuOH,and hydroxyl radicals are shown to be the reactive intermediates by trapping experiments with terephthalic acid.Moreover,the intercalated acridizinium molecules are not involved in the DNA damage reactions.The intercalated acridizinium salt leads to a primary PET reaction with the DNA bases;however,a fast BET transfer is proposed that regains the dye and the DNA,so that the excited intercalated dye does not contribute significantly to the overall DNA damage.
机译:提出了对nium啶鎓盐(4a-氮杂-蒽衍生物)光诱导的DNA损伤的机理研究。在有氧条件下,在确定的双链和单链DNA低聚物存在下照射9-溴ac啶鎓导致直链断裂和碱DNA损伤程度在D_2O中显着增加,并选择性地在鸟苷残基上发生。这些观察结果表明,单线态氧(〜1O2)的形成是反应性物种,可氧化DNA。激光闪光光谱研究获得了1O_2形成的进一步证据,该研究表明母体cri啶和9-溴和9-的激发态在体系间相交(Si到T)。氨基取代的衍生物。三元态被氧有效地淬灭(K_q> 10〜9 s〜1M〜1),生成1O_2。在厌氧条件下,无意义观察到不存在碱不稳定的损伤,但诱发了直链断裂;但是,程度要比有氧条件下小。在存在自由基清除剂(即t-BuOH)的情况下,DNA损伤得到抑制,并且羟基自由基被证明是此外,插入的trap啶鎓分子不参与DNA损伤反应。插入的cri啶鎓盐导致与DNA碱基的一次PET反应;但是,建议进行快速的BET转移以重新获得染料和DNA,因此被激发的嵌入染料对DNA的整体破坏没有显着贡献。

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  • 来源
    《Journal of the American Chemical Society》 |2005年第1期|p.76-85|共10页
  • 作者单位

    Contribution from the Department of Chemistry,University of Victoria,BC,Canada,Institutes of Organic Chemistry and Physical Chemistry,University of Wiirzburg,Am Hubland,D-97074 Wiirzburg,Germany,Department of Chemistry,University of Basel,St.Johanns-;

    Contribution from the Department of Chemistry,University of Victoria,BC,Canada,Institutes of Organic Chemistry and Physical Chemistry,University of Wiirzburg,Am Hubland,D-97074 Wiirzburg,Germany,Department of Chemistry,University of Basel,St.Johanns-;

    Contribution from the Department of Chemistry,University of Victoria,BC,Canada,Institutes of Organic Chemistry and Physical Chemistry,University of Wiirzburg,Am Hubland,D-97074 Wiirzburg,Germany,Department of Chemistry,University of Basel,St.Johanns-;

    Contribution from the Department of Chemistry,University of Victoria,BC,Canada,Institutes of Organic Chemistry and Physical Chemistry,University of Wiirzburg,Am Hubland,D-97074 Wiirzburg,Germany,Department of Chemistry,University of Basel,St.Johanns-;

    Contribution from the Department of Chemistry,University of Victoria,BC,Canada,Institutes of Organic Chemistry and Physical Chemistry,University of Wiirzburg,Am Hubland,D-97074 Wiirzburg,Germany,Department of Chemistry,University of Basel,St.Johanns-;

    Contribution from the Department of Chemistry,University of Victoria,BC,Canada,Institutes of Organic Chemistry and Physical Chemistry,University of Wiirzburg,Am Hubland,D-97074 Wiirzburg,Germany,Department of Chemistry,University of Basel,St.Johanns-;

    Contribution from the Department of Chemistry,University of Victoria,BC,Canada,Institutes of Organic Chemistry and Physical Chemistry,University of Wiirzburg,Am Hubland,D-97074 Wiirzburg,Germany,Department of Chemistry,University of Basel,St.Johanns-;

    Contribution from the Department of Chemistry,University of Victoria,BC,Canada,Institutes of Organic Chemistry and Physical Chemistry,University of Wiirzburg,Am Hubland,D-97074 Wiirzburg,Germany,Department of Chemistry,University of Basel,St.Johanns-;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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  • 入库时间 2022-08-18 03:23:41

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