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钌(III)在双链DNA中对鸟嘌呤的远程氧化作用。

Long-range oxidation of guanine by Ru(III) in duplex DNA.

作者信息

Arkin M R, Stemp E D, Pulver S C, Barton J K

机构信息

Beckman Institute California Institute of Technology Pasadena, CA 91125, USA.

出版信息

Chem Biol. 1997 May;4(5):389-400. doi: 10.1016/s1074-5521(97)90129-0.

Abstract

BACKGROUND

Theoretical and experimental studies have demonstrated that 5'-GG-3' sequences in DNA are 'hot spots' for oxidative damage, but few studies have definitively addressed whether oxidative damage to DNA may arise from a distance via long-range charge migration. Towards this end, we have prepared tethered ruthenium (Ru)-oligonucleotide duplexes and used a flash-quench strategy to demonstrate long-range charge transport through the DNA double helix.

RESULTS

DNA assemblies containing a tethered Ru(II) intercalator have been synthesized. Ru(III), generated in situ in the presence of externally bound electron-transfer quenchers, promotes base damage selectively at the 5'-G of a 5'-GG-3' doublet located approximately 37 A from the binding site of the oxidant. In the absence of a guanine doublet, oxidative damage occurs equally at all guanine bases in the strand. Oxidative damage is also observed at long range for guanine in a G.A mismatch but not in a G.T mismatch.

CONCLUSIONS

The present study expands the scope of long-range electron-transfer chemistry in terms of experiments, applications, and possible reactions within the cell. Here we demonstrate oxidative damage to DNA occurring with a high quantum yield over a distance of approximately 37ůsing a ground-state oxidant. These results point to the equilibration of the radical across the DNA duplex to the sites of lowest energy. In addition, this charge migration is sensitive to the intervening pi-stack formed by DNA base pairs and hence may be useful for the detection of mismatches.

摘要

背景

理论和实验研究表明,DNA中的5'-GG-3'序列是氧化损伤的“热点”,但很少有研究明确探讨DNA的氧化损伤是否可能通过远程电荷迁移从远处产生。为此,我们制备了连接钌(Ru)的寡核苷酸双链体,并使用闪光猝灭策略来证明通过DNA双螺旋的远程电荷传输。

结果

合成了含有连接Ru(II)嵌入剂的DNA组装体。在存在外部结合的电子转移猝灭剂的情况下原位生成的Ru(III),在距氧化剂结合位点约37 Å处的5'-GG-3'双峰的5'-G处选择性地促进碱基损伤。在没有鸟嘌呤双峰的情况下,氧化损伤在链中的所有鸟嘌呤碱基上均等地发生。在G.A错配中的鸟嘌呤在远距离处也观察到氧化损伤,但在G.T错配中则没有。

结论

本研究在实验、应用和细胞内可能的反应方面扩展了远程电子转移化学的范围。在这里,我们证明了使用基态氧化剂在约37 Å的距离上以高量子产率发生对DNA的氧化损伤。这些结果表明自由基在DNA双链体上平衡到能量最低的位点。此外,这种电荷迁移对由DNA碱基对形成的中间π堆积敏感,因此可能有助于检测错配。

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