首页> 外文期刊>Journal of physical chemistry letters >Potassium Ions Enhance Guanine Radical Generation upon Absorption of Low-Energy Photons by G-Quadruplexes and Modify Their Reactivity
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Potassium Ions Enhance Guanine Radical Generation upon Absorption of Low-Energy Photons by G-Quadruplexes and Modify Their Reactivity

机译:钾离子在G-quadrepless吸收低能量光子时增强鸟嘌呤激进的产生,并改变其反应性

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G-Quadruplexes are formed by guanine rich DNA/RNA sequences in the presence of metal ions, which occupy the central cavity of these four-stranded structures. We show that these metal ions have a significant effect on the photogeneration and the reactivity of guanine radicals. Transient absorption experiments on G-quadruplexes formed by association of four TGGGGT strands in the presence of K+ reveal that the quantum yield of one-photon ionization at 266 nm (8.1 x 10(-3)) is twice as high as that determined in the presence of Na+. Replacement of Na+ with K+ also suppresses one reaction path involving deprotonated radicals, (G-H2)(center dot) -> (G-H1)(center dot) tautomerization. Such behavior shows that the underlying mechanisms are governed by dynamical processes, controlled by the mobility of metal ions, which is higher for Na+ than for K+. These findings may contribute to our understanding of the ultraviolet-induced DNA damage and optimize optoelectronic devices based on four-stranded structures, beyond DNA.
机译:在金属离子存在下通过鸟嘌呤富含DNA / RNA序列形成G-四反转,其占据这些四链结构的中心腔。我们表明,这些金属离子对致荧光和鸟嘌呤自由基的反应性具有显着影响。通过k +存在在k +存在中形成的四个Tggggt链组合形成的瞬态吸收实验揭示了266nm处的单光子电离的量子产率(8.1×10(-3))是确定的两倍存在Na +。用K +替换Na +也抑制一种涉及去质子酸酯的反应路径,(G-H 2)(中心点) - >(G-H1)(中心点)互变异化。这种行为表明,底层机制由由金属离子的迁移率控制的动态过程来控制,这对于Na +比K +更高。这些发现可能有助于我们了解紫外线诱导的DNA损伤,并基于超出DNA的四链结构优化光电器件。

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