首页> 外文期刊>The Journal of Chemical Physics >Dissociative electron attachment to DNA-diamine thin films: Impact of the DNA close environment on the OH~- and O~- decay channels
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Dissociative electron attachment to DNA-diamine thin films: Impact of the DNA close environment on the OH~- and O~- decay channels

机译:解离电子附着到DNA-二胺薄膜上:DNA封闭环境对OH〜-和O〜-衰变通道的影响

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摘要

We measure the desorption of anions stimulated by the impact of 0-20 eV electrons on highly uniform thin films of plasmid DNA-diaminopropane. The results are accurately correlated with film thickness and composition by AFM and XPS measurements, respectively. Resonant structures in the H~-, O~-, and OH~- yield functions are attributed to the decay of transient anions into the dissociative electron attachment (DEA) channel. The diamine induces ammonium-phosphate bridges along the DNA backbone, which suppresses the DEA O~- channel and in counter-part increases considerably the desorption of OH~-. The close environment of the phosphate groups may therefore play an important role in modulating the rate and type of DNA damages induced by low energy electrons.
机译:我们测量了0-20 eV电子对质粒DNA-二氨基丙烷高度均匀薄膜的刺激所激发的阴离子的解吸。分别通过AFM和XPS测量,将结果与薄膜厚度和成分精确关联。 H〜-,O〜-和OH〜-屈服函数中的共振结构归因于瞬态阴离子衰减进入离解电子附着(DEA)通道。二胺沿DNA主链诱导磷酸铵桥,从而​​抑制DEA O-通道,反之则大大增加了OH--的解吸。因此,磷酸根基团的紧密环境可能在调节由低能电子引起的DNA损伤的速率和类型中起重要作用。

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