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Near 0 eV electrons attach to nucleotides

机译:接近0 eV的电子附着在核苷酸上

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To elucidate the mechanism of the nascent stage of DNA strand breakage by low-energy electrons, theoretical investigations of electron attachment to nucleotides have been performed by the reliably calibrated B3LYP/DZP++ approach (Chem. Rev. 2002, 102, 231). The 2'-deoxycytidine-3'monophosphate (3'-dCMPH) and its phosphate-deprotonated anion (3'-dCMP(-)) have been selected herein as models. This investigation reveals that 3'-dCMPH is able to capture near 0 eV electrons to form a radical anion which has a lower energy than the corresponding neutral species in both the gas phase and aqueous solution. The excess electron density is primarily located on the base of the nucleotide radical anion. The electron detachment energy of this pyrimidine-based radical anion is high enough that subsequent phosphate-sugar C-O sigma bond breaking or glycosidic bond cleavage is feasible. Although the phosphate-centered radical anion of 3'-dCMPH is not stable in the gas phase, it may be stable in aqueous solution. However, an incident electron with kinetic energy less than 4 eV might not be able to effectively produce the phosphate-centered radical anion either in solution or in the gas phase. This research also suggests that the electron affinity of the nucleotides is independent of the counterion in aqueous solution.
机译:为了阐明低能电子引起的DNA链断裂的新生阶段的机理,已经通过可靠地校准的B3LYP / DZP ++方法进行了对电子与核苷酸的附着的理论研究(Chem.Rev.2002,102,231)。本文已选择2'-脱氧胞苷-3'单磷酸酯(3'-dCMPH)及其磷酸酯去质子化的阴离子(3'-dCMP(-))作为模型。这项研究表明3'-dCMPH能够捕获接近0 eV的电子以形成自由基阴离子,该自由基阴离子在气相和水溶液中的能量均低于相应的中性物质。过量的电子密度主要位于核苷酸自由基阴离子的基础上。该嘧啶基自由基阴离子的电子离解能足够高,以至于随后的磷酸-糖C-Oσ键断裂或糖苷键断裂是可行的。尽管3'-dCMPH的以磷酸盐为中心的自由基阴离子在气相中不稳定,但在水溶液中可能稳定。但是,动能小于4 eV的入射电子可能无法在溶液中或在气相中有效产生以磷酸盐为中心的自由基阴离子。这项研究还表明,核苷酸的电子亲和力与水溶液中的抗衡离子无关。

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