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One- and Two-Photon Ionization of DNA Single and Double Helices Studied by Laser Flash Photolysis at 266 nm

机译:通过266 nm激光闪光光解研究DNA单螺旋和双螺旋的单光子和双光子电离

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摘要

The ionization of the DNA single and double helices (dA)20, (dT)20, (dAdT)10(dAdT)10 and (dA)20(dT)20, induced by nanosecond pulses at 266 nm, is studied by time-resolved absorption spectroscopy. The variation of the hydrated electron concentration with the absorbed laser intensity shows that, in addition to two-photon ionization, one-photon ionization takes place for (dAdT)10(dAdT)10, (dA)20(dT)20 and (dA)20 but not for (dT)20. The spectra of all adenine-containing oligomers at the microsecond time-scale correspond to the adenine deprotonated radical formed in concentrations comparable to that of the hydrated electron. The quantum yield for one-photon ionization of the oligomers (ca. 10-3) is higher by at least 1 order of magnitude than that of dAMP, showing clearly that organization of the bases in single and double helices leads to an important lowering of the ionization potential. The propensity of (dAdT)10(dAdT)10, containing alternating adenine-thymine sequences, to undergo one-photon ionization is lower than that of (dA)20(dT)20 and (dA)20, containing adenine runs. Pairing of the (dA)20 with the complementary strand leads to a decrease of quantum yield for one photon ionization by about a factor of 2.
机译:通过在266 nm处的纳秒脉冲引起的DNA单螺旋和双螺旋(dA)20,(dT)20,(dAdT)10(dAdT)10和(dA)20(dT)20的电离研究如下:分辨吸收光谱。水合电子浓度随吸收的激光强度的变化表明,除了双光子电离外,(dAdT)10(dAdT)10,(dA)20(dT)20和(dA)都发生了单光子电离。 )20,但不适用于(dT)20。在微秒时间尺度上所有含腺嘌​​呤的低聚物的光谱对应于以与水合电子相当的浓度形成的腺嘌呤去质子化的自由基。低聚物(约10-3)的单光子电离的量子产率比dAMP的量子产率高至少1个数量级,这清楚地表明,单螺旋和双螺旋中碱基的组织导致dAMP的重要降低。电离势。包含交替的腺嘌呤胸腺嘧啶序列的(dAdT)10(dAdT)10发生单光子电离的倾向低于包含腺嘌呤泳动的(dA)20(dT)20和(dA)20的倾向。 (dA)20与互补链的配对导致一个光子电离的量子产率降低约2倍。

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