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直接吸收低能紫外辐射在交替 AT 双螺旋中产生的腺嘌呤自由基。

Adenine radicals generated in alternating AT duplexes by direct absorption of low-energy UV radiation.

机构信息

LIDYL, CEA, CNRS, Université Paris-Saclay, F-91191 Gif-sur-Yvette, France.

出版信息

Faraday Discuss. 2018 Apr 17;207(0):181-197. doi: 10.1039/c7fd00179g.

Abstract

There is increasing evidence that the direct absorption of photons with energies that are lower than the ionization potential of nucleobases may result in oxidative damage to DNA. The present work, which combines nanosecond transient absorption spectroscopy and quantum mechanical calculations, studies this process in alternating adenine-thymine duplexes (AT)n. We show that the one-photon ionization quantum yield of (AT)10 at 266 nm (4.66 eV) is (1.5 ± 0.3) × 10-3. According to our PCM/TD-DFT calculations carried out on model duplexes composed of two base pairs, (AT)1 and (TA)1, simultaneous base pairing and stacking does not induce important changes in the absorption spectra of the adenine radical cation and deprotonated radical. The adenine radicals, thus identified in the time-resolved spectra, disappear with a lifetime of 2.5 ms, giving rise to a reaction product that absorbs at 350 nm. In parallel, the fingerprint of reaction intermediates other than radicals, formed directly from singlet excited states and assigned to AT/TA dimers, is detected at shorter wavelengths. PCM/TD-DFT calculations are carried out to map the pathways leading to such species and to characterize their absorption spectra; we find that, in addition to the path leading to the well-known TA* photoproduct, an AT photo-dimerization path may be operative in duplexes.

摘要

越来越多的证据表明,能量低于碱基离化势的光子的直接吸收可能导致 DNA 的氧化损伤。本工作结合纳秒瞬态吸收光谱和量子力学计算,研究了在交替腺嘌呤-胸腺嘧啶双链体(AT)n中的这一过程。我们表明,(AT)10 在 266nm(4.66eV)处的单光子离化量子产率为(1.5±0.3)×10-3。根据我们在由两个碱基对组成的模型双链体(AT)1 和(TA)1 上进行的 PCM/TD-DFT 计算,碱基对同时发生和堆积不会引起腺嘌呤自由基阳离子和去质子化自由基吸收光谱的重要变化。因此,在时间分辨光谱中识别出的腺嘌呤自由基,以 2.5ms 的寿命消失,产生在 350nm 处吸收的反应产物。同时,在较短波长处检测到直接来自单重激发态并分配给 AT/TA 二聚体的反应中间体的指纹。进行 PCM/TD-DFT 计算以映射导致这些物种的途径并表征它们的吸收光谱;我们发现,除了导致众所周知的 TA*光产物的途径外,双链体中可能存在 AT 光二聚化途径。

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