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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Radicals generated in alternating guanine–cytosine duplexes by direct absorption of low-energy UV radiation
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Radicals generated in alternating guanine–cytosine duplexes by direct absorption of low-energy UV radiation

机译:通过直接吸收低能量UV辐射,在交替的鸟嘌呤 - 胞嘧啶双链体中产生的基团

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摘要

Recent studies have evidenced that oxidatively damaged DNA, which potentially leads to carcinogenic mutations and aging, may result from the direct absorption of low-energy photons (>250 nm). Herein, the primary species, i.e. , ejected electrons and base radicals associated with such damage in duplexes with an alternating guanine–cytosine sequence are quantified by nanosecond transient absorption spectroscopy. The one-photon ionization quantum yield at 266 nm is 1.2 × 10 ~(?3) , which is similar to those reported previously for adenine–thymine duplexes. This means that the simple presence of guanine, the nucleobase with the lowest ionization potential, does not affect photo-ionization. The transient species detected after 3 μs are identified as deprotonated guanine radicals, which decay with a half-time of 2.5 ms. Spectral assignment is made with the help of quantum chemistry calculations (TD-DFT), which for the first time, provide reference absorption spectra for guanine radicals in duplexes. In addition, our computed spectra predict the changes in transient absorption expected for hole localization as well as deprotonation (to cytosine and bulk water) and hydration of the radical cation.
机译:最近的研究已经证明,氧化受损的DNA可能导致致癌突变和老化,这可能是由低能量光子(> 250nm)的直接吸收产生的。在本文中,通过纳秒瞬时吸收光谱量化与具有交替的鸟嘌呤 - 胞嘧啶序列的双链体损伤相关的主要物种,即喷射的电子和基础自由基。在266nm处的单光子电离量子产率为1.2×10〜(α3),其类似于先前对于腺嘌呤 - 胸腺嘧啶双链体报告的那些。这意味着鸟嘌呤的简单存在,具有最低电离电位的核碱基,不影响光电电离。 3μs后检测到的瞬态物质被鉴定为反驳的鸟嘌呤自由基,其衰减为2.5毫秒的半时间。谱分配是在量子化学计算(TD-DFT)的帮助下进行的,这是第一次,为双链体中的鸟嘌呤自由基提供参考吸收光谱。此外,我们的计算光谱预测了孔定位的瞬态吸收的变化以及自由基阳离子的去质子化(对胞嘧啶和胞质水)和水化。

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