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RNA和DNA C序列的超快激发态动力学

Ultrafast excited-state dynamics of RNA and DNA C tracts.

作者信息

Cohen Boiko, Larson Matthew H, Kohler Bern

机构信息

Department of Chemistry, The Ohio State University, 100 W. 18 Ave., Columbus, OH, USA 43210.

出版信息

Chem Phys. 2008 Jun;350(1-3):165-174. doi: 10.1016/j.chemphys.2008.01.050.

Abstract

The excited-state dynamics of the RNA homopolymer of cytosine and of the 18-mer (dC)(18) were studied by steady-state and time-resolved absorption and emission spectroscopy. At pH 6.8, excitation of poly(rC) by a femtosecond UV pump pulse produces excited states that decay up to one order of magnitude more slowly than the excited states formed in the mononucleotide cytidine 5'-monophosphate under the same conditions. Even slower relaxation is observed for the hemiprotonated, self-associated form of poly(rC), which is stable at acidic pH. Transient absorption and time-resolved fluorescence signals for (dC)(18) at pH 6.8 are similar to ones observed for poly(rC) near pH 4, indicating that hemiprotonated structures are found in DNA C tracts at neutral pH. In both systems, there is evidence for two kinds of emitting states with lifetimes of ~100 ps and slightly more than 1 ns. The former states are responsible for the bulk of emission from the hemiprotonated structures. Evidence suggests that slow electronic relaxation in these self-complexes is the result of vertical base stacking. The similar signals from RNA and DNA C tracts suggest a common base-stacked structure, which may be identical with that of i-motif DNA.

摘要

通过稳态和时间分辨吸收与发射光谱法研究了胞嘧啶的RNA同聚物以及18聚体(dC)(18)的激发态动力学。在pH 6.8时,用飞秒紫外泵浦脉冲激发聚(rC)产生的激发态,其衰减速度比在相同条件下单核苷酸胞苷5'-单磷酸形成的激发态慢一个数量级以上。对于在酸性pH下稳定的聚(rC)的半质子化、自缔合形式,观察到更慢的弛豫。在pH 6.8时(dC)(18)的瞬态吸收和时间分辨荧光信号与在pH 4附近聚(rC)观察到的信号相似,表明在中性pH的DNA C链中发现了半质子化结构。在这两个系统中,都有证据表明存在两种发射态,寿命分别约为100 ps和略大于1 ns。前一种状态是半质子化结构大部分发射的原因。有证据表明,这些自络合物中缓慢的电子弛豫是垂直碱基堆积的结果。来自RNA和DNA C链的相似信号表明存在一种共同的碱基堆积结构,它可能与i-基序DNA的结构相同。

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