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通过荧光光谱法研究鸟嘌呤-胞嘧啶发夹和双链的电子激发态。

Electronic excited states of guanine-cytosine hairpins and duplexes studied by fluorescence spectroscopy.

机构信息

CNRS, IRAMIS, SPAM, Laboratoire Francis Perrin, URA 2453, F-91191 Gif-sur-Yvette, France.

出版信息

Photochem Photobiol Sci. 2013 Aug;12(8):1453-9. doi: 10.1039/c3pp50088h.

DOI:10.1039/c3pp50088h
PMID:23736116
Abstract

Guanine-cytosine hairpins, containing a hexaethylene glycol bridge, are studied by steady-state fluorescence spectroscopy and time-correlated single photon counting; their properties are compared to those of duplexes with the same sequence. It is shown that, both in hairpins and in duplexes, base pairing induces quenching of the ππ* fluorescence, the quantum yield decreasing by at least two orders of magnitude. When the size of the systems increases from two to ten base pairs, a fluorescent component decaying on the nanosecond time-scale appears at energy higher than that stemming from the bright states of non-interacting mono-nucleotides (ca. 330 nm). For ten base pairs, this new fluorescence forms a well-defined band peaking at 305 nm. Its intensity is about 20% higher for the hairpin compared to the duplex. Its position (red-shifted by 1600 cm(-1)) and width (broader by 1800 cm(-1) FWHM) differ from those observed for large duplexes containing 1000 base pairs, suggesting the involvement of electronic coupling. Fluorescence anisotropy reveals that the excited states responsible for high energy emission are not populated directly upon photon absorption but are reached during a relaxation process. They are assigned to charge transfer states. According to the emerging picture, the amplitude of conformational motions determines whether instantaneous deactivation to the ground state or emission from charge transfer states will take place, while ππ* fluorescence is associated to imperfect base-pairing.

摘要

含六亚乙基二醇桥的鸟嘌呤-胞嘧啶发夹通过稳态荧光光谱和时间相关单光子计数进行研究;将其性质与具有相同序列的双链体进行比较。结果表明,在发夹和双链体中,碱基配对都会使 ππ荧光猝灭,量子产率至少降低两个数量级。当体系的大小从两个碱基对增加到十个碱基对时,在高于非相互作用单核苷酸的明亮态(约 330nm)的能量处,会出现一个在纳秒时间尺度上衰减的荧光组分。对于十个碱基对,这种新的荧光形成一个清晰的 305nm 峰带。与双链体相比,发夹的荧光强度高约 20%。其位置(红移 1600cm^(-1))和宽度(半峰全宽拓宽 1800cm^(-1))与包含 1000 个碱基对的大双链体观察到的不同,表明存在电子耦合。荧光各向异性表明,负责高能发射的激发态不是在光子吸收时直接填充,而是在弛豫过程中达到。它们被分配给电荷转移态。根据新出现的图像,构象运动的幅度决定了瞬时失活到基态还是从电荷转移态发射,而ππ荧光与不完全碱基配对有关。

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