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首页> 外文期刊>Nucleic acids research >Electronic transition moments of 6-methyl isoxanthopterin—a fluorescent analogue of the nucleic acid base guanine
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Electronic transition moments of 6-methyl isoxanthopterin—a fluorescent analogue of the nucleic acid base guanine

机译:6-甲基异黄嘌呤蝶呤的电子跃迁时刻-核酸碱基鸟嘌呤的荧光类似物

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摘要

Fluorescent nucleic acid base analogues are important spectroscopic tools for understanding local structure and dynamics of DNA and RNA. We studied the orientations and magnitudes of the electric dipole transition moments (EDTMs) of 6-methyl isoxanthopterin (6-MI), a fluorescent analogue of guanine that has been particularly useful in biological studies. Using a combination of absorption spectroscopy, linear dichroism (LD) and quantum chemical calculations, we identified six electronic transitions that occur within the 25 000–50 000 cm?1 spectral range. Our results indicate that the two experimentally observed lowest-energy transitions, which occur at 29 687 cm?1 (337 nm) and 34 596 cm?1 (289 nm), are each polarized within the plane of the 6-MI base. A third in-plane polarized transition is experimentally observed at 47 547 cm?1 (210 nm). The theoretically predicted orientation of the lowest-energy transition moment agrees well with experiment. Based on these results, we constructed an exciton model to describe the absorption spectra of a 6-MI dinucleotide–substituted double-stranded DNA construct. This model is in good agreement with the experimental data. The orientations and intensities of the low-energy electronic transitions of 6-MI reported here should be useful for studying local conformations of DNA and RNA in biologically important complexes.
机译:荧光核酸碱基类似物是了解DNA和RNA的局部结构和动力学的重要光谱工具。我们研究了鸟嘌呤的荧光类似物6-甲基异氧黄蝶呤(6-MI)的电偶极跃迁矩(EDTM)的方向和强度,该鸟嘌呤的荧光类似物在生物学研究中特别有用。通过结合吸收光谱,线性二向色性(LD)和量子化学计算,我们确定了在25 000-50000 cm ?1 光谱范围内发生的六个电子跃迁。我们的结果表明,两个实验观察到的最低能量跃迁发生在29 687 cm ?1 (337 nm)和34596 cm ?1 (289 nm),分别在6-MI基础平面内极化。实验中在47 547 cm ?1 (210 nm)处观察到第三次平面内极化跃迁。最低能量跃迁矩的理论预测方向与实验非常吻合。基于这些结果,我们构建了一个激子模型来描述6-MI二核苷酸取代的双链DNA构建体的吸收光谱。该模型与实验数据吻合良好。此处报道的6-MI低能电子跃迁的方向和强度对于研究生物学重要复合物中DNA和RNA的局部构象应该是有用的。

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