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Heavy-atom modified near-IR fluorescent dyes for DNA sequencing applications: synthesis and photophysical characterization

机译:重型原子改性接近IR荧光染料,用于DNA测序应用:合成和光物理表征

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A series of near-IR (NIR) fluorescent dyes have been prepared which contain an intramolecular heavy atom for altering the photophysics to produce a set of probes appropriate for single lane DNA sequencing applications. The identification of the terminal nucleotide base will be affected by temporal discrimination using fluorescence lifetime determination. The heavy-atom modification consists of an intramolecular halogen (mono- or disubstituted) situated on a remote section of the chromophore in order to minimize the perturbation on the photophysics. The series of dyes prepared showed similar absorption and emission maxima as well as fluorescence quantum yields that were similar. However, the lifetimes of these dyes were found to vary with the identity of the halogen substitution, yielding an apparent inverse heavy atom effect, with the heavier atom showing the longest fluorescence lifetime. Nanosecond flash photolysis spectroscopy of these dyes indicated that the intersystem crossing rates in the series increased with the heavier atom, consistent with known heavy-atom effects. The apparent inverse heavy atom effect resulted from decreases in the internal conversion rate of the base chromophore, with the heavier atom showing a smaller rate of internal conversion compared to that of the dye with the lighter heavy-atom modification.
机译:已经制备了一系列接近IR(NIR)荧光染料,其含有分子内重原子,用于改变光学药物以生产适合单局DNA测序应用的一组探针。终端核苷酸碱的鉴定将受到荧光寿命测定的时间辨别的影响。重原子改性由位于发色团的远程段上的分子内卤素(单溶解)组成,以最小化对光学物质的扰动。制备的一系列染料显示出类似的吸收和发光最大值以及荧光量子产量。然而,发现这些染料的寿命随着卤素取代的同一性而变化,产生表观逆重的原子效果,其具有较重的原子,显示出最长的荧光寿命。这些染料的纳秒闪光光解光谱表明,该系列中的基间交叉率随着较重的原子而增加,与已知的重原子效应一致。表观逆重原子效果由于基础发色团的内部转化率降低而导致较重的原子,其显示与染料较轻的重原子改性的染料相比较小的内转化率。

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