Dziuba Dmytro, Karpenko Iuliia A, Barthes Nicolas P F, Michel Benoît Y, Klymchenko Andrey S, Benhida Rachid, Demchenko Alexander P, Mély Yves, Burger Alain
Institut de Chimie de Nice, UMR 7272, Université de Nice Sophia Antipolis, CNRS, Parc Valrose, 06108 Nice cedex 2 (France); Present address: Institute of Organic Chemistry and Biochemistry, Academy of Sciences of the Czech Republic, Flemingovo nam. 2, CZ-16610, Prague 6 (Czech Republic).
Chemistry. 2014 Feb 10;20(7):1998-2009. doi: 10.1002/chem.201303399. Epub 2014 Jan 16.
Fluorescent nucleoside analogues with strong and informative responses to their local environment are in urgent need for DNA research. In this work, the design, synthesis and investigation of a new solvatochromic ratiometric fluorophore compiled from 3-hydroxychromones (3HCs) and uracil fragments are reported. 3HC dyes are a class of multi-parametric, environment-sensitive fluorophores providing a ratiometric response due to the presence of two well-resolved bands in their emission spectra. The synthesized conjugate demonstrates not only the preservation but also the improvement of these properties. The absorption and fluorescence spectra are shifted to longer wavelengths together with an increase of brightness. Moreover, the two fluorescence bands are better resolved and provide ratiometric responses across a broader range of solvent polarities. To understand the photophysical properties of this new fluorophore, a series of model compounds were synthesized and comparatively investigated. The obtained data indicate that uracil and 3HC fragments of this derivative are coupled into an electronic conjugated system, which on excitation attains strong charge-transfer character. The developed fluorophore is a prospective label for nucleic acids. Abstract in Ukrainian: .
在DNA研究中,迫切需要对其局部环境有强烈且信息丰富响应的荧光核苷类似物。在这项工作中,报道了一种由3 - 羟基色酮(3HCs)和尿嘧啶片段组成的新型溶剂化显色比率荧光团的设计、合成及研究。3HC染料是一类多参数、对环境敏感的荧光团,由于其发射光谱中存在两个分辨率良好的谱带而呈现比率响应。合成的共轭物不仅保留了这些性质,而且有所改善。吸收光谱和荧光光谱向更长波长移动,同时亮度增加。此外,两个荧光带分辨率更高,在更宽的溶剂极性范围内提供比率响应。为了理解这种新型荧光团的光物理性质,合成了一系列模型化合物并进行了比较研究。获得的数据表明,该衍生物的尿嘧啶和3HC片段耦合到一个电子共轭体系中,激发时具有很强的电荷转移特性。所开发的荧光团是一种有前景的核酸标记物。乌克兰语摘要:.