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与DNA适配体相连的荧光素、四甲基罗丹明和德克萨斯红的荧光特性。

Fluorescence properties of fluorescein, tetramethylrhodamine and Texas Red linked to a DNA aptamer.

作者信息

Unruh Jay R, Gokulrangan Giridharan, Wilson George S, Johnson Carey K

机构信息

Department of Chemistry, University of Kansas, Lawrence, KS 66046, USA.

出版信息

Photochem Photobiol. 2005 May-Jun;81(3):682-90. doi: 10.1562/2004-10-06-RA-339.

Abstract

We report the picosecond time-scale fluorescence dynamics of a dye-labeled DNA oligonucleotide or "aptamer" designed to bind specifically to Immunoglobulin E. Comparison of the photophysics of Texas Red (TR), fluorescein and 5'-carboxytetramethylrhodamine (TAMRA)-labeled aptamers reveals surprising differences with significant implications for measurements of oligonucleotide structure and dynamics. The fluorescence decay of the TR-aptamer is a simple single exponential with a weak temperature dependence. The fluorescence decay of the fluorescein-aptamer (fl-aptamer) is pH dependent and displays a complex temperature dependence with significant changes on melting of the aptamer tertiary structure. Despite its similarities to TR, TAMRA is strongly quenched when conjugated to the aptamer and displays complex fluorescence kinetics best described by a distributed rate model. Using the maximum entropy method, we have discovered two highly temperature-dependent fluorescence lifetimes for the TAMRA-aptamer. One of these lifetimes is similar to that of free TAMRA and displays the same temperature dependence. The other lifetime is quenched and displays a temperature dependence characteristic of a charge transfer reaction. These data set TR apart as an attractive alternative to TAMRA and fluorescein for studies such as fluorescence polarization and fluorescence resonance energy transfer, where environmental sensitivity of the probe is not desired.

摘要

我们报告了一种设计用于特异性结合免疫球蛋白E的染料标记DNA寡核苷酸或“适配体”的皮秒时间尺度荧光动力学。对德克萨斯红(TR)、荧光素和5'-羧基四甲基罗丹明(TAMRA)标记的适配体的光物理性质进行比较,发现了令人惊讶的差异,这对寡核苷酸结构和动力学的测量具有重要意义。TR-适配体的荧光衰减是简单的单指数形式,对温度的依赖性较弱。荧光素-适配体(fl-适配体)的荧光衰减依赖于pH值,并表现出复杂的温度依赖性,在适配体三级结构解链时会发生显著变化。尽管TAMRA与TR有相似之处,但当与适配体共轭时会被强烈淬灭,并表现出用分布速率模型能最好描述的复杂荧光动力学。使用最大熵方法,我们发现TAMRA-适配体有两个高度依赖温度的荧光寿命。其中一个寿命与游离TAMRA的相似,并表现出相同的温度依赖性。另一个寿命被淬灭,并表现出电荷转移反应的温度依赖性特征。这些数据使TR成为TAMRA和荧光素的有吸引力的替代品,适用于不需要探针环境敏感性的研究,如荧光偏振和荧光共振能量转移等研究。

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