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Orientational Dynamics and Dye-DNA Interactions in a Dye-Labeled DNA Aptamer

机译:染料标记的DNA适体中的取向动力学和染料-DNA相互作用

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摘要

We report the picosecond and nanosecond timescale rotational dynamics of a dye-labeled DNA oligonucleotide or “aptamer” designed to bind specifically to immunoglobulin E. Rotational dynamics in combination with fluorescence lifetime measurements provide information about dye-DNA interactions. Comparison of Texas Red (TR), fluorescein, and tetramethylrhodamine (TAMRA)-labeled aptamers reveals surprising differences with significant implications for biophysical studies employing such conjugates. Time-resolved anisotropy studies demonstrate that the TR- and TAMRA-aptamer anisotropy decays are dominated by the overall rotation of the aptamer, whereas the fluorescein-aptamer anisotropy decay displays a subnanosecond rotational correlation time much shorter than that expected for the overall rotation of the aptamer. Docking and molecular dynamics simulations suggest that the low mobility of TR is a result of binding in the groove of the DNA helix. Additionally, associated anisotropy analysis of the TAMRA-aptamer reveals both quenched and unquenched states that experience significant coupling to the DNA motion. Therefore, quenching of TAMRA by guanosine must depend on the configuration of the dye bound to the DNA. The strong coupling of TR to the rotational dynamics of the DNA aptamer, together with the absence of quenching of its fluorescence by DNA, makes it a good probe of DNA orientational dynamics. The understanding of the nature of dye-DNA interactions provides the basis for the development of bioconjugates optimized for specific biophysical measurements and is important for the sensitivity of anisotropy-based DNA-protein interaction studies employing such conjugates.
机译:我们报告了染料标记的DNA寡核苷酸或“适体”的皮秒级和纳秒级时域旋转动力学,旨在与免疫球蛋白E特异性结合。旋转动力学与荧光寿命测量相结合,可提供有关染料DNA相互作用的信息。德克萨斯红(TR),荧光素和四甲基若丹明(TAMRA)标记的适体的比较显示出令人惊讶的差异,对于使用此类缀合物的生物物理研究具有重要意义。时间分辨各向异性研究表明,TR和TAMRA适体的各向异性衰减主要由适体的整体旋转决定,而荧光素-适体的各向异性衰减显示的亚纳秒旋转相关时间比预期的总旋转时间短得多。适体。对接和分子动力学模拟表明TR的低迁移率是DNA螺旋槽中结合的结果。另外,TAMRA-适体的相关各向异性分析揭示了淬灭态和非淬灭态都经历了与DNA运动的显着偶联。因此,鸟苷对TAMRA的淬灭必须取决于与DNA结合的染料的构型。 TR与DNA适体的旋转动力学的强耦合,以及由于没有DNA被其荧光猝灭,使其成为DNA定向动力学的良好探针。对染料-DNA相互作用性质的理解为开发针对特定生物物理测量优化的生物缀合物提供了基础,并且对于使用此类缀合物的基于各向异性的DNA-蛋白质相互作用研究的敏感性非常重要。

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