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Orientational and dynamical heterogeneity of rhodamine 6G terminally attached to a DNA helix revealed by NMR and single-molecule fluorescence spectroscopy.

机译:罗丹明6G的方向和动态异质性末端连接到DNA螺旋的NMR和单分子荧光光谱显示。

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摘要

The comparison of Förster resonance energy transfer (FRET) efficiencies between two fluorophores covalently attached to a single protein or DNA molecule is an elegant approach for deducing information about their structural and dynamical heterogeneity. For a more detailed structural interpretation of single-molecule FRET assays, information about the positions as well as the dynamics of the dye labels attached to the biomolecule is important. In this work, Rhodamine 6G (2-[3'-(ethylamino)-6'-(ethylimino)-2',7'-dimethyl-6'H-xanthen-9'-yl]-benzoic acid) bound to the 5'-end of a 20 base pair long DNA duplex is investigated by both single-molecule multiparameter fluorescence detection (MFD) experiments and NMR spectroscopy. Rhodamine 6G is commonly employed in nucleic acid research as a FRET dye. MFD experiments directly reveal the equilibrium of the dye bound to DNA between three heterogeneous environments, which are characterized by distinct fluorescence lifetime and intensity distributions as a result of different guanine-dye excited-state electron transfer interactions. Sub-ensemble fluorescence autocorrelation analysis shows the highly dynamic character of the dye-DNA interactions ranging from nano- to milliseconds and species-specific triplet relaxation times. Two-dimensional NMR spectroscopy corroborates this information by the determination of the detailed geometric structures of the dye-nucleobase complex and their assignment to each population observed in the single-molecule fluorescence experiments. From both methods, a consistent and detailed molecular description of the structural and dynamical heterogeneity is obtained.
机译:共价附于单个蛋白质或DNA分子的两个荧光团之间的Förster共振能量转移(FRET)效率的比较是推论有关其结构和动力学异质性信息的一种优雅方法。对于单分子FRET分析的更详细的结构解释,有关附着于生物分子的染料标记的位置以及动力学的信息非常重要。在这项工作中,若丹明6G(2- [3'-(乙基氨基)-6'-(乙基亚氨基)-2',7'-二甲基-6'H-黄嘌呤-9'-基]-苯甲酸)键合到通过单分子多参数荧光检测(MFD)实验和NMR光谱研究了20个碱基对长的DNA双链体的5'-末端。罗丹明6G通常作为FRET染料用于核酸研究。 MFD实验直接揭示了三种异质环境之间与DNA结合的染料的平衡,其特征是由于鸟嘌呤-染料激发态电子转移相互作用的不同,荧光寿命和强度分布也不同。亚集合荧光自相关分析显示了染料-DNA相互作用的高动态特性,范围从纳秒到毫秒,以及特定于物种的三重态弛豫时间。二维NMR光谱法通过确定染料-核碱基复合物的详细几何结构及其在单分子荧光实验中观察到的每个种群的分配,从而证实了这一信息。通过这两种方法,可以获得结构和动力学异质性的一致且详细的分子描述。

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