Fluorescence resonance energy transfer (FRET) and competing processes in donor–acceptor substituted DNA strands: a comparative study of ensemble and single-molecule data

Anja Dietrich, Volker Buschmann, Christian Müller, Markus Sauer
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引用次数: 125

Abstract

We studied the fluorescence resonance energy transfer (FRET) efficiency of different donor–acceptor labeled model DNA systems in aqueous solution from ensemble measurements and at the single molecule level. The donor dyes: tetramethylrhodamine (TMR); rhodamine 6G (R6G); and a carbocyanine dye (Cy3) were covalently attached to the 5′-end of a 40-mer model oligonucleotide. The acceptor dyes, a carbocyanine dye (Cy5), and a rhodamine derivative (JA133) were attached at modified thymidine bases in the complementary DNA strand with donor–acceptor distances of 5, 15, 25 and 35 DNA-bases, respectively. Anisotropy measurements demonstrate that none of the dyes can be observed as a free rotor; especially in the 5-bp constructs the dyes exhibit relatively high anisotropy values. Nevertheless, the dyes change their conformation with respect to the oligonucleotide on a slower time scale in the millisecond range. This results in a dynamic inhomogeneous distribution of donor/acceptor (D/A) distances and orientations. FRET efficiencies have been calculated from donor and acceptor fluorescence intensity as well as from time-resolved fluorescence measurements of the donor fluorescence decay. Dependent on the D/A pair and distance, additional strong fluorescence quenching of the donor is observed, which simulates lower FRET efficiencies at short distances and higher efficiencies at longer distances. On the other hand, spFRET measurements revealed subpopulations that exhibit the expected FRET efficiency, even at short D/A distances. In addition, the measured acceptor fluorescence intensities and lifetimes also partly show fluorescence quenching effects independent of the excitation wavelength, i.e. either directly excited or via FRET. These effects strongly depend on the D/A distance and the dyes used, respectively. The obtained data demonstrate that besides dimerization at short D/A distances, an electron transfer process between the acceptor Cy5 and rhodamine donors has to be taken into account. To explain deviations from FRET theory even at larger D/A distances, we suggest that the π-stack of the DNA double helix mediates electron transfer from the donor to the acceptor, even over distances as long as 35 base pairs. Our data show that FRET experiments at the single molecule level are rather suited to resolve fluorescent subpopulations in heterogeneous mixture, information about strongly quenched subpopulations gets lost.

荧光共振能量转移(FRET)和供体-受体取代DNA链的竞争过程:集合和单分子数据的比较研究
从集合测量和单分子水平研究了水溶液中不同供体-受体标记模型DNA系统的荧光共振能量转移效率。供体染料:四甲基罗丹明(TMR);罗丹明6G (R6G);和碳菁染料(Cy3)共价连接到40聚模型寡核苷酸的5 '端。受体染料,碳菁染料(Cy5)和罗丹明衍生物(JA133)分别附着在互补DNA链上的修饰胸苷碱基上,供体-受体距离分别为5、15、25和35个DNA碱基。各向异性测量表明,没有一种染料可以作为自由转子观察到;特别是在5-bp结构中,染料表现出较高的各向异性值。然而,染料在毫秒范围内较慢的时间尺度上改变其相对于寡核苷酸的构象。这导致供体/受体(D/ a)距离和方向的动态不均匀分布。从供体和受体荧光强度以及供体荧光衰减的时间分辨荧光测量计算了FRET效率。根据D/A对和距离,观察到供体额外的强荧光猝灭,这模拟了较低的FRET效率在短距离和较高的效率在较远的距离。另一方面,spFRET测量显示,亚种群表现出预期的FRET效率,即使在短的D/A距离。此外,测量的受体荧光强度和寿命也部分显示出与激发波长无关的荧光猝灭效应,即直接激发或通过FRET。这些影响很大程度上取决于D/A距离和所使用的染料。所获得的数据表明,除了在短D/A距离二聚化外,必须考虑受体Cy5和罗丹明供体之间的电子转移过程。为了解释即使在较大的D/A距离下与FRET理论的偏差,我们认为DNA双螺旋的π堆栈介导了电子从供体到受体的转移,即使距离长达35个碱基对。我们的数据表明,FRET实验在单分子水平相当适合于解决荧光亚群在异质混合物,有关强猝灭亚群的信息丢失。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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