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吲哚菁绿染料在 A-RNA 的 3'末端接近自由旋转:与 5'末端的比较及其对荧光共振能量转移的影响。

Indocyanine dyes approach free rotation at the 3' terminus of A-RNA: a comparison with the 5' terminus and consequences for fluorescence resonance energy transfer.

机构信息

Department of Physics, University of Massachusetts, Amherst, Amherst, Massachusetts, USA.

出版信息

J Phys Chem B. 2013 Jul 25;117(29):8649-58. doi: 10.1021/jp311071y. Epub 2013 Jul 15.

Abstract

Cyanine dyes are widely used to study the folding and structural transformations of nucleic acids using fluorescence resonance energy transfer (FRET). The extent to which FRET can be used to extract inter- and intramolecular distances has been the subject of considerable debate in the literature; the contribution of dye and linker dynamics to the observed FRET signal is particularly troublesome. We used molecular dynamics (MD) simulations to study the dynamics of the indocarbocyanine dyes Cy3 and Cy5 attached variously to the 3' or 5' terminal bases of a 16-base-pair RNA duplex. We then used Monte Carlo modeling of dye photophysics to predict the results of single-molecule-sensitive FRET measurements of these same molecules. Our results show that the average value of FRET depends on both the terminal base and the linker position. In particular, 3' attached dyes typically explore a wide region of configuration space, and the relative orientation factor, κ(2), has a distribution that approaches that of free-rotators. This is in contrast to 5' attached dyes, which spend a significant fraction of their time in one or more configurations that are effectively stacked on the ends of the RNA duplex. The presence of distinct dye configurations for 5' attached dyes is consistent with observations, made by others, of multiple fluorescence lifetimes of Cy3 on nucleic acids. Although FRET is frequently used as a molecular "ruler" to measure intramolecular distances, the unambiguous measurement of distances typically relies on the assumption that the rotational degrees of freedom of the dyes can be averaged out and that the donor lifetime in the absence of the acceptor is a constant. We demonstrate that even for the relatively free 3' attached dyes, the correlation time of κ(2) is still too long to justify the use of a free-rotation approximation. We further explore the consequences of multiple donor lifetimes on the predicted value of FRET.

摘要

菁染料广泛用于使用荧光共振能量转移 (FRET) 研究核酸的折叠和结构转变。在文献中,FRET 可用于提取分子内和分子间距离的程度一直是相当有争议的话题;染料和连接体动态对观察到的 FRET 信号的贡献尤其麻烦。我们使用分子动力学 (MD) 模拟研究了不同位置连接到 16 碱基对 RNA 双链体 3'或 5'末端碱基的吲哚羰菁染料 Cy3 和 Cy5 的动态。然后,我们使用染料光物理的蒙特卡罗建模来预测这些相同分子的单分子敏感 FRET 测量的结果。我们的结果表明,FRET 的平均值取决于末端碱基和连接体位置。特别是,3'连接的染料通常会探索广泛的构象空间区域,并且相对取向因子 κ(2) 的分布接近自由旋转体。这与 5'连接的染料形成对比,5'连接的染料在其时间的显著部分中处于一种或多种与 RNA 双链体末端有效堆叠的构型中。5'连接的染料存在不同的染料构型与其他人在核酸上观察到 Cy3 多个荧光寿命的观察结果一致。尽管 FRET 通常被用作测量分子内距离的分子“标尺”,但距离的明确测量通常依赖于以下假设:可以平均化染料的旋转自由度,并且在没有受体的情况下供体寿命是常数。我们证明,即使对于相对自由的 3'连接染料,κ(2)的相关时间仍然太长,无法证明可以使用自由旋转近似。我们进一步探讨了多个供体寿命对预测 FRET 值的影响。

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