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The Effect of dye-dye interactions on the spatial resolution of single-molecule FRET measurements in nucleic acids.

机译:染料相互作用对核酸中单分子FRET测量的空间分辨率的影响。

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We study the effect of dye-dye interactions in labeled double-stranded DNA molecules on the Forster resonance energy transfer (FRET) efficiency at the single-molecule level. An extensive analysis of internally labeled double-stranded DNA molecules in bulk and at the single-molecule level reveals that donor-acceptor absolute distances can be reliably extracted down to approximately 3-nm separation, provided that dye-dye quenching is accounted for. At these short separations, we find significant long-lived fluorescence fluctuations among discrete levels originating from the simultaneous and synchronous quenching of both dyes. By comparing four different donor-acceptor dye pairs (TMR-ATTO647N, Cy3-ATTO647N, TMR-Cy5, and Cy3-Cy5), we find that this phenomenon depends on the nature of the dye pair used, with the cyanine pair Cy3-Cy5 showing the least amount of fluctuations. The significance of these results is twofold: First, they illustrate that when dye-dye quenching is accounted for, single-molecule FRET can be used to accurately measure inter-dye distances, even at short separations. Second, these results are useful when deciding which dye pairs to use for nucleic acids analyses using FRET.
机译:我们研究了单分子水平上的Forster共振能量转移(FRET)效率上标记的双链DNA分子中染料-染料相互作用的影响。大量分析内部标记的双链DNA分子的整体结构和单分子水平,发现只要考虑到染料猝灭,就可以可靠地提取出供体-受体的绝对距离,直至分离到大约3 nm。在这些短暂的分离中,我们发现两种染料的同时和同步淬灭引起的离散水平之间存在明显的长寿命荧光波动。通过比较四种不同的供体-受体染料对(TMR-ATTO647N,Cy3-ATTO647N,TMR-Cy5和Cy3-Cy5),我们发现这种现象取决于所用染料对的性质,其中花青对Cy3-Cy5波动最小。这些结果的意义有两个方面:首先,它们表明,考虑到染料淬灭后,即使在短距离分离下,单分子FRET仍可用于精确测量染料间的距离。其次,这些结果在决定使用哪些染料对进行FRET核酸分析时很有用。

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