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A flexible fluorescence correlation spectroscopy based method for quantification of the DNA double labeling efficiency with precision control

机译:基于柔性荧光相关光谱法的DNA双重标记效率定量控制方法

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We developed a laser-based method to quantify the double labeling efficiency of double-stranded DNA (dsDNA) in a fluorescent dsDNA pool with fluorescence correlation spectroscopy (FCS). Though, for quantitative biochemistry, accurate measurement of this parameter is of critical importance, before our work it was almost impossible to quantify what percentage of DNA is doubly labeled with the same dye. The dsDNA is produced by annealing complementary single-stranded DNA (ssDNA) labeled with the same dye at 5' end. Due to imperfect ssDNA labeling, the resulting dsDNA is a mixture of doubly labeled dsDNA, singly labeled dsDNA and unlabeled dsDNA. Our method allows the percentage of doubly labeled dsDNA in the total fluorescent dsDNA pool to be measured. In this method, we excite the imperfectly labeled dsDNA sample in a focal volume of <1 fL with a laser beam and correlate the fluctuations of the fluorescence signal to get the FCS autocorrelation curves; we express the amplitudes of the autocorrelation function as a function of the DNA labeling efficiency; we perform a comparative analysis of a dsDNA sample and a reference dsDNA sample, which is prepared by increasing the total dsDNA concentration c (c > 1) times by adding unlabeled ssDNA during the annealing process. The method is flexible in that it allows for the selection of the reference sample and the c value can be adjusted as needed for a specific study. We express the precision of the method as a function of the ssDNA labeling efficiency or the dsDNA double labeling efficiency. The measurement precision can be controlled by changing the c value.
机译:我们开发了一种基于激光的方法,通过荧光相关光谱法(FCS)量化荧光dsDNA池中双链DNA(dsDNA)的双标记效率。尽管对于定量生物化学而言,准确测量该参数至关重要,但在我们开展工作之前,几乎无法定量用相同染料双重标记DNA的百分比。通过退火在5'端标记有相同染料的互补单链DNA(ssDNA),可以生成dsDNA。由于不完美的ssDNA标记,所得的dsDNA是双标记的dsDNA,单标记的dsDNA和未标记的dsDNA的混合物。我们的方法允许测量双标记的dsDNA在总荧光dsDNA池中的百分比。在这种方法中,我们用激光束在焦点体积小于1 fL的情况下激发标记不完全的dsDNA样品,并将荧光信号的涨落相关起来以得到FCS自相关曲线。我们将自相关函数的幅度表示为DNA标记效率的函数;我们对dsDNA样品和参考dsDNA样品进行了比较分析,这是通过在退火过程中添加未标记的ssDNA来提高总dsDNA浓度c(c> 1)倍而制备的。该方法具有灵活性,因为它允许选择参考样品,并且可以根据特定研究的需要调整c值。我们将方法的精度表示为ssDNA标记效率或dsDNA双重标记效率的函数。可以通过更改c值来控制测量精度。

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