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荧光相关光谱分析用于准确测定荧光 DNA 池中二重标记 DNA 的比例,用于定量生化分析。

Fluorescence correlation spectroscopy analysis for accurate determination of proportion of doubly labeled DNA in fluorescent DNA pool for quantitative biochemical assays.

机构信息

Institute of Physical Chemistry PAS, Kasprzaka 44/52, 01-224 Warsaw, Poland.

出版信息

Biosens Bioelectron. 2014 Jan 15;51:8-15. doi: 10.1016/j.bios.2013.07.010. Epub 2013 Jul 18.

Abstract

Fluorescent double-stranded DNA (dsDNA) molecules labeled at both ends are commonly produced by annealing of complementary single-stranded DNA (ssDNA) molecules, labeled with fluorescent dyes at the same (3' or 5') end. Because the labeling efficiency of ssDNA is smaller than 100%, the resulting dsDNA have two, one or are without a dye. Existing methods are insufficient to measure the percentage of the doubly-labeled dsDNA component in the fluorescent DNA sample and it is even difficult to distinguish the doubly-labeled DNA component from the singly-labeled component. Accurate measurement of the percentage of such doubly labeled dsDNA component is a critical prerequisite for quantitative biochemical measurements, which has puzzled scientists for decades. We established a fluorescence correlation spectroscopy (FCS) system to measure the percentage of doubly labeled dsDNA (PDL) in the total fluorescent dsDNA pool. The method is based on comparative analysis of the given sample and a reference dsDNA sample prepared by adding certain amount of unlabeled ssDNA into the original ssDNA solution. From FCS autocorrelation functions, we obtain the number of fluorescent dsDNA molecules in the focal volume of the confocal microscope and PDL. We also calculate the labeling efficiency of ssDNA. The method requires minimal amount of material. The samples have the concentration of DNA in the nano-molar/L range and the volume of tens of microliters. We verify our method by using restriction enzyme Hind III to cleave the fluorescent dsDNA. The kinetics of the reaction depends strongly on PDL, a critical parameter for quantitative biochemical measurements.

摘要

荧光双链 DNA(dsDNA)分子通常通过互补单链 DNA(ssDNA)分子的退火在两端标记,这些 ssDNA 分子在相同(3' 或 5')端用荧光染料标记。由于 ssDNA 的标记效率小于 100%,因此得到的 dsDNA 有两个、一个或没有染料。现有的方法不足以测量荧光 DNA 样品中双链 DNA 双标记成分的百分比,甚至难以将双标记 DNA 成分与单标记成分区分开来。准确测量此类双链 DNA 双标记成分的百分比是定量生化测量的关键前提,这几十年来一直困扰着科学家们。我们建立了荧光相关光谱(FCS)系统来测量总荧光 dsDNA 池中的双链 DNA 双标记(PDL)百分比。该方法基于对给定样品和通过将一定量未标记的 ssDNA 添加到原始 ssDNA 溶液中制备的参考 dsDNA 样品的比较分析。从 FCS 自相关函数中,我们获得了共焦显微镜焦体积中荧光 dsDNA 分子的数量和 PDL。我们还计算了 ssDNA 的标记效率。该方法需要最少的材料。样品的 DNA 浓度在纳摩尔/升范围内,体积为数十微升。我们通过使用 Hind III 限制酶切割荧光 dsDNA 来验证我们的方法。该反应的动力学强烈依赖于 PDL,这是定量生化测量的关键参数。

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