Fluorescence correlation spectroscopy as a detection tool of point mutation in genes

Masataka Kinjo, Goro Nishimura
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Abstract

Fluorescence correlation spectroscopy (FCS) provides information about two important parameters in molecular biology. These are the average number of molecules in the detection volume, and the translational diffusion coefficient of the molecules. Although the properties of the translational diffusion reflect the molecular weight and shape, our work focuses on the analysis of the number of cleaved DNA fragments in solution. The cleavage of fluorescently labelled M13 DNA and pUC19 DNA was carried out with three kinds of restriction enzymes (HaeIII, HgaI and BsmAI), and the number of DNA fragments was monitored using FCS. The reciprocal value of the autocorrelation function at time τ = 0 is consistent with the number of fragments that are expected from restriction enzyme maps of the DNA. Our study indicates the capability of FCS as a tool for finding genetic differences in DNA sequences.

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荧光相关光谱作为基因点突变的检测工具
荧光相关光谱(FCS)提供了分子生物学中两个重要参数的信息。这些是检测体积中分子的平均数量,以及分子的平动扩散系数。虽然平移扩散的性质反映了分子量和形状,但我们的工作重点是分析溶液中被切割的DNA片段的数量。用三种限制性内切酶(HaeIII、HgaI和BsmAI)对荧光标记的M13 DNA和pUC19 DNA进行切割,并用FCS监测DNA片段的数量。自相关函数在τ = 0时刻的倒数值与DNA限制性内切酶图谱中预期的片段数一致。我们的研究表明FCS可以作为发现DNA序列遗传差异的工具。
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