Ota N, Hirano K, Warashina M, Andrus A, Mullah B, Hatanaka K, Taira K
National Institute for Advanced Interdisciplinary Research, and National Institute of Bioscience and Human Technology, Agency of Industrial Science & Technology, MITI, Tsukuba Science City 305, Japan.
Nucleic Acids Res. 1998 Feb 1;26(3):735-43. doi: 10.1093/nar/26.3.735.
We previously developed a method for monitoring the integrity of oligonucleotides in vitro and in vivo by quantitating fluorescence resonance energy transfer (FRET) between two different fluorochromes attached to a single oligonucleotide. As an extension of this analysis, we examined changes in the extent of FRET in the presence or absence of target nucleic acids with a specific sequence and a higher-ordered structure. In this system FRET was maximal when probes were free in solution and a decrease in FRET was evidence of successful hybridization. We used a single-stranded oligodeoxyribonucleotide labeled at its 5'-end and its 3'-end with 6-carboxyfluorescein and 6-carboxytetramethylrhodamine, respectively. Incubation of the probe with a single-stranded complementary oligonucleotide reduced the FRET. Moreover, a small change in FRET was also observed when the probe was incubated with an oligonucleotide in which the target site had been embedded in a stable hairpin structure. The decrease in the extent of FRET depended on the length of the stem region of the hairpin structure and also on the higher-ordered structure of the probe. These results indicate that this spectrofluorometric method and FRET probes can be used to estimate the efficacy of hybridization between a probe and its target site within highly ordered structures. This conclusion based on changes in FRET was confirmed by gel-shift assays.
我们之前开发了一种通过定量连接在单个寡核苷酸上的两种不同荧光染料之间的荧光共振能量转移(FRET)来监测体外和体内寡核苷酸完整性的方法。作为该分析的扩展,我们研究了在存在或不存在具有特定序列和高级结构的靶核酸的情况下FRET程度的变化。在这个系统中,当探针在溶液中游离时FRET最大,FRET的降低是成功杂交的证据。我们使用了一个在其5'端和3'端分别标记有6-羧基荧光素和6-羧基四甲基罗丹明的单链寡脱氧核糖核苷酸。将该探针与单链互补寡核苷酸一起孵育会降低FRET。此外,当该探针与靶位点已嵌入稳定发夹结构的寡核苷酸一起孵育时,也观察到FRET有微小变化。FRET程度的降低取决于发夹结构茎区的长度,也取决于探针的高级结构。这些结果表明,这种荧光光谱法和FRET探针可用于评估探针与其在高度有序结构内的靶位点之间杂交的效率。基于FRET变化得出的这一结论通过凝胶迁移试验得到了证实。