Tsuji A, Koshimoto H, Sato Y, Hirano M, Sei-Iida Y, Kondo S, Ishibashi K
Laboratory of Molecular Biophotonics, Hamakita 434-8555, Japan.
Biophys J. 2000 Jun;78(6):3260-74. doi: 10.1016/S0006-3495(00)76862-7.
We observed the expression of human c-fos mRNA in a living transfected Cos7 cell under a fluorescence microscope by detecting hybrid formed with two fluorescently labeled oligodeoxynucleotides (oligoDNAs) and c-fos mRNA in the cytoplasm. Two fluorescent oligoDNAs were prepared, each labeled with a fluorescence molecule different from the other. When two oligoDNAs hybridized to an adjacent sequence on the target mRNA, the distance between the two fluorophores became very close and fluorescence resonance energy transfer (FRET) occurred, resulting in changes in fluorescence spectra. To find sequences of high accessibility of c-fos RNA to oligoDNAs, several sites that included loop structures on the simulated secondary structure were selected. Each site was divided into two halves, and the pair of fluorescent oligoDNAs complementary to the sequence was synthesized. Each site was examined for the efficiency of hybridization to c-fos RNA by measuring changes in fluorescence spectra when c-fos RNA was added to the pair of oligoDNAs in solution. A 40 mer specific site was found, and the pair of oligoDNAs for the site were microinjected into Cos7 cells that expressed c-fos mRNA. To block oligoDNAs from accumulating in the nucleus, oligoDNA was bound to a macromolecule (streptavidin) to prevent passage of nuclear pores. Hybridization of the pair of oligoDNAs to c-fos mRNA in the cytoplasm was detected in fluorescence images indicating FRET.
我们通过检测与细胞质中c-fos mRNA形成的杂交体,在荧光显微镜下观察了活的转染Cos7细胞中人类c-fos mRNA的表达。制备了两种荧光寡脱氧核苷酸(oligoDNA),每种都用与另一种不同的荧光分子标记。当两种oligoDNA与靶mRNA上的相邻序列杂交时,两个荧光团之间的距离变得非常接近,发生荧光共振能量转移(FRET),导致荧光光谱发生变化。为了找到c-fos RNA对oligoDNA具有高可及性的序列,在模拟二级结构上选择了几个包含环结构的位点。每个位点被分成两半,并合成了与该序列互补的一对荧光oligoDNA。通过测量将c-fos RNA添加到溶液中的oligoDNA对时荧光光谱的变化,检测每个位点与c-fos RNA杂交的效率。发现了一个40聚体的特定位点,并将该位点的oligoDNA对显微注射到表达c-fos mRNA的Cos7细胞中。为了阻止oligoDNA在细胞核中积累,将oligoDNA与大分子(链霉亲和素)结合,以防止其通过核孔。在指示FRET的荧光图像中检测到细胞质中oligoDNA对与c-fos mRNA的杂交。