Martí Angel A, Li Xiaoxu, Jockusch Steffen, Li Zengmin, Raveendra Bindu, Kalachikov Sergey, Russo James J, Morozova Irina, Puthanveettil Sathyanarayanan V, Ju Jingyue, Turro Nicholas J
Department of Chemistry, Columbia University, New York, NY 10027, USA.
Nucleic Acids Res. 2006 Jun 12;34(10):3161-8. doi: 10.1093/nar/gkl406. Print 2006.
We report here the design, synthesis and application of pyrene binary oligonucleotide probes for selective detection of cellular mRNA. The detection strategy is based on the formation of a fluorescent excimer when two pyrene groups are brought into close proximity upon hybridization of the probes with the target mRNA. The pyrene excimer has a long fluorescence lifetime (>40 ns) compared with that of cellular extracts (approximately 7 ns), allowing selective detection of the excimer using time-resolved emission spectra (TRES). Optimized probes were used to target a specific region of sensorin mRNA yielding a strong excimer emission peak at 485 nm in the presence of the target and no excimer emission in the absence of the target in buffer solution. While direct fluorescence measurement of neuronal extracts showed a strong fluorescent background, obscuring the detection of the excimer signal, time-resolved emission measurements indicated that the emission decay of the cellular extracts is approximately 8 times faster than that of the pyrene excimer probes. Thus, using TRES of the pyrene probes, we are able to selectively detect mRNA in the presence of cellular extracts, demonstrating the potential for application of pyrene excimer probes for imaging mRNAs in cellular environments that have background fluorescence.
我们在此报告用于选择性检测细胞信使核糖核酸(mRNA)的芘二元寡核苷酸探针的设计、合成及应用。检测策略基于当探针与目标mRNA杂交时两个芘基团靠近形成荧光准分子。与细胞提取物的荧光寿命(约7纳秒)相比,芘准分子具有较长的荧光寿命(>40纳秒),这使得利用时间分辨发射光谱(TRES)选择性检测准分子成为可能。优化后的探针靶向sensorin mRNA的特定区域,在有目标物存在时于缓冲溶液中在485纳米处产生强烈的准分子发射峰,而在无目标物时无准分子发射。虽然对神经元提取物的直接荧光测量显示出强烈的荧光背景,掩盖了准分子信号的检测,但时间分辨发射测量表明细胞提取物的发射衰减比芘准分子探针快约8倍。因此,利用芘探针的TRES,我们能够在存在细胞提取物的情况下选择性检测mRNA,证明了芘准分子探针在具有背景荧光的细胞环境中对mRNA进行成像的应用潜力。