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首页> 外文期刊>Analytical chemistry >Excimer-FRET Cascade in Dual DNA Probes: Open Access to Large Stokes Shift, Enhanced Acceptor Light up, and Robust RNA Sensing
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Excimer-FRET Cascade in Dual DNA Probes: Open Access to Large Stokes Shift, Enhanced Acceptor Light up, and Robust RNA Sensing

机译:双DNA探头中的准分子 - FRET级联:对大型斯托克斯班次的开放式访问,增强的受护者点亮,鲁棒RNA感测

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摘要

The efficacy of fluorescent hybridization assays is often limited by the low signal-to-background ratio of the probes that can be partially overcome by sophisticated signal amplification methods. Deep understanding of the mechanisms of fluorescence quenching and energy transfer in complex DNA probes and the choice of optimal donor/acceptor pairs along with rational design can significantly enhance the performance of DNA probes. Here, we proposed and studied novel Forster resonance energy transfer (FRET) dual DNA probes with the excimer-forming pyrene pair as a donor and sulfo-Cy3 dye as an acceptor, which demonstrated remarkable 75-fold enhancement of sulfo-Cy3 fluorescence upon target capturing. Stokes shift up to 220 nm minimizes fluorescence crosstalk. Time-correlated single-photon counting revealed two excited states of pyrene excimer wherein only one is directly involved in the resonance energy transfer to sulfo-Cy3. Optimized DNA probes demonstrated high sensitivity with excellent signal-to-background ratio, which were applied for visualization of 18S rRNA by fluorescent in situ hybridization in HEK-293T cells.
机译:荧光杂交测定的功效通常受到可以通过复杂的信号放大方法部分克服的探针的低信号到背景比的限制。深入了解复杂DNA探针中荧光猝灭和能量转移的机制以及最佳供体/受体对以及合理设计的选择可以显着提高DNA探针的性能。在此,我们提出并研究了新型的福尔斯特共振能量转移(FRET)双DNA探针作为供体和磺基-CY3染料作为受体,作为受体,其在靶标上表现出显着的75倍的增强硫-CY3荧光捕获。 STOKES偏移最多220 nm,可最大限度地减少荧光串扰。时间相关的单光子计数揭示了芘准分子的两种激发态,其中仅一个直接参与共振能量转移至硫胞Cy3。优化的DNA探针表现出高灵敏度,具有优异的信号 - 到背景比,荧光在HEK-293T细胞中荧光杂交施加18S rRNA的可视化。

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