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A universal design for a DNA probe providing ratiometric fluorescence detection by generation of silver nanoclusters

机译:一个DNA探针提供的通用设计比率计由一代荧光检测银的制备

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DNA-stabilized silver nanoclusters (AgNCs), the fluorescence emission of which can rival that of typical organic fluorophores, have made possible a new class of label-free molecular beacons for the detection of single-stranded DNA. Like fluorophore-quencher molecular beacons (FQ-MBs) AgNC-based molecular beacons (AgNC-MBs) are based on a single-stranded DNA that undergoes a conformational change upon binding a target sequence. The new conformation exposes a stretch of single-stranded DNA capable of hosting a fluorescent AgNC upon reduction in the presence of Ag+ ions. The utility of AgNC-MBs has been limited, however, because changing the target binding sequence unpredictably alters cluster fluorescence. Here we show that the original AgNC-MB design depends on bases in the target-binding (loop) domain to stabilize its AgNC. We then rationally alter the design to overcome this limitation. By separating and lengthening the AgNC-stabilizing domain, we create an AgNC-hairpin probe with consistent performance for arbitrary target sequence. This new design supports ratiometric fluorescence measurements of DNA target concentration, thereby providing a more sensitive, responsive and stable signal compared to turn-on AgNC probes. Using the new design, we demonstrate AgNC-MBs with nanomolar sensitivity and singe-nucleotide specificity, expanding the breadth of applicability of these cost-effective probes for biomolecular detection.
机译:DNA-stabilized银制备(AgNCs)荧光发射的对手的典型的有机荧光团,有成为可能label-free分子信标的新类单链DNA的检测。fluorophore-quencher分子信标(FQ-MBs)AgNC-based分子信标(AgNC-MBs)为基础单链DNA,经历构象变化在绑定一个目标序列。有能力举办的单链DNA荧光AgNC在减少的存在Ag) +离子。有限,然而,由于不断变化的目标绑定序列不可预知的改变集群荧光。AgNC-MB设计取决于基地约束性目标域稳定(循环)AgNC。克服这个限制。延长AgNC-stabilizing域,我们创建一个AgNC-hairpin探针与一致任意目标序列的性能。新设计支持比率荧光测量目标DNA的浓度,从而提供一个更为敏感,响应和稳定信号相比,刺激AgNC调查。新的设计,我们将演示AgNC-MBs摩尔敏感性和singe-nucleotide特异性,拓展的广度适用性的具有成本效益的调查生物分子检测。

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