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首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >Sequence programmed DNA three-way junctions for templated assembly of fluorescent silver nanoclusters
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Sequence programmed DNA three-way junctions for templated assembly of fluorescent silver nanoclusters

机译:荧光银纳米团簇模板组装的序列编程DNA三路连接

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Fluorescent silver nanoclusters (AgNCs) templated by DNA are promising label free fluorophores with excellent photostability and tunable optical properties. Most of the reported DNA-nanocluster fluorescent tags comprise of programmed strands for the cluster formation either on the edges as overhangs or as loops on the duplex strands. Herein, we report a design strategy for sequence programmed, DNA three-way junctions (DNA-3WJ), comprising of unhybridized cytosine nucleobases in the 3WJ-center, capable of binding to silver ions and stabilizing the AgNCs. The formation of AgNCs in these DNA-3WJs were confirmed by various spectroscopic and microscopic techniques. 3WJ20-C12 comprising of 12 cytosine bases in the center of the DNA-3WJ, form fluorescent nanoclusters with an emission maximum around 630 nm and 12% fluorescence quantum yield. Control DNA-3WJs with six cytosine bases in the center (3WJ20-C6) and ones without cytosine bases (3WJ20) failed to form fluorescent AgNCs confirming the requirement of central, unhybridized cytosine bases for the stabilization of the nanoclusters. Further, the duplex arms of DNA-3WJs were shown to influence the fluorescent properties of AgNCs by varying the size and stability of the cytosine-loop structure of DNA-3WJs. Metal ion interaction studies shows the selectivity of the 3WJ20-C12/AgNCs towards Hg2+ with sensitivity in the nanomolar range.
机译:DNA模糊的荧光银纳米团簇(AGNC)是具有优异的光稳定性和可调谐光学性质的无荧光团的有前途标记。大多数报道的DNA-NaNCluster荧光标签包括用于簇形成的编程股线,其在边缘上作为悬垂或作为双链链上的环。在此,我们报告了序列编程的DNA三元通路(DNA-3WJ)的设计策略,包括在3WJ中心中的未杂交的胞嘧啶核酸酶,能够与银离子结合并稳定AGNC。通过各种光谱和微观技术确认这些DNA-3WJ中AgNC的形成。 3wj20-c12,其包含12个胞嘧啶碱基在DNA-3wj的中心,形成荧光纳米能器,发射最大约630nm和12%的荧光量子产率。在中心(3WJ20-C6)中具有六个胞嘧啶碱基的DNA-3WJ和没有胞嘧啶碱基(3WJ20)的DNA-3WJS未能形成荧光AGNC,证实中央,未杂交的胞嘧啶碱用于稳定纳米能器的碱基。此外,通过改变DNA-3WJS的胞嘧啶环结构的尺寸和稳定性,显示DNA-3WJS的双链臂通过改变胞嘧啶环结构的尺寸和稳定性来影响AGNC的荧光特性。金属离子相互作用研究显示3WJ20-C12 / AgNC在纳米摩尔范围内具有敏感性的HG2 +的选择性。

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