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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >A novel DNA tetrahedron-hairpin probe for in situ 'off-on' fluorescence imaging of intracellular telomerase activity
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A novel DNA tetrahedron-hairpin probe for in situ 'off-on' fluorescence imaging of intracellular telomerase activity

机译:一种新颖的DNA四面体发夹探针,用于细胞内端粒酶活性的原位“ off-on”荧光成像

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摘要

A novel three-dimensionally structured DNA probe is reported to realize in situ "off-on" imaging of intracellular telomerase activity. The probe consists of a DNA tetrahedron and a hairpin DNA on one of the vertices of the DNA tetrahedron. It is composed of four modified DNA segments: S1-Au nanoparticle (NP) inserting a telomerase strand primer (TSP) and S2-S4, three Cy5 dye modified DNA segments. Fluorescence of Cy5 at three vertices of the DNA tetrahedron is quenched by the Au NP at the other vertex due to the effective fluorescence resonance energy transfer (FRET) ("off" state). When the probe meets telomerase, the hairpin structure changes to rod-like through complementary hybridization with the telomerase-triggered stem elongation product, resulting in a large distance between the Au NP and Cy5 and the recovery of Cy5 fluorescence ("on" state). The molar ratio of 3 : 1 between the reporter (Cy5) and the target related TSP makes the probe show high sensitivity and recovery efficiency of Cy5 in the presence of telomerase extracted from HeLa cells. Given the functional and compact nanostructure, the mechanically stable and noncytotoxic nature of the DNA tetrahedron, this FRET-based probe provides more opportunities for biosensing, molecular imaging and drug delivery.
机译:据报道,一种新颖的三维结构的DNA探针可实现细胞内端粒酶活性的原位“ off-on”成像。该探针由DNA四面体和DNA四面体的一个顶点上的发夹DNA组成。它由四个修饰的DNA片段组成:插入端粒酶链引物(TSP)的S1-Au纳米颗粒(NP)和三个Cy5染料修饰的DNA片段S2-S4。由于有效的荧光共振能量转移(FRET)(“关闭”状态),DNA四面体三个顶点的Cy5荧光被另一个顶点的Au NP淬灭。当探针遇到端粒酶时,发夹结构通过与端粒酶触发的茎伸长产物的互补杂交而变为棒状,导致Au NP和Cy5之间的距离较大,并且Cy5荧光恢复(“开启”状态)。报告基因(Cy5)与靶标相关TSP之间的摩尔比为3:1,使得该探针在从HeLa细胞提取的端粒酶存在下显示出高的敏感性和Cy5的回收效率。考虑到功能性和紧凑的纳米结构,DNA四面体的机械稳定性和无细胞毒性,这种基于FRET的探针为生物传感,分子成像和药物递送提供了更多机会。

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