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Interlinked DNA nano-circles for measuring topoisomerase II activity at the level of single decatenation events

机译:相互连接的DNA纳米圈用于在单个分解事件水平上测量拓扑异构酶II的活性

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摘要

DNA nano-structures present appealing new means for monitoring different molecules. Here, we demonstrate the assembly and utilization of a surface-attached double-stranded DNA catenane composed of two intact interlinked DNA nano-circles for specific and sensitive measurements of the life essential topoisomerase II (Topo II) enzyme activity. Topo II activity was detected via the numeric release of DNA nano-circles, which were visualized at the single-molecule level in a fluorescence microscope upon isothermal amplification and fluorescence labeling. The transition of each enzymatic reaction to a micrometer sized labeled product enabled quantitative detection of Topo II activity at the single decatenation event level rendering activity measurements in extracts from as few as five cells possible. Topo II activity is a suggested predictive marker in cancer therapy and, consequently, the described highly sensitive monitoring of Topo II activity may add considerably to the toolbox of individualized medicine where decisions are based on very sparse samples.
机译:DNA纳米结构为监测不同分子提供了吸引人的新方法。在这里,我们展示了由两个完整的相互连接的DNA纳米圆组成的表面连接的双链DNA链烷的组装和利用,可对生命必需的拓扑异构酶II(Topo II)酶活性进行特异性和灵敏的测量。通过DNA纳米圈的数字释放来检测Topo II活性,DNA纳米圈在等温扩增和荧光标记后以单分子水平在荧光显微镜中可视化。每个酶促反应向微米级标记产物的过渡,使得在从至少五个细胞中提取的单个脱接事件水平上进行活性检测时就可以定量检测Topo II活性。 Topo II活性是癌症治疗中建议的预测标记,因此,所描述的Topo II活性的高度敏感监测可能会极大地增加个性化药物的工具箱,其中基于非常稀疏的样品进行决策。

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