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Single-molecule detection of human topoisomerase I cleavage-ligation activity

机译:单分子检测人类拓扑异构酶I裂解连接活性

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In the present study, we demonstrate the conversion of a single human topoisomerase I mediated DNA cleavage-ligation event happening within nanometer dimensions to a micrometer-sized DNA molecule, readily detectable using standard fluorescence microscopy. This conversion is achieved by topoisomerase I mediated closure of a nicked DNA dumbbell structure, followed by rolling circle amplification. The resulting product consists of multiple tandem repeats of the DNA dumbbell and can subsequently be visualized by annealing to fluorescently labeled probes. Since amplification involves no thermal cycling, each fluorescent rolling circle product, which gives rise to an individual signal upon microscopic analysis, will correspond to a single human topoisomerase I mediated cleavage-ligation event. Regarding sensitivity, speed, and ease of performance, the presented activity assay based on single-molecule product detection is superior to current state of the art assays using supercoiled plasmids or radiolabeled oligonucleotides as the substrate for topoisomerase I activity. Moreover, inherent in the experimental design is the easy adaptation to multiplexed and/or high-throughput systems. Human topoisomerase I is the cellular target of clinically important anticancer drugs, and the effect of such drugs corresponds directly to the intracellular topoisomerase I cleavage-ligation activity level. We therefore believe that the presented setup, measuring directly the number of cleavage-ligation events in a given sample, has great diagnostic potential, adding considerably to the possibilities of accurate prognosis before treatment with topoisomerase I directed chemotherapeutics.
机译:在本研究中,我们证明了在纳米尺寸范围内发生的单个人类拓扑异构酶I介导的DNA裂解连接事件向微米级DNA分子的转化,可以使用标准荧光显微镜轻松检测到。这种转化是通过拓扑异构酶I介导的有缺口的DNA哑铃结构的闭合,然后进行滚环扩增来实现的。所得产物由DNA哑铃的多个串联重复序列组成,随后可以通过退火至荧光标记的探针来观察。由于扩增不涉及热循环,因此在显微镜分析时会产生单个信号的每个荧光滚环产物将对应于单个人类拓扑异构酶I介导的切割连接事件。关于灵敏度,速度和性能的简便性,基于单分子产物检测的提出的活性测定优于使用超螺旋质粒或放射性标记的寡核苷酸作为拓扑异构酶I活性底物的现有技术。此外,实验设计中固有的是易于适应多路复用和/或高通量系统。人拓扑异构酶I是临床上重要的抗癌药物的细胞靶标,此类药物的作用直接对应于胞内拓扑异构酶I裂解连接活性水平。因此,我们认为,直接测量给定样品中裂解连接事件数的方法,具有很大的诊断潜力,极大地增加了拓扑异构酶I指导的化学治疗之前准确预后的可能性。

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