Abstract
DNA nano-structures present appealing new means for monitoring different molecules. Here, we demonstrate the assembly and utilization of a surfaceattached 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 singlemolecule 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 activitymay add considerably to the toolbox of individualized medicine where decisions are based on very sparse samples.
Originalsprog | Engelsk |
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Tidsskrift | Nucleic Acids Research |
Vol/bind | 45 |
Nummer | 13 |
Sider (fra-til) | 7855-7869 |
Antal sider | 15 |
ISSN | 0305-1048 |
DOI | |
Status | Udgivet - 27 jul. 2017 |