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首页> 外文期刊>Angewandte Chemie >Single-Molecule Visualization of the Activity of a Zn2+-Dependent DNAzyme
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Single-Molecule Visualization of the Activity of a Zn2+-Dependent DNAzyme

机译:单分子可视化的依赖Zn2 +的DNAzyme的活性。

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摘要

We demonstrate the single-molecule imaging of the catalytic reaction of a Zn2+-dependent DNAzyme in a DNA origami nanostructure. The single-molecule catalytic activity of the DNAzyme was examined in the designed nanostructure, a DNA frame. The DNAzyme and a substrate strand attached to two supported dsDNA molecules were assembled in the DNA frame in two different configurations. The reaction was monitored by observing the configurational changes of the incorporated DNA strands in the DNA frame. This configurational changes were clearly observed in accordance with the progress of the reaction. The separation processes of the dsDNA molecules, as induced by the cleavage by the DNAzyme, were directly visualized by high-speed atomic force microscopy (AFM). This nanostructure-based AFM imaging technique is suitable for the monitoring of various chemical and biochemical catalytic reactions at the single-molecule level.
机译:我们展示了DNA折纸纳米结构中依赖Zn2 +的DNAzyme催化反应的单分子成像。在设计的纳米结构(DNA框架)中检查了DNAzyme的单分子催化活性。 DNAzyme和连接到两个支持的dsDNA分子的底物链以两种不同的构型组装在DNA框架中。通过观察DNA框架中掺入的DNA链的构型变化来监测反应。根据反应进程清楚地观察到这种构型变化。由DNAzyme裂解诱导的dsDNA分子的分离过程可以通过高速原子力显微镜(AFM)直接看到。这种基于纳米结构的AFM成像技术适用于在单分子水平上监测各种化学和生化催化反应。

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