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Acoustic characterization of nanoswitch structures: Application to the DNA holliday junction

机译:纳米开关结构的声学表征:在DNA霍利迪结中的应用

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摘要

A novel biophysical approach in combination with an acoustic device is demonstrated as a sensitive, rapid, and label-free technique for characterizing various structures of the DNA Holliday Junction (J1) nanoswitch. We were successful in discriminating the "closed" from the "open" state, as well as confirming that the digestion of the J1 junction resulted in the two, anticipated, rod-shaped, 20 bp long fragments. Furthermore, we propose a possible structure for the ~10 nm long (DNA58) component participating in the J1 assembly. This work reveals the potential of acoustic devices as a powerful tool for molecular conformation studies.
机译:结合声学设备的新型生物物理方法被证明是一种灵敏,快速且无标签的技术,可用于表征DNA霍利迪交界点(J1)纳米开关的各种结构。我们成功地将“关闭”状态与“打开”状态区分开,并确认J1连接处的消化导致两个预期的杆状20 bp长片段。此外,我们为参与J1组装的〜10 nm长(DNA58)组件提出了一种可能的结构。这项工作揭示了声学装置作为分子构象研究的有力工具的潜力。

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