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Single-molecule observation of DNA charge transfer

机译:DNA电荷转移的单分子观察

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摘要

DNA charge transfer highly depends on the electronic interaction between base pairs and reflects the difference in the base composition and sequence. For the purpose of investigating the charge transfer process of individual DNA molecules and the optical readout of DNA information at the single-molecule level, we performed single-molecule observation of the DNA charge transfer process by using single-molecule fluorescence spectroscopy. The DNA charge transfer process, leading to the oxidation of the fluorescent dye, was explored by monitoring the on–off signal of the dye after the charge injection by the excitation of a photosensitizer. The photobleaching efficiency of the dyes by the DNA charge transfer specifically depended on the base sequence and mismatch base pair, demonstrating the discrimination of the individual DNA information. Based on this approach, the optical readout of a single-base mismatch contained in a target DNA was performed at the single-molecule level.
机译:DNA电荷转移在很大程度上取决于碱基对之间的电子相互作用,并反映了碱基组成和序列的差异。为了研究单个DNA分子的电荷转移过程和单分子水平上DNA信息的光学读出,我们使用单分子荧光光谱法对DNA电荷转移过程进行了单分子观察。通过监视光敏剂激发电荷注入后染料的开-关信号,探索了导致荧光染料氧化的DNA电荷转移过程。 DNA电荷转移对染料的光漂白效率具体取决于碱基序列和错配碱基对,从而证明了对各个DNA信息的区分。基于此方法,以单分子水平对靶DNA中包含的单碱基错配进行光学读出。

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