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Direct Visualization of Walking Motions of Photocontrolled Nanomachine on the DNA Nanostructure

机译:直接可视化光控纳米机在DNA纳米结构上的步行运动

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摘要

A light-driven artificial molecular nanomachine was constructed based on DNA scaffolding. Pyrene-modified walking strands and disulfide bond-connected stator strands, employed as anchorage sites to support walker movement, were assembled into a 2D DNA tile. Pyrene molecules excited by photoirradiation at 350 nm induced cleavage of disulfide bond-connected stator strands, enabling the DNA walker to migrate from one cleaved stator to the next on the DNA tile. The time-dependent movement of the walker was observed and the entire walking process of the walker was characterized by distribution of the walker-stator duplex at four anchorage sites on the tile under different irradiation times. Importantly, the light-fuelled mechanical movements on DNA tile were first visualized in real time during UV irradiation using high-speed atomic force microscopy (HS-AFM).
机译:基于DNA支架构建了光驱动人工分子纳米机。修饰的步行链和二硫键连接的定子链,用作支撑步行者运动的锚点,被组装成2D DNA瓦片。在350 nm处通过光辐照激发的molecules分子诱导了二硫键连接的定子链的裂解,使DNA Walker能够从一个裂解的定子迁移到DNA瓦上的另一个定子。观察到步行者随时间的运动,并且步行者的整个步行过程的特征是步行者-定子双体在不同照射时间下在瓷砖上的四个锚固点处的分布。重要的是,首先使用高速原子力显微镜(HS-AFM)在UV照射过程中实时可视化DNA砖上的光动力机械运动。

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