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首页> 外文期刊>Angewandte Chemie >Complex Reconfiguration of DNA Nanostructures
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Complex Reconfiguration of DNA Nanostructures

机译:DNA纳米结构的复杂重配置

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摘要

Nucleic acids have been used to create diverse synthetic structural and dynamic systems. Toehold-mediated strand displacement has enabled the construction of sophisticated circuits, motors, and molecular computers. Yet it remains challenging to demonstrate complex structural reconfiguration in which a structure changes from a starting shape to another arbitrarily prescribed shape. To address this challenge, we have developed a general structural-reconfiguration method that utilizes the modularly interconnected architecture of single-stranded DNA tile and brick structures. The removal of one component strand reveals a newly exposed toehold on a neighboring strand, thus enabling us to remove regions of connected component strands without the need to modify the strands with predesigned external toeholds. By using this method, we reconfigured a two-dimensional rectangular DNA canvas into diverse prescribed shapes. We also used this method to reconfigure a three-dimensional DNA cuboid.
机译:核酸已用于创建各种合成的结构和动力学系统。脚趾介导的链位移使复杂的电路,电动机和分子计算机的构造成为可能。然而,证明复杂的结构重新配置仍然具有挑战性,在复杂的结构重新配置中,结构从初始形状更改为其他任意指定的形状。为了解决这一挑战,我们开发了一种通用的结构重新配置方法,该方法利用了单链DNA瓷砖和砖块结构的模块化互连体系结构。一个成分链的去除揭示了相邻链上的新暴露的脚趾,从而使我们能够去除连接的成分链的区域,而无需用预先设计的外部脚趾修饰链。通过使用此方法,我们将二维矩形DNA画布重新配置为各种规定的形状。我们还使用这种方法来重新配置三维DNA长方体。

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