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Engineering a responsive DNA triple helix into an octahedral DNA nanostructure for a reversible opening/closing switching mechanism: a computational and experimental integrated study

机译:将响应性DNA三重螺旋工程到八面体DNA纳米结构中,用于可逆的打开/关闭开关机构:计算和实验综合研究

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摘要

We propose an experimental and simulative approach to study the effect of integrating a DNA functional device into a large-sized DNA nanostructure. We selected, as a test bed, a well-known and characterized pH-dependent clamp-switch, based on a parallel DNA triple helix, to be integrated into a truncated octahedral scaffold. We designed, simulated and experimentally characterized two different functionalized DNA nanostructures, with and without the presence of a spacer between the scaffold and the functional elements. The experimental and simulative data agree in validating the need of a spacer for the occurrence of the pH dependent switching mechanism. The system is fully reversible and the switching can be monitored several times without any perturbation, maintaining the same properties of the isolated clamp switch in solution.
机译:我们提出了一种实验和模拟方法来研究将DNA功能装置与大尺寸DNA纳米结构集成的效果。 我们选择,作为试验台,一种众所周知的和表征pH依赖性钳位开关,基于并联DNA三重螺旋,待整合到截短的八面体支架中。 我们设计,模拟和实验表征了两个不同的官能化DNA纳米结构,并且在支架和功能元件之间存在间隔物而没有存在。 实验性和模拟数据在验证适用于PH依赖性开关机构的情况下验证垫片的需要。 系统完全可逆,可以在没有任何扰动的情况下进行多次监测切换,在溶液中保持相同的夹具开关的特性。

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