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首页> 外文期刊>Angewandte Chemie >Logic Gating by Macrocycle Displacement Using a Double-Stranded DNA [3]Rotaxane Shuttle
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Logic Gating by Macrocycle Displacement Using a Double-Stranded DNA [3]Rotaxane Shuttle

机译:通过使用双链DNA [3]轮烷穿梭大环位移的逻辑门控

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Molecular interlocked systems with mechanically trapped components can serve as versatile building blocks for dynamic nanostructures. Here we report the synthesis of unprecedented double-stranded (ds) DNA [2]- and [3]rotax-anes with two distinct stations for the hybridization of the macrocycles on the axle. In the [3]rotaxane, the release and migration of the "shuttle ring" mobilizes a second macrocycle in a highly controlled fashion. Different oligodeoxynucleotides (ODNs) employed as inputs induce structural changes in the system that can be detected as diverse logically gated output signals. We also designed nonsymmetrical [2]rotaxanes which allow unambiguous localization of the position of the macro-cycle by use of atomic force microscopy (AFM). Either light irradiation or the use of fuel ODNs can drive the threaded macrocycle to the desired station in these shuttle systems. The DNA nanostructures introduced here constitute promising prototypes for logically gated cargo delivery and release shuttles.
机译:具有机械捕获组件的分子互锁系统可以用作动态纳米结构的通用构建基块。在这里,我们报告了空前的双链(ds)DNA [2]-和[3] rotax-烷烃的合成,带有两个不同的站点,用于轴上大环的杂交。在[3]轮烷中,“穿梭环”的释放和迁移以高度受控的方式动员了第二个大环。用作输入的不同寡聚脱氧核苷酸(ODN)引起系统中的结构变化,可以将其检测为各种逻辑门控输出信号。我们还设计了非对称[2]轮烷,通过使用原子力显微镜(AFM)可以明确定位大环的位置。光线照射或使用燃料ODN都可以将带螺纹的大循环驱动到这些穿梭系统中的所需站点。此处介绍的DNA纳米结构构成了用于逻辑门控货物运输和释放梭的有希望的原型。

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