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Active generation of nanoholes in DNA origami scaffolds for programmed catalysis in nanocavities

机译:在DNA折纸支架中的主动产生纳米孔,用于纳米覆盖的编程催化

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DNA origami tiles provide nanostructures for the spatial and temporal control of functional loads on the scaffolds. Here we introduce the active generation of nanoholes in the origami scaffolds using DNAzymes or light as triggers and present the programmed and switchable catalysis in the resulting nanocavities. We engineer "window" domains locked into the origami scaffolds by substrates of the Znsup2+/sup-ion- or Pbsup2+/sup-ion-dependent DNAzymes. Using Znsup2+/sup ions and/or Pbsup2+/sup ions, the programmed unlocking of the "window" domains is demonstrated. The tailored functionalization of the origami scaffolds allows the programmed operation of catalytic processes in the confined nanocavities. Also, the "window" domain is integrated into the origami scaffold using photoisomerizable azobenzene-modified locks. The cyclic photoisomerization of the locks between the cis and trans states leads to a reversible opening and closure of the nanoholes and to the cyclic light-induced switching of catalytic processes in the nanocavities.
机译:DNA折纸瓷砖为支架上的功能载荷的空间和时间控制提供纳米结构。在这里,我们使用DNazymes或光作为触发器介绍折纸支架中的纳米孔的主动产生,并在所得纳米蜂窝中呈现编程和可切换的催化。我们通过Zn 2 + -ion或pb 2 + -ion依赖性dnazymes的依赖性DNazymes锁定在折纸支架中的“窗口”域。使用Zn 2 + 离子和/或Pb 2 + 离子,证明了“窗口”域的编程解锁。折纸支架的定制官能化允许在狭窄的纳米盖中进行催化过程的编程操作。此外,“窗口”域使用光硅基苄苯改性锁将“窗口”域集成到折纸支架中。 CIS和反式状态之间的锁的循环光学硅白化导致纳米孔的可逆开口和闭合和纳米孔中的循环光引起的催化过程切换。

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