Institute of Chemistry, The Center for Nanoscience and Nanotechnology , The Hebrew University of Jerusalem , Jerusalem 91904 , Israel.
Nano Lett. 2018 Apr 11;18(4):2718-2724. doi: 10.1021/acs.nanolett.8b00793. Epub 2018 Mar 21.
The switchable reconfiguration of a mixture of two dimers of DNA origami tiles, AB and CD, into a mixture of two DNA origami dimers composed of AD and CB, using a collection of fuel and antifuel strands, is presented. The reversible reconfiguration of the mixture of dimers AB and CD into AD and CB, is followed by labeling each of the tiles with 0, 1, 2, and 3 4× hairpins labels and by imaging the dimer structures by atomic force microscopy. Subjecting the reconfigurable dimer mixtures to a collection of Mg-ion-dependent DNAzyme subunits and the substrates consisting of the ROX/BHQ2-modified substrate and the FAM/BHQ1-modified substrate leads to the triggered and programmed switchable operation, in the presence of appropriate fuel and antifuel strands. In the presence of the AB and CD mixture, the DNAzyme subunits cleaving the ROX/BHQ2-modified substrate is switched on, leading to the fluorescence of ROX. The reconfiguration of the AB and CD dimer mixture to the AD and CB dimer mixture leads to the assembly of the DNAzyme subunits that switches on the cleavage of the FAM/BHQ1-modified substrate and to the fluorescence of FAM. By the cyclic and reversible reconfiguration of the AB and CD dimer mixture to the AD and CB dimer mixture, in the presence of the appropriate fuel and antifuel strands, the switchable catalytic operation of two Mg-ion-dependent DNAzymes, leading to the fluorescence of ROX or FAM, is demonstrated.
提出了一种使用燃料和反燃料链将两种 DNA 折纸二聚体 AB 和 CD 的混合物可逆地重新配置为 AD 和 CB 的混合物的方法。通过原子力显微镜对每个二聚体进行成像,对二聚体 AB 和 CD 进行重新配置,随后对每个瓦片进行标记,标记为 0、1、2 和 3 个 4×发夹标签。使可重构二聚体混合物经受一系列 Mg 离子依赖性 DNA 酶亚基和包含 ROX/BHQ2 修饰的底物和 FAM/BHQ1 修饰的底物的底物的作用,在存在适当的燃料和反燃料链的情况下,会导致触发和编程的可切换操作。在存在 AB 和 CD 混合物的情况下,打开了切割 ROX/BHQ2 修饰的底物的 DNA 酶亚基,导致 ROX 荧光。AB 和 CD 二聚体混合物的重新配置为 AD 和 CB 二聚体混合物导致 DNA 酶亚基的组装,该组装打开了 FAM/BHQ1 修饰的底物的切割并产生 FAM 荧光。通过在适当的燃料和反燃料链存在下,使 AB 和 CD 二聚体混合物循环且可逆地重新配置为 AD 和 CB 二聚体混合物,演示了两种 Mg 离子依赖性 DNA 酶的可切换催化作用,导致 ROX 或 FAM 的荧光。