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Linking two DNA duplexes with a rigid linker for DNA nanotechnology

机译:使用DNA纳米技术的刚性接头连接两个DNA双链体

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DNA has recently emerged as a promising material for the construction of nanosized architectures. Chemically modified DNA has been suggested to be an important component of such architectural building blocks. We have designed and synthesized a novel H-shaped DNA oligonucleotide dimer that is cross-linked with a structurally rigid linker composed of phenylene and ethynylene groups. A rotatable DNA unit was constructed through the self-assembly of this H-shaped DNA component and two complementary DNA oligonucleotides. In addition to the rotatable unit, a locked DNA unit containing two H-shaped DNA components was also constructed. As an example of an extended locked structure, a hexagonal DNA origami dimer and oligomer were constructed by using H-shaped DNA as linkers.
机译:DNA最近已成为一种有前途的材料,可用于构建纳米结构。已经提出化学修饰的DNA是此类建筑构件的重要组成部分。我们设计并合成了一种新型的H形DNA寡核苷酸二聚体,该二聚体与由亚苯基和亚乙炔基组成的结构刚性连接子交联。通过此H形DNA组件和两个互补DNA寡核苷酸的自组装,构建了一个可旋转的DNA单元。除了可旋转单元之外,还构建了包含两个H形DNA成分的锁定DNA单元。作为延伸的锁定结构的实例,通过使用H形DNA作为接头构建了六边形DNA折纸二聚体和寡聚物。

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