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Precise structure control of three-state nanomechanical DNA origami devices

机译:三态纳米机械DNA折纸装置的精确结构控制

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Precise structure switching between all of the three forms of three-state nanomechanical DNA origami devices has been accomplished. A nanomechanical DNA origami device called DNA origami pliers, which consists of two levers of 170-nm long, 20-nm wide, and 2-nm thick connected at a Holliday-junction fulcrum, takes three conformations: closed parallel, closed antiparallel, and open cross forms. They were previously applied to construct detection systems for biomolecules in single-molecular resolution by observing the structure switching between cross form and one of the other two forms under atomic force microscope (AFM). We redesigned DNA origami pliers in this study to let them freely switch between all of the three states including parallel-antiparallel direct switching without taking cross form. By the addition of appropriate switcher strands to the solution, hybridization and dehybridization of particular binder strands that fix the levers into predetermined state were selectively triggered as programmed in their sequence. Circuit structure switching through all of the three states in both of the two opposite direction was even successful with the new design.
机译:已经完成了三态纳米机械DNA折纸装置的所有三种形式之间的精确结构切换。一种纳米机械DNA折纸装置,称为DNA折纸钳,该装置由两个长170 nm,宽20 nm和2 nm厚的杠杆连接在霍利迪结支点处,具有三种构型:闭合平行,闭合反平行和闭合。开放式交叉表格。通过在原子力显微镜(AFM)下观察十字形与其他两种形式之一之间的结构转换,它们以前被用于构建单分子分辨率的生物分子检测系统。在本研究中,我们重新设计了DNA折纸钳,以使它们能够在所有三种状态之间自由切换,包括并行-反并行直接转换而无需采用交叉形式。通过向溶液中添加适当的转换链,可以按照编程顺序选择性地触发将杠杆固定在预定状态的特定结合链的杂交和去杂化。在新设计中,电路结构在两个相反方向上的所有三种状态之间的切换甚至是成功的。

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