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首页> 外文期刊>Angewandte Chemie >Daisy Chain Rotaxanes Made from Interlocked DNA Nanostructures
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Daisy Chain Rotaxanes Made from Interlocked DNA Nanostructures

机译:由互锁的DNA纳米结构制成的菊花链轮烷

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We report the stepwise assembly of supramolecular daisy chain rotaxanes (DCR) made of double-stranded DNA: Small dsDNA macrocycles bearing an axle assemble into a pseudo-DCR precursor that was connected to rigid DNA stoppers to form DCR with the macrocycles hybridized to the axles. In presence of release oligodeoxynucleotides (rODNs), the macrocycles are released from their respective hybridization sites on the axles, leading to stable mechanically interlocked DCRs. Besides the expected threaded DCRs, certain amounts of externally hybridized structures were observed, which dissociate into dumbbell structures in presence of rODNs. We show that the genuine DCRs have significantly higher degrees of freedom in their movement along the thread axle than the hybridized DCR precursors. Interlocking of DNA in DCRs might serve as a versatile principle for constructing functional DNA nanostructures where the movement of the subunits is restricted within precisely confined tolerance ranges.
机译:我们报告了由双链DNA制成的超分子菊花链轮烷(DCR)的逐步组装:带有轴的小型dsDNA大环组装成伪DCR前体,该前体与刚性DNA塞子连接形成DCR,大环与轴杂交。在存在释放寡聚脱氧核苷酸(rODN)的情况下,大环从车轴上各自的杂交位点释放,从而产生稳定的机械互锁的DCR。除了预期的带螺纹DCR,还观察到一定数量的外部杂交结构,这些结构在存在rODN时解离为哑铃结构。我们显示,真正的DCR沿混合轴的运动比混合的DCR前体具有更高的自由度。 DCR中DNA的互锁可作为构建功能性DNA纳米结构的通用原理,在该结构中,亚基的运动被限制在精确限定的公差范围内。

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