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Nano-Encrypted Morse Code: A Versatile Approach to Programmable and Reversible Nanoscale Assembly and Disassembly

机译:纳米加密莫尔斯码:一个通用的方法以可编程和可逆纳米装拆

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摘要

While much work has been devoted to nanoscale assembly of functional materials, selective reversible assembly of components in the nanoscale pattern at selective sites has received much less attention. Exerting such a reversible control of the assembly process will make it possible to fine-tune the functional properties of the assembly and to realize more complex designs. Herein, by taking advantage of different binding affinities of biotin and desthiobiotin toward streptavidin, we demonstrate selective and reversible decoration of DNA origami tiles with streptavidin, including revealing an encrypted Morse code “NANO” and reversible exchange of uppercase letter “I” with lowercase “i”. The yields of the conjugations are high (> 90%) and the process is reversible. We expect this versatile conjugation technique to be widely applicable with different nanomaterials and templates.
机译:尽管已经将大量工作致力于功能材料的纳米级组装,但是在选择性部位以纳米级图案进行的组件的可逆选择性组装受到的关注却少得多。对装配过程进行这种可逆的控制将使微调装配的功能特性和实现更复杂的设计成为可能。在此,我们利用生物素和去硫生物素对链霉亲和素的不同结合亲和力,展示了链霉亲和素对DNA折纸瓦的选择性和可逆修饰,包括揭示加密的摩尔斯电码“ NANO”和可逆交换大写字母“ I”和小写字母“一世”。共轭的收率很高(> 90%),并且该过程是可逆的。我们期望这种通用的共轭技术将广泛适用于不同的纳米材料和模板。

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