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Conformational Control of DNA Origami by DNA Oligomers Intercalators and UV Light

机译:DNA低聚物嵌入剂和UV光的DNA折聚物的构象控制

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摘要

DNA origami has garnered great attention due to its excellent programmability and precision. It offers a powerful means to create complex nanostructures which may not be possible by other methods. The macromolecular structures may be used as static templates for arranging proteins and other molecules. They are also capable of undergoing structural transformation in response to external signals, which may be exploited for sensing and actuation at the nanoscale. Such on-demand reconfigurations are executed mostly by DNA oligomers through base-pairing and/or strand displacement, demonstrating drastic shape changes between two different states, for example, open and close. Recent studies have developed new mechanisms to modulate the origami conformation in a controllable, progressive manner. Here we present several methods for conformational control of DNA origami nanostructures including chemical adducts and UV light as well as widely applied DNA oligomers. The detailed methods should be useful for beginners in the field of DNA nanotechnology.
机译:DNA Origami由于其优良的可编程性和精确度而获得了极大的关注。它提供了一种强大的方法来创建复杂的纳米结构,这些纳米结构可能无法通过其他方法。大分子结构可以用作布置蛋白质和其他分子的静态模板。它们还能够响应于外部信号进行结构转换,这可以被利用以在纳米级上进行传感和致动。这种按需重新配置由DNA低聚物通过基部配对和/或链位移来执行,展示两种不同状态之间的剧烈形状变化,例如打开和关闭。最近的研究已经开发出新的机制,以可控,逐步的方式调节折纸构象。在这里,我们提出了几种用于构象控制DNA折纸纳米结构的方法,包括化学加合物和UV光以及广泛应用的DNA低聚物。详细方法对于DNA纳米技术领域的初学者来说应该是有用的。

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