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Advancing Biophysics Using DNA Origami
Annual Review of Biophysics ( IF 12.4 ) Pub Date : 2021-05-06 , DOI: 10.1146/annurev-biophys-110520-125739
Wouter Engelen 1 , Hendrik Dietz 1
Affiliation  

DNA origami enables the bottom-up construction of chemically addressable, nanoscale objects with user-defined shapes and tailored functionalities. As such, not only can DNA origami objects be used to improve existing experimental methods in biophysics, but they also open up completely new avenues of exploration. In this review, we discuss basic biophysical concepts that are relevant for prospective DNA origami users. We summarize biochemical strategies for interfacing DNA origami with biomolecules of interest. We describe various applications of DNA origami, emphasizing the added value or new biophysical insights that can be generated: rulers and positioning devices, force measurement and force application devices, alignment supports for structural analysis for biomolecules in cryogenic electron microscopy and nuclear magnetic resonance, probes for manipulating and interacting with lipid membranes, and programmable nanopores. We conclude with some thoughts on so-far little explored opportunities for using DNA origami in more complex environments such as the cell or even organisms.

中文翻译:


使用DNA折纸推进生物物理学

DNA折纸可实现具有用户定义的形状和量身定制的功能的可化学寻址的纳米级对象的自下而上的构建。因此,DNA折纸对象不仅可以用于改善生物物理学中现有的实验方法,而且还为探索开辟了全新的途径。在这篇综述中,我们讨论了与潜在的DNA折纸用户有关的基本生物物理概念。我们总结了DNA折纸与感兴趣的生物分子接口的生化策略。我们描述了DNA折纸的各种应用,着重强调了可以产生的附加值或新的生物物理见解:标尺和定位设备,力测量和力施加设备,在低温电子显微镜和核磁共振中对生物分子进行结构分析的对准支持,用于与脂膜和可编程纳米孔相互作用的探针。最后,我们对在复杂的环境(例如细胞或生物体)中使用DNA折纸的探索机会进行了探索,得出了一些结论。

更新日期:2021-05-07
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