碱基对
堆积
化学物理
费斯特共振能量转移
碱基
纳米技术
配对
DNA
DNA纳米技术
化学
生物物理学
材料科学
结晶学
物理
荧光
光学
凝聚态物理
生物化学
生物
超导电性
有机化学
作者
Thomas Gerling,Klaus F. Wagenbauer,Andrea M. Neuner,Hendrik Dietz
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2015-03-27
卷期号:347 (6229): 1446-1452
被引量:625
标识
DOI:10.1126/science.aaa5372
摘要
We demonstrate that discrete three-dimensional (3D) DNA components can specifically self-assemble in solution on the basis of shape-complementarity and without base pairing. Using this principle, we produced homo- and heteromultimeric objects, including micrometer-scale one- and two-stranded filaments and lattices, as well as reconfigurable devices, including an actuator, a switchable gear, an unfoldable nanobook, and a nanorobot. These multidomain assemblies were stabilized via short-ranged nucleobase stacking bonds that compete against electrostatic repulsion between the components' interfaces. Using imaging by electron microscopy, ensemble and single-molecule fluorescence resonance energy transfer spectroscopy, and electrophoretic mobility analysis, we show that the balance between attractive and repulsive interactions, and thus the conformation of the assemblies, may be finely controlled by global parameters such as cation concentration or temperature and by an allosteric mechanism based on strand-displacement reactions.
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