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原子力显微镜直接成像纳米机械 DNA 折纸“单分子信标”。

Nanomechanical DNA origami 'single-molecule beacons' directly imaged by atomic force microscopy.

机构信息

Research Center for Advanced Science and Technology, The University of Tokyo, 4-6-1 Komaba, Meguro, Tokyo 153-8904, Japan.

出版信息

Nat Commun. 2011 Aug 23;2:449. doi: 10.1038/ncomms1452.

Abstract

DNA origami involves the folding of long single-stranded DNA into designed structures with the aid of short staple strands; such structures may enable the development of useful nanomechanical DNA devices. Here we develop versatile sensing systems for a variety of chemical and biological targets at molecular resolution. We have designed functional nanomechanical DNA origami devices that can be used as 'single-molecule beacons', and function as pinching devices. Using 'DNA origami pliers' and 'DNA origami forceps', which consist of two levers ~170 nm long connected at a fulcrum, various single-molecule inorganic and organic targets ranging from metal ions to proteins can be visually detected using atomic force microscopy by a shape transition of the origami devices. Any detection mechanism suitable for the target of interest, pinching, zipping or unzipping, can be chosen and used orthogonally with differently shaped origami devices in the same mixture using a single platform.

摘要

DNA 折纸术涉及在短的订书钉链的辅助下,将长的单链 DNA 折叠成设计好的结构;这种结构可以帮助开发出有用的纳米机械 DNA 器件。在这里,我们开发了多功能传感系统,用于在分子水平上检测各种化学和生物靶标。我们设计了功能性纳米机械 DNA 折纸器件,可以用作“单分子信标”,并用作夹断器件。使用由两个约 170nm 长的杠杆在支点处连接而成的“DNA 折纸钳”和“DNA 折纸镊”,可以通过原子力显微镜观察到各种单分子无机和有机靶标(从金属离子到蛋白质)的形状转变。任何适合感兴趣的目标的检测机制,如夹断、拉合或拉开,都可以选择,并使用同一个平台,在同一个混合物中使用不同形状的折纸器件进行正交使用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b32/3265375/ce0b2b19547f/ncomms1452-f1.jpg

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