Center for Molecular Design and Biomimetics, The Biodesign Institute, Arizona State University, 1001 S. McAllister Avenue, Tempe, AZ, 85281, USA.
Department of Physics, Arizona State University, Physical Sciences Building, Room 470, PO Box 871504, Tempe, AZ, 85287-1504, USA.
Angew Chem Int Ed Engl. 2018 Jul 20;57(30):9341-9345. doi: 10.1002/anie.201804264. Epub 2018 Jun 22.
A reconfigurable DNA nano-tweezer is reported that can be switched between a closed and open state with a brief pulse of UV light. In its initial state, the tweezer is held shut using a hairpin with a single-stranded poly-A loop. Also incorporated in the structure is a poly-T trigger strand bearing seven photocaged residues. Upon illumination with 365 nm light, the cages are removed and the trigger strand hybridizes to the loop, opening the tweezer and increasing the distance between its arms from 4 to 18 nm. This intramolecular process is roughly 60 times faster than adding an external trigger strand, and provides a mechanism for the rapid interconversion of DNA nanostructures with light.
研究人员报告了一种可重构的 DNA 纳米镊子,它可以在短脉冲的紫外光照射下在关闭和打开两种状态之间切换。在初始状态下,镊子通过带有单链多 A 环的发夹保持关闭状态。结构中还包含一条带有七个光笼化残基的聚 T 触发链。用 365nm 的光照射时,笼被去除,触发链与环杂交,打开镊子,使臂之间的距离从 4nm 增加到 18nm。这个分子内过程比添加外部触发链快约 60 倍,为用光快速转换 DNA 纳米结构提供了一种机制。