Institute of Reproductive Health, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430030, China.
Hubei Key Laboratory of Bioinorganic Chemistry and Materia Medica, School of Chemistry and Chemical Engineering. Huazhong University of Science and Technology, Wuhan 430074, China.
ACS Nano. 2021 Jul 27;15(7):11573-11584. doi: 10.1021/acsnano.1c01763. Epub 2021 Jul 2.
Strand displacement reactions are important bricks for the construction of various DNA nanodevices, among which the toehold-mediated strand displacement reaction is the most prevalently adopted. However, only a limited number of tools could be used to finely regulate the toehold reaction, thus restricting DNA nanodevices from being more multifunctional and powerful. Herein, we developed a regulation tool, Clip, and achieved multiple regulatory functions, including subtle adjustment of the reaction rates, allosteric strand displacement, selective activation, and resetting of the reaction. Taking advantages of the multiple functions, we constructed Clip-toehold-based DNA walking machines. They showed behaviors of controllable walking, concatenation, and programmable pathways. Furthermore, we built Clip-toehold-based AND and OR logic gates and integrated those logic gates to construct multilayer circuits, which could be reset and reused to process different input signals. We believe that the proposed Clip tool has expanded the functionality of DNA strand displacement-based nanodevices to a much more complex and diverse level and anticipate that the tool will be widely adopted in DNA nanotechnology.
链置换反应是构建各种 DNA 纳米器件的重要基石,其中,链置换反应是最普遍采用的方法。然而,能够精细调控链置换反应的工具十分有限,这限制了 DNA 纳米器件向更加多功能和强大的方向发展。在此,我们开发了一种调控工具——Clip,并实现了多种调控功能,包括对反应速率的细微调节、别构链置换、选择性激活和重置反应等。利用这些多功能性,我们构建了基于 Clip-引发链置换的 DNA 行走机器。它们表现出可控行走、串联和可编程路径的行为。此外,我们构建了基于 Clip-引发链置换的与门和或门逻辑门,并将这些逻辑门集成到多层电路中,这些电路可以重置和重新用于处理不同的输入信号。我们相信,所提出的 Clip 工具已经将基于 DNA 链置换的纳米器件的功能扩展到更加复杂和多样化的水平,预计该工具将在 DNA 纳米技术中得到广泛应用。