Programming Fast DNA Amplifier Circuits with Versatile Toehold Exchange Pathway

Author:

Mo Fengye1,Li Chenbiao1,Sun Junlin12,Lin Xue1,Yu Shuyi1,Wang Fuan1,Liu Xiaoqing13,Li Jinghong2345ORCID

Affiliation:

1. College of Chemistry and Molecular Sciences Wuhan University Wuhan 430072 China

2. Department of Chemistry Center for Bioanalytical Chemistry Key Laboratory of Bioorganic Phosphorus Chemistry & Chemical Biology Tsinghua University Beijing 100084 China

3. Beijing Life Science Academy Beijing 102209 China

4. New Cornerstone Science Laboratory Shenzhen 518054 China

5. Center for Bioanalytical Chemistry Hefei National Laboratory of Physical Science at Microscale University of Science and Technology of China Hefei 230026 China

Abstract

AbstractDNA amplifier circuits establish powerful tools to dynamically control molecular assembly for computation, sensing, and biological applications. However, the slow reaction speed remains a major barrier to their practical utility. Here, diverse fast DNA amplifier circuits termed toehold exchange polymerization (TEP) and toehold exchange catalysis (TEC) using toehold exchange‐mediated assembly as a fundamental mechanism are built. Both TEP and TEC with a duplex and a hairpin can respond within minutes to diverse nucleic acid inputs with high fidelity. In addition, the circuits can amplify live‐cell signals for fluorescence imaging target RNA dynamics and discriminating different cell lines. Compared with existing DNA circuits that involve time scales of hours for transducing small signals, TEP and TEC exhibit much faster dynamics, simpler design, and comparable sensitivity. These features make TEP and TEC promising platforms to develop programmable nucleic acid tools and devices and to create fast sensing and processing systems, amenable to wide practical applications.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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