A DNA Finite-State Machine Based on the Programmable Allosteric Strategy of DNAzyme

Author:

Wang Jun1,Zhang Xiaokang2ORCID,Shi Peijun2,Cao Ben2,Wang Bin1ORCID

Affiliation:

1. Key Laboratory of Advanced Design and Intelligent Computing, Ministry of Education, School of Software Engineering, Dalian University, Dalian 116622, China

2. School of Computer Science and Technology, Dalian University of Technology, Dalian 116024, China

Abstract

Living organisms can produce corresponding functions by responding to external and internal stimuli, and this irritability plays a pivotal role in nature. Inspired by such natural temporal responses, the development and design of nanodevices with the ability to process time-related information could facilitate the development of molecular information processing systems. Here, we proposed a DNA finite-state machine that can dynamically respond to sequential stimuli signals. To build this state machine, a programmable allosteric strategy of DNAzyme was developed. This strategy performs the programmable control of DNAzyme conformation using a reconfigurable DNA hairpin. Based on this strategy, we first implemented a finite-state machine with two states. Through the modular design of the strategy, we further realized the finite-state machine with five states. The DNA finite-state machine endows molecular information systems with the ability of reversible logic control and order detection, which can be extended to more complex DNA computing and nanomachines to promote the development of dynamic nanotechnology.

Funder

National Natural Science Foundation of China

Liaoning Revitalization Talents Program

Natural Science Foundation of Liaoning Province

Dalian Outstanding Young Science and Technology Talent Support Program

Innovation and Entrepreneurship Team of Dalian University

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

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