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DNA cross-triggered cascading self-amplification artificial biochemical circuit.


ABSTRACT: The construction of compact and robust artificial biochemical circuits based on nucleic acids can help researchers to understand the essential mechanisms of complex biological systems, and design sophisticated strategies for various requirements. In this study, a novel DNA cross-triggered cascading self-amplification artificial biochemical circuit was developed. Once triggered by trace amounts (as low as 2 amol) of either of two fully independent oligonucleotide factors under homogeneous isothermal conditions, the circuit simultaneously amplified both factors by 105-107 fold, which was proved using mass spectrometry. The compact and robust circuit was successfully used to construct a multi-input Boolean logic operation and a sensitive DNA biosensor based on the dual-amplification of both the target and reporter. The circuit showed great potential for signal gain in complicated molecular programming, and flexible control of nucleic acid nanomachines in biochemical network systems and nanotechnology.

SUBMITTER: Nie J 

PROVIDER: S-EPMC5811080 | biostudies-other | 2015 Feb

REPOSITORIES: biostudies-other

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DNA cross-triggered cascading self-amplification artificial biochemical circuit.

Nie Ji J   Zhao Ming-Zhe MZ   Xie Wen Jun WJ   Cai Liang-Yuan LY   Zhou Ying-Lin YL   Zhang Xin-Xiang XX  

Chemical science 20141107 2


The construction of compact and robust artificial biochemical circuits based on nucleic acids can help researchers to understand the essential mechanisms of complex biological systems, and design sophisticated strategies for various requirements. In this study, a novel DNA cross-triggered cascading self-amplification artificial biochemical circuit was developed. Once triggered by trace amounts (as low as 2 amol) of either of two fully independent oligonucleotide factors under homogeneous isother  ...[more]

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