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用于分子信息处理的合成DNA电路和网络的开发。

Development of Synthetic DNA Circuit and Networks for Molecular Information Processing.

作者信息

Zhang Yongpeng, Feng Yuhua, Liang Yuan, Yang Jing, Zhang Cheng

机构信息

School of Control and Computer Engineering, North China Electric Power University, Beijing 102206, China.

Department of Computer Science and Technology, School of Electronics Engineering and Computer Science, Peking University, Beijing 100871, China.

出版信息

Nanomaterials (Basel). 2021 Nov 4;11(11):2955. doi: 10.3390/nano11112955.

Abstract

Deoxyribonucleic acid (DNA), a genetic material, encodes all living information and living characteristics, e.g., in cell, DNA signaling circuits control the transcription activities of specific genes. In recent years, various DNA circuits have been developed to implement a wide range of signaling and for regulating gene network functions. In particular, a synthetic DNA circuit, with a programmable design and easy construction, has become a crucial method through which to simulate and regulate DNA signaling networks. Importantly, the construction of a hierarchical DNA circuit provides a useful tool for regulating gene networks and for processing molecular information. Moreover, via their robust and modular properties, DNA circuits can amplify weak signals and establish programmable cascade systems, which are particularly suitable for the applications of biosensing and detecting. Furthermore, a biological enzyme can also be used to provide diverse circuit regulation elements. Currently, studies regarding the mechanisms and applications of synthetic DNA circuit are important for the establishment of more advanced artificial gene regulation systems and intelligent molecular sensing tools. We therefore summarize recent relevant research progress, contributing to the development of nanotechnology-based synthetic DNA circuits. By summarizing the current highlights and the development of synthetic DNA circuits, this paper provides additional insights for future DNA circuit development and provides a foundation for the construction of more advanced DNA circuits.

摘要

脱氧核糖核酸(DNA)作为一种遗传物质,编码了所有的生命信息和生命特征,例如,在细胞中,DNA信号回路控制着特定基因的转录活动。近年来,人们开发了各种DNA回路来实现广泛的信号传导并调节基因网络功能。特别是,具有可编程设计且易于构建的合成DNA回路已成为模拟和调节DNA信号网络的关键方法。重要的是,构建分层DNA回路为调节基因网络和处理分子信息提供了有用的工具。此外,凭借其强大的模块化特性,DNA回路可以放大微弱信号并建立可编程级联系统,这特别适用于生物传感和检测应用。此外,生物酶也可用于提供多种回路调节元件。目前,关于合成DNA回路的机制和应用的研究对于建立更先进的人工基因调节系统和智能分子传感工具至关重要。因此,我们总结了近期的相关研究进展,为基于纳米技术的合成DNA回路的发展做出贡献。通过总结合成DNA回路的当前亮点和发展情况,本文为未来DNA回路的发展提供了更多见解,并为构建更先进的DNA回路奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b09/8625377/88bd5d711425/nanomaterials-11-02955-g001.jpg

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