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定制用于微小RNA高效细胞内成像的最小自我复制DNA电路。

Tailoring a Minimal Self-Replicate DNA Circuit for Highly Efficient Intracellular Imaging of microRNA.

作者信息

Wei Jie, Yu Mengdi, Tan Kaiyue, Shang Jinhua, He Shizhen, Xie Chenxia, Liu Xiaoqing, Wang Fuan

机构信息

Department of Gastrointestinal Surgery, Zhongnan Hospital of Wuhan University, Wuhan, 430071, P. R. China.

College of Chemistry and Molecular Sciences, Wuhan University, Wuhan, 430072, P. R. China.

出版信息

Small. 2023 Apr;19(17):e2207961. doi: 10.1002/smll.202207961. Epub 2023 Jan 30.

Abstract

Trace analyte detection in complex intracellular environment requires the development of simple yet robust self-sufficient molecular circuits with high signal-gain and anti-interference features. Herein, a minimal non-enzymatic self-replicate DNA circuitry (SDC) system is proposed with high-signal-gain for highly efficient biosensing in living cells. It is facilely engineered through the self-stacking of only one elementary cascade hybridization reaction (CHR), thus is encoding with more economic yet effective amplification pathways and reactants. Trigger (T) stimulates the activation of CHR for producing numerous T replica that reversely motivate new CHR reaction cycles, thus achieving the successive self-replication of CHR system with an exponentially magnified readout signal. The intrinsic self-replicate circuity design and the self-accelerated reaction format of SDC system is experimentally demonstrated and theoretically simulated. With simple circuitry configuration and low reactant complexity, the SDC amplifier enables the high-contrast and accurate visualization of microRNA (miRNA), ascribing to its robust molecular recognition and self-sufficient signal amplification, thus offering a promising strategy for monitoring these clinically significant analytes.

摘要

在复杂的细胞内环境中进行痕量分析物检测,需要开发简单而稳健的、具有高信号增益和抗干扰特性的自给自足分子电路。在此,我们提出了一种最小化的非酶促自复制DNA电路(SDC)系统,该系统具有高信号增益,可用于活细胞中的高效生物传感。它通过仅一个基本级联杂交反应(CHR)的自堆叠轻松构建,因此采用了更经济有效的扩增途径和反应物进行编码。触发物(T)刺激CHR的激活,以产生大量T复制体,这些复制体反过来推动新的CHR反应循环,从而实现CHR系统的连续自复制,并伴有指数放大的读出信号。实验证明并理论模拟了SDC系统的固有自复制电路设计和自加速反应形式。由于其稳健的分子识别和自给自足的信号放大,SDC放大器凭借简单的电路配置和低反应物复杂性,能够实现对微小RNA(miRNA)的高对比度和精确可视化,从而为监测这些具有临床意义的分析物提供了一种有前景的策略。

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