生物
核酸
计算生物学
回文
DNA
合成生物学
核糖核酸
DNA纳米技术
范围(计算机科学)
纳米技术
细胞生物学
基因组编辑
计算机科学
信号转导
重点(电信)
清脆的
简单
系统生物学
适体
生命系统
生物信息学
转导(生物物理学)
作者
Jingcong Zhou,Liu W,Xiaoqi Nie,Xiaoxiang Wang,Yibo Hu,Changqing Wan,Yangwei Liao,Shutao Pan
摘要
Since its discovery, the Clustered Regularly Interspaced Short Palindromic Repeats (CRISPR)/Cas system has ushered in a transformative era in biodetection, leveraging its simplicity and efficiency to enable Cas protein-based signaling systems for applications in early tumor screening, viral detection, and molecular logic circuits. However, the constrained compatibility of CRISPR/Cas-based signaling systems with diverse input types limits their versatility, primarily due to the restricted activation mechanisms of the Cas protein. Herein, we developed the Cas12a and Cas13a Integrated Targeting (CACIT) system, which harnesses DNA/RNA strand displacement reactions to integrate the enzymatic capabilities of Cas12a and Cas13a. This system supports simultaneous DNA and RNA inputs, offering exceptional programmability and cost-effectiveness. By employing strand displacement reactions, the CACIT system achieves synchronized activation of Cas12a and Cas13a. We have demonstrated that the CACIT system excels in single-nucleotide-variant (SNV) detection, viral RNA detection, machine learning-driven nucleic acid concentration response modeling, logic operations, and intracellular imaging. As a streamlined and versatile signaling platform, the CACIT system expands the scope of CRISPR/Cas activation strategies. With its inherent simplicity and compatibility, this system facilitates integration with diverse nanodevices. Further, this system provides a highly programmable, multifunctional computational module for molecular networks, heralding new possibilities for artificial signaling systems.
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