生物传感器
电子线路
计算机科学
灵敏度(控制系统)
纳米技术
电子工程
工程类
材料科学
电气工程
作者
Rafael Augusto Lopes Franco,Gabriel Brenner,Vitória Fernanda Bertolazzi Zocca,Gabriela Barbosa de Paiva,Rayane Nunes Lima,E. L. Rech,Danilo T. Amaral,Milca R C R Lins,Danielle Biscaro Pedrolli
标识
DOI:10.1021/acssynbio.3c00227
摘要
Toehold switches are biosensors useful for the detection of endogenous and environmental RNAs. They have been successfully engineered to detect virus RNAs in cell-free gene expression reactions. Their inherent sequence programmability makes engineering a fast and predictable process. Despite improvements in the design, toehold switches suffer from leaky translation in the OFF state, which compromises the fold change and sensitivity of the biosensor. To address this, we constructed and tested signal amplification circuits for three toehold switches triggered by Dengue and SARS-CoV-2 RNAs and an artificial RNA. The serine integrase circuit efficiently contained leakage, boosted the expression fold change from OFF to ON, and decreased the detection limit of the switches by 3-4 orders of magnitude. Ultimately, the integrase circuit converted the analog switches' signals into digital-like output. The circuit is broadly useful for biosensors and eliminates the hard work of designing and testing multiple switches to find the best possible performer.
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