Rapid molecular biosensing is an emerging application area for synthetic biology. Here, we engineer a portable biosensor for cyanuric acid (CYA), an analyte of interest for human and environmental health, using a LysR-type transcription regulator (LTTR) from Pseudomonas within the context of Escherichia coli gene expression machinery. To overcome cross-host portability challenges of LTTRs, we rationally engineered hybrid Pseudomonas-E. coli promoters by integrating DNA elements required for transcriptional activity and ligand-dependent regulation from both hosts, which enabled E. coli to function as a whole-cell biosensor for CYA. To alleviate challenges of whole-cell biosensing, we adapted these promoter designs to function within a freeze-dried E. coli cell-free system to sense CYA. This portable, on-demand system robustly detects CYA within an hour from laboratory and real-world samples and works with both fluorescent and colorimetric reporters. This work elucidates general principles to facilitate the engineering of a wider array of LTTR-based environmental sensors.
Design of a Transcriptional Biosensor for the Portable, On-Demand Detection of Cyanuric Acid.
设计一种用于便携式、按需检测氰尿酸的转录生物传感器
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作者:Liu Xiangyang, Silverman Adam D, Alam Khalid K, Iverson Erik, Lucks Julius B, Jewett Michael C, Raman Srivatsan
| 期刊: | ACS Synthetic Biology | 影响因子: | 3.900 |
| 时间: | 2020 | 起止号: | 2020 Jan 17; 9(1):84-94 |
| doi: | 10.1021/acssynbio.9b00348 | ||
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