School of Public Health, Wannan Medical College, Wuhu 241002, China; Information Materials and Intelligent Sensing Laboratory of Anhui Province, Institutes of Physical Science and Information Technology, Anhui University, Hefei 230601, China.
School of Public Health, Wannan Medical College, Wuhu 241002, China.
J Hazard Mater. 2023 Oct 15;460:132311. doi: 10.1016/j.jhazmat.2023.132311. Epub 2023 Aug 14.
Antibiotic abuse is the main reason for the drug resistance of pathogenic bacteria, posing a potential health risk. Antibiotic surveillance is critical for preventing antibiotic contamination. This study aimed to develop a sensitive and broad-spectrum whole-cell biosensor for tetracycline antibiotics (TCs) detection. Wild-type TCs-responsive biosensor was constructed by introducing a tetracycline operon into a sfGFP reporter plasmid. Using error-prone PCR, mutation libraries containing approximately 10 variants of the tetracycline repressor (TetR) gene were generated. The tigecycline-senstive mutants were isolated using high-throughput flow cytometric sorting. After 2 rounds of directed evolution, a mutant epS2-22 of TerR was isolated and assembled as a TCs biosensor. The epS2-22 biosensor was more sensitive and broad-spectrum than the wild-type biosensors. The detection limits of the epS2-22 biosensor for seven TCs were 4- to 62-fold lower than the wild-type biosensor (no response to tigecycline). Meanwhile, the epS2-22 biosensor had a shorter detection time and a stronger signal output than the wild type. In addition, the evolved epS2-22 biosensor showed excellent performance in detecting low traces of TCs in environmental water. These results suggest that directed evolution is a powerful tool for developing high-performance whole-cell biosensors, and the evolved epS2-22 biosensors have the potential for wider applications in real-world TCs detection.
抗生素滥用是导致病原菌耐药性的主要原因,对健康构成潜在威胁。抗生素监测对于预防抗生素污染至关重要。本研究旨在开发一种用于检测四环素类抗生素(TCs)的敏感且广谱的全细胞生物传感器。通过将四环素操纵子引入 sfGFP 报告质粒,构建了野生型 TCs 响应生物传感器。使用易错 PCR,生成了大约包含 10 种四环素阻遏蛋白(TetR)基因突变文库。使用高通量流式细胞术分选分离出替加环素敏感突变体。经过两轮定向进化,分离出 TetR 的突变体 epS2-22,并将其组装成 TCs 生物传感器。与野生型生物传感器相比,epS2-22 生物传感器的灵敏度更高,广谱性更强。epS2-22 生物传感器对七种 TCs 的检测限比野生型生物传感器低 4 到 62 倍(对替加环素无响应)。同时,epS2-22 生物传感器的检测时间更短,信号输出更强。此外,该进化的 epS2-22 生物传感器在检测环境水中低浓度 TCs 方面表现出优异的性能。这些结果表明,定向进化是开发高性能全细胞生物传感器的有力工具,进化的 epS2-22 生物传感器在实际 TCs 检测中有广泛的应用潜力。