Xue Haoran, Shi Hailing, Yu Zhou, He Shuaixin, Liu Shiyu, Hou Yuhang, Pan Xingjie, Wang Huan, Zheng Pu, Cui Can, Viets Helena, Liang Jing, Zhang Yihao, Chen Shuobing, Zhang Haoqian M, Ouyang Qi
Peking University Team for the International Genetically Engineered Machine Competition (iGEM), ‡Center for Quantitative Biology, and §Peking-Tsinghua Joint Center for Life Sciences, Peking University , Beijing 100871, China.
ACS Synth Biol. 2014 Dec 19;3(12):1011-4. doi: 10.1021/sb500023f.
Aromatic pollutants in the environments pose significant threat to human health due to their persistence and toxicity. Here, we report the design and comprehensive characterization of a set of aromatic biosensors constructed using green fluorescence protein as the reporter and aromatics-responsive transcriptional regulators, namely, NahR, XylS, HbpR, and DmpR, as the detectors. The genetic connections between the detectors and the reporter were carefully adjusted to achieve fold inductions far exceeding those reported in previous studies. For each biosensor, the functional characteristics including the dose-responses, dynamic range, and the detection spectrum of aromatic species were thoroughly measured. In particular, the interferences that nontypical inducers exert on each biosensor's response to its strongest inducer were evaluated. These well-characterized biosensors might serve as potent tools for environmental monitoring as well as quantitative gene regulation.
环境中的芳香族污染物因其持久性和毒性对人类健康构成重大威胁。在此,我们报告了一组芳香族生物传感器的设计和全面表征,这些生物传感器以绿色荧光蛋白作为报告基因,并以芳香族响应转录调节因子(即NahR、XylS、HbpR和DmpR)作为检测器构建而成。仔细调整了检测器与报告基因之间的遗传连接,以实现远超先前研究报道的诱导倍数。对于每个生物传感器,都全面测量了其功能特性,包括剂量响应、动态范围以及芳香族物质的检测光谱。特别地,评估了非典型诱导剂对每个生物传感器对其最强诱导剂响应的干扰。这些经过充分表征的生物传感器可能成为环境监测以及定量基因调控的有力工具。