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基于酿酒酵母的铜检测生物传感器的工程设计。

Engineering Saccharomyces cerevisiae-based biosensors for copper detection.

机构信息

State Key Laboratory of Cellular Stress Biology, Innovation Center for Cell Signaling Network, School of Life Sciences, Xiamen University, Fujian, China.

出版信息

Microb Biotechnol. 2022 Nov;15(11):2854-2860. doi: 10.1111/1751-7915.14105. Epub 2022 Jul 13.

Abstract

Heavy metals, that is Cu(II), are harmful to the environment. There is an increasing demand to develop inexpensive detection methods for heavy metals. Here, we developed a yeast biosensor with reduced-noise and improved signal output for potential on-site copper ion detection. The copper-sensing circuit was achieved by employing a secondary genetic layer to control the galactose-inducible (GAL) system in Saccharomyces cerevisiae. The reciprocal control of the Gal4 activator and Gal80 repressor under copper-responsive promoters resulted in a low-noise and sensitive yeast biosensor for copper ion detection. Furthermore, we developed a betaxanthin-based colorimetric assay, as well as 2-phenylethanol and styrene-based olfactory outputs for the copper ion detection. Notably, our engineered yeast sensor confers a narrow range switch-like behaviour, which can give a 'yes/no' response when coupled with a betaxanthin-based visual phenotype. Taken together, we envision that the design principle established here might be applicable to develop other sensing systems for various chemical detections.

摘要

重金属,即 Cu(II),对环境有害。人们越来越需要开发廉价的重金属检测方法。在这里,我们开发了一种具有低噪声和改进信号输出的酵母生物传感器,用于潜在的现场铜离子检测。铜感应电路通过采用二级遗传层来控制酿酒酵母中的半乳糖诱导(GAL)系统来实现。在铜响应启动子下,Gal4 激活因子和 Gal80 阻遏物的相互控制导致用于铜离子检测的低噪声和灵敏的酵母生物传感器。此外,我们开发了一种基于 betaxanthin 的比色测定法,以及基于 2-苯乙醇和苯乙烯的嗅觉输出,用于铜离子检测。值得注意的是,我们设计的工程酵母传感器赋予了一种类似开关的窄范围行为,当与基于 betaxanthin 的视觉表型结合使用时,可以给出“是/否”的响应。总的来说,我们设想这里建立的设计原则可能适用于开发用于各种化学检测的其他传感系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0942/9618319/8d95dcb4100b/MBT2-15-2854-g002.jpg

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