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利用温控双功能大肠杆菌细胞对环境水样中的铜离子进行生物检测和生物修复。

Biodetection and bioremediation of copper ions in environmental water samples using a temperature-controlled, dual-functional Escherichia coli cell.

机构信息

Zhejiang Provincial Key Laboratory for Technology and Application of Model Organisms, School of Laboratory Medicine and Life Sciences, Wenzhou Medical University, Wenzhou, 325035, Zhejiang, China.

出版信息

Appl Microbiol Biotechnol. 2019 Aug;103(16):6797-6807. doi: 10.1007/s00253-019-09984-9. Epub 2019 Jun 25.

DOI:10.1007/s00253-019-09984-9
PMID:31240366
Abstract

Although a variety of whole-cell biosensors and biosorbents have been developed for detection and removal of heavy metal contaminants, few whole cells can be applied to both monitoring and remediation of copper pollution in water. In this study, a modified plasmid was constructed by incorporating a copper-sensing element and a copper-adsorbing element into a temperature-inducible plasmid, pBV220. This plasmid was subsequently transformed into an engineered Escherichia coli strain lacking copA and cueO. This dual-functional E. coli cell selectively responded to copper ions with a linear detection range of 0.01-25 μM at 37 °C and could express surface-displayed CueR when treated at 42 °C without any costly chemical inducers. The display of CueR on the cell surface specifically enhanced its copper adsorption capacity and rapidly removed copper ions from aqueous solutions. In addition, the CueR surface-displayed cells could be regenerated by adsorption-desorption cycles via pH regulation. Moreover, by simply using two different temperatures, the detection or adsorption of copper using this dual-functional whole cell was achieved without any cross-interference. Most importantly, it provided highly sensitive, accurate quantification, and effective removal of copper in real environmental water samples. Thus, this E. coli cell can be used for large-scale detection and remediation of copper pollutants.

摘要

尽管已经开发出了各种用于检测和去除重金属污染物的全细胞生物传感器和生物吸附剂,但很少有全细胞可同时用于监测和修复水中的铜污染。在这项研究中,通过将铜感应元件和铜吸附元件整合到温度诱导型质粒 pBV220 中,构建了一个改良的质粒。然后,将该质粒转化到缺乏 copA 和 cueO 的工程大肠杆菌菌株中。这种双功能大肠杆菌细胞对铜离子具有选择性响应,在 37°C 时线性检测范围为 0.01-25 μM,并且在 42°C 下无需任何昂贵的化学诱导剂即可表达表面展示的 CueR。CueR 在细胞表面的展示特异性地增强了其铜吸附能力,并能快速从水溶液中去除铜离子。此外,通过 pH 调节,CueR 表面展示的细胞可以通过吸附-解吸循环进行再生。此外,通过简单地使用两种不同的温度,无需任何交叉干扰即可实现这种双功能全细胞对铜的检测或吸附。最重要的是,它在实际环境水样中提供了对铜的高灵敏度、准确的定量和有效去除。因此,这种大肠杆菌细胞可用于大规模检测和修复铜污染物。

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