4.6 Article

Versatile artificial mer operons in Escherichia coli towards whole cell biosensing and adsorption of mercury

Journal

PLOS ONE
Volume 16, Issue 5, Pages -

Publisher

PUBLIC LIBRARY SCIENCE
DOI: 10.1371/journal.pone.0252190

Keywords

-

Funding

  1. National Natural Science Foundation of China [82073517]
  2. Shenzhen Fund for Guangdong Provincial High-level Clinical Key Specialties [SZGSP015, JCYJ20180306170237563, JCYJ20190808175205480]
  3. Shenzhen Science and Technology Innovation Commission
  4. Department of Science and Technology of Guangdong Province [2019A1515011989, 2021A1515012472]

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The study presents an innovative approach to simultaneously detect, quantify, and remove bioavailable heavy metal ions using an artificially reconstructed heavy metal resistance operon.
Mercury exists naturally and mainly as a man-made pollutant in the environment, where it exerts adverse effects on local ecosystems and living organisms. It is important to develop an appropriate synthetic biological device that recognizes, detects and removes the bioavailable fraction of environmental mercury. Both single-signal and double-signal output mercury biosensors were assembled using a natural mer operon as a template. Selectivity and sensitivity of whole-cell biosensors based on artificial mer operons were determined. Three whole-cell biosensors were highly stable at very high concentrations of mercuric chloride, and could detect bioavailable Hg(II) in the concentration range of 6.25-200 mu M HgCl2. A novel Hg(II) bioadsorption coupled with biosensing artificial mer operon was assembled. This would allow Hg(II)-induced Hg(II) binding protein cell surface display and green fluorescence emission to be achieved simultaneously while retaining the linear relationship between fluorescent signal and Hg(II) exposure concentration. The present study provides an innovative way to simultaneously detect, quantify, and remove bioavailable heavy metal ions using an artificially reconstructed heavy metal resistance operon.

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