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首页> 外文期刊>Biochemical Engineering Journal >Engineered cells for selective detection and remediation of Hg2 + based on transcription factor MerR regulated cell surface displayed systems
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Engineered cells for selective detection and remediation of Hg2 + based on transcription factor MerR regulated cell surface displayed systems

机译:基于转录因子Merr调节的细胞表面显示系统,用于选择性检测和修复HG2 +的工程细胞

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摘要

Mercury pollution has been one of the most serious environmental problems today. The detection and remediation of mercury contamination are of special concern due to its nondegradable nature, bioaccumulation effect, and significant toxicity. In this research, the whole-cell based detection and remediation systems for Hg2 + were engineered based on the cell surface engineering technique and transcriptional activation mechanism of metalloprotein MerR. The engineered biodetection system showed high selectivity for Hg2+ over other metal ions with the detection limit as low as 0.1 nM. It also permitted a rapid, visual, and on-site detection of bioa-vailable Hg2+ for large-scale water samples with simple processes. The engineered bioremediation system, which was more efficient than the most current biosystems with limited adsorption capacities, could continuously reduce mercury contamination in wide concentration by transforming highly toxic Hg2+ to volatile and much less deleterious Hg° with extraordinary selectivity. In addition, the bioremediation system could perform function in the absence of extra inductive agent and showed an increased protection of cells against Hg2+ biotoxicity. By fully imitating and utilizing the microorganisms, the engineered biochemical systems have great potential in the practical application of detecting and remediating Hg2+ in the contaminated aquatic systems.
机译:汞污染是今天最严重的环境问题之一。由于其Nondegraphy的性质,生物累积效应和显着的毒性,汞污染的检测和修复具有特殊问题。在该研究中,基于金属蛋白MERR的细胞表面工程技术和转录激活机制,设计了用于HG2 +的全细胞的检测和修复系统。工程化生物竞选系统对HG2 +的高选择性高,其他金属离子具有低至0.1nm的检测限。它还允许具有简单工艺的大型水样的快速,视觉和现场检测Bioa-Vakable HG2 +。经验化的生物修复系统比吸附容量有限的最新生物系统更有效,可以通过将高毒性的HG2 +转化为挥发性和具有非凡的选择性的挥发性和更少的有害HG°来连续减少汞污染。此外,生物修复系统可以在没有额外的诱导剂的情况下进行功能,并显示对Hg2 +生物毒性的细胞的增加。通过完全模仿和利用微生物,工程化的生化系统在污染的水生系统中检测和修复HG2 +的实际应用中具有很大的潜力。

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