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定制细菌应对环境汞:受天然汞解毒操纵子启发。

Tailored bacteria tackling with environmental mercury: Inspired by natural mercuric detoxification operons.

机构信息

Shenzhen Prevention and Treatment Center for Occupational Diseases, 2019 Buxin Road, Shenzhen, 518020, China.

Shenzhen Prevention and Treatment Center for Occupational Diseases, 2019 Buxin Road, Shenzhen, 518020, China; School of Public Health, Tongji Medical College, Huazhong University of Science and Technology, 13 Hangkong Road, Wuhan, 430030, China.

出版信息

Environ Pollut. 2024 Jan 15;341:123016. doi: 10.1016/j.envpol.2023.123016. Epub 2023 Nov 25.

Abstract

Mercury (Hg) and its inorganic and organic compounds significantly threaten the ecosystem and human health. However, the natural and anthropogenic Hg environmental inputs exceed 5000 metric tons annually. Hg is usually discharged in elemental or ionic forms, accumulating in surface water and sediments where Hg-methylating microbes-mediated biotransformation occurs. Microbial genetic factors such as the mer operon play a significant role in the complex Hg biogeochemical cycle. Previous reviews summarize the fate of environmental Hg, its biogeochemistry, and the mechanism of bacterial Hg resistance. This review mainly focuses on the mer operon and its components in detecting, absorbing, bioaccumulating, and detoxifying environmental Hg. Four components of the mer operon, including the MerR regulator, divergent mer promoter, and detoxification factors MerA and MerB, are rare bio-parts for assembling synthetic bacteria, which tackle pollutant Hg. Bacteria are designed to integrate synthetic biology, protein engineering, and metabolic engineering. In summary, this review highlights that designed bacteria based on the mer operon can potentially sense and bioremediate pollutant Hg in a green and low-cost manner.

摘要

汞(Hg)及其无机和有机化合物对生态系统和人类健康构成了重大威胁。然而,每年自然和人为向环境中输入的汞量超过 5000 公吨。汞通常以元素或离子形式排放,在地表水和沉积物中积累,在那里 Hg-甲基化微生物介导的生物转化发生。微生物遗传因素,如 mer 操纵子,在复杂的 Hg 生物地球化学循环中发挥重要作用。以前的综述总结了环境 Hg 的命运、生物地球化学和细菌 Hg 抗性的机制。本综述主要集中在 mer 操纵子及其在检测、吸收、生物积累和解毒环境 Hg 方面的成分。mer 操纵子的四个组成部分,包括 MerR 调节剂、发散 mer 启动子以及解毒因子 MerA 和 MerB,是组装合成细菌的罕见生物部分,用于处理污染物 Hg。细菌被设计用于整合合成生物学、蛋白质工程和代谢工程。总之,本综述强调了基于 mer 操纵子的设计细菌可以潜在地以绿色和低成本的方式感知和生物修复污染物 Hg。

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