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解析胞外聚合物对典型重金属的保留效果及其与卡氏菌关键内酶的相互作用。

Deciphering retention effect of extracellular polymeric substances to typical heavy metals and their interaction with key inner enzymes of Candidatus Kuenenia.

机构信息

College of Marine and Environmental Sciences, Tianjin University of Science & Technology, Tianjin 300457, PR China.

College of Marine and Environmental Sciences, Tianjin University of Science & Technology, Tianjin 300457, PR China.

出版信息

J Hazard Mater. 2024 Sep 15;477:135367. doi: 10.1016/j.jhazmat.2024.135367. Epub 2024 Jul 29.

DOI:10.1016/j.jhazmat.2024.135367
PMID:39084011
Abstract

This study employed spectroscopy, metagenomics, and molecular simulation to investigate the inhibitory effects of Cd(II) and Cu(II) on the anammox system, examining both intracellular and extracellular effects. At concentrations of 5 mg/L, Cd(II) and Cu(II) significantly reduced nitrogen removal efficiency by 41.46 % and 62.03 %, respectively. Additionally, elevated metal concentrations were correlated with decreased extracellular polymeric substances (EPS), thereby reducing their capacity to absorb heavy metals, particularly Cu(II), which decreased from 76.47 % to 14.67 %. Spectral analysis revealed alterations in the secondary structures of EPS induced by Cd(II) and Cu(II), decreasing the ratio of extracellular protein α-helix to (β-sheet + random coil), which resulted in looser extracellular protein configurations. The results of the metagenomics study showed that the abundance of Candidatus Kuenenia and its genes encoding nitrogen removal-related enzymes was reduced. The abundance of hzs-γ was reduced by 35.09 % at a concentration of 5 mg/L Cu(II). Conversely, genes associated with metal efflux enzymes, like czcR, increased by 54.86 % at 2 mg/L Cd(II). Molecular docking revealed robust bindings of Cd(II) to HZS-α (-342.299 ± 218.165 kJ/mol) and Cu(II) to HZS-γ (-880.934 ± 55.526 kJ/mol). This study elucidated the inhibitory mechanisms of Cd(II) and Cu(II) on the anammox system, providing insights into the resistance of anammox bacteria to heavy metals.

摘要

本研究采用光谱学、宏基因组学和分子模拟技术,从胞内和胞外两方面考察了 Cd(II)和 Cu(II)对厌氧氨氧化系统的抑制作用。在浓度为 5mg/L 时,Cd(II)和 Cu(II)分别显著降低了氮去除效率 41.46%和 62.03%。此外,金属浓度的升高与胞外聚合物物质(EPS)的减少有关,从而降低了它们对重金属的吸附能力,特别是 Cu(II),其从 76.47%降至 14.67%。光谱分析表明,Cd(II)和 Cu(II)诱导了 EPS 二级结构的改变,降低了胞外蛋白α-螺旋与(β-折叠+无规卷曲)的比例,导致胞外蛋白结构变松。宏基因组学研究的结果表明,Candidatus Kuenenia 的丰度及其编码氮去除相关酶的基因减少。在 5mg/L Cu(II)浓度下,hzs-γ的丰度减少了 35.09%。相反,在 2mg/L Cd(II)下,与金属外排酶相关的基因,如 czcR,增加了 54.86%。分子对接显示 Cd(II)与 HZS-α(-342.299±218.165kJ/mol)和 Cu(II)与 HZS-γ(-880.934±55.526kJ/mol)有很强的结合。本研究阐明了 Cd(II)和 Cu(II)对厌氧氨氧化系统的抑制机制,为了解厌氧氨氧化菌对重金属的抗性提供了依据。

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