Deciphering the triclosan degradation mechanism in Sphingomonas sp. strain YL-JM2C: Implications for wastewater treatment and marine resources

三氯生 降级(电信) 鞘脂单胞菌属 拉伤 废水 机制(生物学) 化学 生物膜 污水处理 微生物学 环境化学 废物管理 制浆造纸工业 细菌 环境科学 环境工程 生物 生物化学 工程类 16S核糖体RNA 医学 基因 电信 哲学 认识论 病理 解剖 遗传学
作者
Piaopiao Pan,Yichao Gu,Tao Li,Ning‐Yi Zhou,Ying Xu
出处
期刊:Journal of Hazardous Materials [Elsevier BV]
卷期号:478: 135511-135511 被引量:6
标识
DOI:10.1016/j.jhazmat.2024.135511
摘要

Triclosan (TCS), an antimicrobial agent extensively incorporated into pharmaceuticals and personal care products, poses significant environmental risks because of its persistence and ecotoxicity. So far, a few microorganisms were suggested to degrade TCS, but the microbial degradation mechanism remains elusive. Here, a two-component angular dioxygenase (TcsAaAb) responsible for the initial TCS degradation was characterized in Sphingomonas sp. strain YL-JM2C. Whole-cell biotransformation and crude enzyme assays demonstrated that TcsAaAb catalyzed the conversion of TCS to 4-chlorocatechol and 3,5-dichlorocatechol rather than the commonly suggested product 2,4-dichlorophenol. Then two intermediates were catabolized by tcsCDEF cluster via an ortho-cleavage pathway. Critical residues (N262, F279, and F391) for substrate binding were identified via molecular docking and mutagenesis. Further, TcsAaAb showed activity toward methyl triclosan and nitrofen, suggesting its versatile potential for bioremediation. In addition, TCS-degrading genes were also present in diverse bacterial genomes in wastewater, ocean and soil, and a relatively high gene abundance was observed in marine metagenomes, revealing the transformation fate of TCS in environments and the microbial potential in pollutant removal. These findings extend the understanding of the microbe-mediated TCS degradation and contribute to the mining of TCS-degrading strains and enzymes, as well as their application in the bioremediation of contaminated environments.
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