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Comparison of lignin peroxidase and horseradish peroxidase for catalyzing the removal of nonylphenol from water

机译:木质素过氧化物酶和辣根过氧化物酶催化水中壬基酚除去的比较

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Concentrations of aqueous-phase nonylphenol (NP), a well-known endocrine-disrupting chemical, are shown to be reduced effectively via reaction with lignin peroxidase (LiP) or horseradish peroxidase (HRP) and hydrogen peroxide. We systematically assessed their reaction efficiencies at varying conditions, and the results have confirmed that the catalytic performance of LiP toward NP was more efficient than that of HRP under experimental conditions. Mass spectrum analysis demonstrated that polymerization through radical-radical coupling mechanism was the pathway leading to NP transformation. Our molecular modeling with the assistance of ab initio suggested the coupling of NP likely proceeded via covalent bonding between two NP radicals at their unsubstituted carbons in phenolic rings. Data from acute immobilization tests with Daphnia confirm that NP toxicity is effectively eliminated by LiP/HRP-catalyzed NP removal. The findings in this study provide useful information for understanding LiP/HRP-mediated NP reactions, and comparison of enzymatic performance can present their advantages for up-scale applications in water/wastewater treatment.
机译:水相壬基酚(NP)的浓度,众所周知的内分泌破坏化学品,通过与木质素过氧化物酶(唇)或辣根过氧化物酶(HRP)和过氧化氢反应有效地减少。我们在不同条件下系统地评估了它们的反应效率,结果证实,在实验条件下,唇部曲目的唇缘催化性能比HRP更有效。质谱分析证明通过自由基 - 自由基偶联机构的聚合是导致NP变换的途径。我们的分子建模在AB Initio的辅助方案提出了NP可能通过在其未取代的碳的酚类环上的两个NP自由基之间通过共价键合的偶联。来自Daphnia的急性固定性试验的数据证实,通过唇/ HRP催化的NP除去有效地消除了NP毒性。本研究中的研究结果提供了理解唇唇/ HRP介导的NP反应的有用信息,并且酶促性能的比较可以呈现它们在水/废水处理中的上方应用的优势。

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