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白腐真菌漆酶 LAC-4 对不同结构氯酚的降解与解毒

Degradation and Detoxification of Chlorophenols with Different Structure by LAC-4 Laccase Purified from White-Rot Fungus .

机构信息

Hubei Key Laboratory of Genetic Regulation and Integrative Biology, School of Life Sciences, Central China Normal University, Wuhan 430079, China.

出版信息

Int J Environ Res Public Health. 2022 Jul 2;19(13):8150. doi: 10.3390/ijerph19138150.

Abstract

A laccase named LAC-4 was purified from . Firstly, the enzymatic properties of purified LAC-4 laccase, and the degradation of three chlorophenol pollutants 2,6-dichlorophenol (2,6-DCP), 2,3,6-trichlorophenol (2,3,6-TCP) and 3-chlorophenol (3-CP) by LAC-4 were systematically studied. LAC-4 had a strong ability for 2,6-DCP and 2,3,6-TCP degradation. The degradation ability of LAC-4 to 3-CP was significantly lower than that of 2,6-DCP and 2,3,6-TCP. LAC-4 also had a good degradation effect on the chlorophenol mixture (2,6-DCP + 2,3,6-TCP). The results of kinetics of degradation of chlorophenols by LAC-4 suggested that the affinity of LAC-4 for 2,6-DCP was higher than 2,3,6-TCP. The catalytic efficiency and the catalytic rate of LAC-4 on 2,6-DCP were also significantly higher than 2,3,6-TCP. During degradation of 2,6-DCP and 2,3,6-TCP, LAC-4 had a strong tolerance for high concentrations of different metal salts (such as MnSO, ZnSO, NaSO, MgSO, CuSO, KSO) and organic solvents (such as ethylene glycol and glycerol). Next, detoxification of chlorophenols by LAC-4 was also systematically explored. LAC-4 treatment had a strong detoxification ability and a good detoxification effect on the phytotoxicity of individual chlorophenols (2,6-DCP, 2,3,6-TCP) and chlorophenol mixtures (2,6-DCP + 2,3,6-TCP). The phytotoxicities of 2,6-DCP, 2,3,6-TCP and chlorophenol mixtures (2,6-DCP + 2,3,6-TCP) treated with LAC-4 were considerably reduced or eliminated. Finally, we focused on the degradation mechanisms and pathways of 2,6-DCP and 2,3,6-TCP degradation by LAC-4. The putative transformation pathway of 2,6-DCP and 2,3,6-TCP catalyzed by laccase was revealed for the first time. The free radicals formed by LAC-4 oxidation of 2,6-DCP and 2,3,6-TCP produced dimers through polymerization. LAC-4 catalyzed the polymerization of 2,6-DCP and 2,3,6-TCP, forming dimer products. LAC-4 catalyzed 2,6-DCP into two main products: 2,6-dichloro-4-(2,6-dichlorophenoxy) phenol and 3,3',5,5'-tetrachloro-4,4'-dihydroxybiphenyl. LAC-4 catalyzed 2,3,6-TCP into two main products: 2,3,6-trichloro-4-(2,3,6-trichlorophenoxy) phenol and 2,2',3,3',5,5'-hexachloro-[1,1'-biphenyl]-4,4'-diol.

摘要

漆酶 LAC-4 的纯化及其对氯酚污染物的降解性能研究

首先,从 中纯化了一种漆酶命名为 LAC-4。系统研究了纯化的 LAC-4 漆酶的酶学性质以及 LAC-4 对三种氯酚污染物 2,6-二氯苯酚(2,6-DCP)、2,3,6-三氯苯酚(2,3,6-TCP)和 3-氯苯酚(3-CP)的降解性能。LAC-4 对 2,6-DCP 和 2,3,6-TCP 的降解能力很强。LAC-4 对 3-CP 的降解能力明显低于 2,6-DCP 和 2,3,6-TCP。LAC-4 对氯酚混合物(2,6-DCP + 2,3,6-TCP)也有很好的降解效果。LAC-4 降解氯酚的动力学结果表明,LAC-4 对 2,6-DCP 的亲和力高于 2,3,6-TCP。LAC-4 对 2,6-DCP 的催化效率和催化速率也明显高于 2,3,6-TCP。在 2,6-DCP 和 2,3,6-TCP 的降解过程中,LAC-4 对不同金属盐(如 MnSO、ZnSO、NaSO、MgSO、CuSO、KSO)和有机溶剂(如乙二醇和甘油)的高浓度具有很强的耐受性。接下来,还系统地探讨了 LAC-4 对氯酚的解毒性能。LAC-4 处理对单个氯酚(2,6-DCP、2,3,6-TCP)和氯酚混合物(2,6-DCP + 2,3,6-TCP)的植物毒性具有很强的解毒能力和良好的解毒效果。用 LAC-4 处理的 2,6-DCP、2,3,6-TCP 和氯酚混合物(2,6-DCP + 2,3,6-TCP)的植物毒性大大降低或消除。最后,我们专注于 LAC-4 降解 2,6-DCP 和 2,3,6-TCP 的降解机制和途径。首次揭示了漆酶催化 2,6-DCP 和 2,3,6-TCP 降解的可能转化途径。LAC-4 氧化 2,6-DCP 和 2,3,6-TCP 形成的自由基通过聚合产生二聚体。LAC-4 催化 2,6-DCP 和 2,3,6-TCP 的聚合,形成二聚体产物。LAC-4 催化 2,6-DCP 生成两种主要产物:2,6-二氯-4-(2,6-二氯苯氧基)苯酚和 3,3',5,5'-四氯-4,4'-二羟基联苯。LAC-4 催化 2,3,6-TCP 生成两种主要产物:2,3,6-三氯-4-(2,3,6-三氯苯氧基)苯酚和 2,2',3,3',5,5'-六氯-[1,1'-联苯]-4,4'-二醇。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/925e/9266351/df09b57d5750/ijerph-19-08150-g001.jpg

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