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Soybean peroxidase-mediated degradation of an azo dye– a detailed mechanistic study

机译:大豆过氧化物酶介导的偶氮染料降解-详细的机理研究

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Peroxidases are emerging as an important class of enzymes that can be used for the efficient degradation of organic pollutants. However, detailed studies identifying the various intermediates produced and the mechanisms involved in the enzyme-mediated pollutant degradation are not widely published. In the present study, the enzymatic degradation of an azo dye (Crystal Ponceau 6R, CP6R) was studied using commercially available soybean peroxidase (SBP) enzyme. Several operational parameters affecting the enzymatic degradation of dye were evaluated and optimized, such as initial dye concentration, H2O2 dosage, mediator amount and pH of the solution. Under optimized conditions, 40 ppm dye solution could be completely degraded in under one minute by SBP in the presence of H2O2 and a redox mediator. Dye degradation was also confirmed using HPLC and TOC analyses, which showed that most of the dye was being mineralized to CO2 in the process. Detailed analysis of metabolites, based on LC/MS results, showed that the enzyme-based degradation of the CP6R dye proceeded in two different reaction pathways- via symmetric azo bond cleavage as well as asymmetric azo bond breakage in the dye molecule. In addition, various critical transformative and oxidative steps such as deamination, desulfonation, keto-oxidation are explained on an electronic level. Furthermore, LC/MS/MS analyses confirmed that the end products in both pathways were small chain aliphatic carboxylic acids.
机译:过氧化物酶正在作为一类重要的酶而出现,可用于有效降解有机污染物。然而,尚未广泛发表详细的研究来鉴定所产生的各种中间体以及涉及酶介导的污染物降解的机理。在本研究中,使用市售大豆过氧化物酶(SBP)酶研究了偶氮染料(Crystal Ponceau 6R,CP6R)的酶降解。对影响染料酶促降解的几个操作参数进行了评估和优化,例如初始染料浓度,H2O2用量,介体量和溶液的pH值。在优化的条件下,在H2O2和氧化还原介体存在下,SBP可以在一分钟之内将40ppm的染料溶液完全降解。还通过HPLC和TOC分析确认了染料的降解,这表明该过程中大多数染料都矿化为CO2。基于LC / MS结果的代谢物详细分析表明,基于酶的CP6R染料降解在两个不同的反应途径中进行-通过对称的偶氮键裂解以及不对称的偶氮键断裂。另外,在电子水平上解释了各种关键的转化和氧化步骤,例如脱氨,脱磺,酮氧化。此外,LC / MS / MS分析证实,两种途径的最终产物均为小链脂族羧酸。

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