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Transformation of catechol in the presence of a laccase and birnessite.

机译:在漆酶和水钠锰矿的存在下邻苯二酚的转化。

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The transformation of naturally occurring phenols to humic polymers through oxidative coupling reactions may involve oxidoreductive enzymes and soil minerals as catalysts. There is limited information on the possible inhibitory or synergistic interactions between oxidoreductases and mineral catalysts as they participate in oxidative coupling of phenolic substrates. In this study, a ternary system was investigated, in which a fungal enzyme (Trametes villosa laccase), birnessite ( delta -MnO2), and a naturally occurring phenolic compound (catechol) were reacted together to model soil processes. Binary systems (catechol/laccase and catechol/birnessite) were included for comparison. In the absence of the mineral, T. villosa laccase (950 katal ml-1) transformed 31% of catechol, whereas birnessite (1 mg ml-1) in the absence of the enzyme showed a 24% catechol transformation. The percentages of catechol transformation in the binary systems did not accumulate in the ternary system; instead, birnessite and laccase tested together transformed only 36% of catechol. This suggested that birnessite had an inhibitory effect on substrate transformation by laccase catalysis. Enzyme assays indicated that inhibition was a result of enzyme deactivation by humic-like polymers produced by birnessite, and by Mn2+ ions released from the mineral. These observations underscore the importance of considering enzyme-soil mineral-organic matter interactions in studies of humus formation and contaminant removal..
机译:通过氧化偶联反应将天然存在的酚类转化为腐殖质聚合物可能涉及氧化还原酶和土壤矿物质作为催化剂。关于氧化还原酶和矿物催化剂参与酚类底物的氧化偶联时可能的抑制或协同相互作用的信息有限。在这项研究中,研究了一种三元系统,其中真菌酶(Trametes villosa漆酶),水钠锰矿(δ-MnO2)和天然酚类化合物(儿茶酚)一起反应,以模拟土壤过程。包括二元系统(邻苯二酚/漆酶和邻苯二酚/水钠锰矿)进行比较。在缺少矿物质的情况下,棉铃虫漆酶(950 katal ml-1)转化了31%的邻苯二酚,而在没有酶的情况下,水钠锰矿(1 mg ml-1)转化为24%的儿茶酚。二元系统中邻苯二酚转化的百分比未在三元系统中累积;相反,经过测试的水钠锰矿和漆酶仅转化了36%的邻苯二酚。这表明水钠锰矿对漆酶催化的底物转化具有抑制作用。酶分析表明,抑制是由于水钠锰矿产生的腐殖质样聚合物以及矿物中释放的Mn2 +离子使酶失活的结果。这些观察结果强调了在腐殖质形成和污染物去除研究中考虑酶-土壤矿物-有机物相互作用的重要性。

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