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Ligninase-mediated Removal Of Natural And Synthetic Estrogens From Water: I. Reaction Behaviors

机译:木质素酶介导的天然和合成雌激素从水中的去除:I.反应行为

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Our experiments revealed that a few natural and synthetic estrogens can be effectively transformed through reactions that are mediated by lignin peroxidase (LiP), an extracellular enzyme that is produced by a white rot fungus Phanerochaete chrysosporium and is widely present in the natural environment. We systematically assessed the reaction efficiencies at varying important conditions and identified the reaction products using mass spectrometry. In particular, we compared the reaction behaviors for systems variously containing natural organic matter and/or veratryl alcohol, a secondary metabolite that P. chrysosporium produces along with LiP in nature to play a role in mediating LiP activity. On the basis of the observed reaction behaviors and the molecular characteristics of the substrates and the enzyme, we postulate that the active binding site for estrogens is located within the LiP heme cavity, whereas that for veratryl alcohol is on the enzyme surface. Our study suggests that the processes mediated by LiP and other naturally occurring enzymes of similar nature may influence the environmental transformation and fate of estrogen contaminants. The findings in this study provide useful information for understanding LiP-mediated estrogen reactions and for potential development of novel enzymatic method to control estrogen contamination.
机译:我们的实验表明,通过木质素过氧化物酶(LiP)介导的反应可以有效地转化一些天然和合成的雌激素,木质素过氧化物酶是由白腐真菌Phanerochaete chrysosporium产生的一种细胞外酶,广泛存在于自然环境中。我们系统地评估了在各种重要条件下的反应效率,并使用质谱法鉴定了反应产物。特别是,我们比较了各种含有天然有机物和/或藜芦醇(金黄色葡萄球菌与LiP一起在自然界中发挥介导LiP活性作用的次级代谢产物)的体系的反应行为。基于观察到的反应行为以及底物和酶的分子特征,我们假设雌激素的活性结合位点位于LiP血红素腔内,而藜芦醇的活性结合位点位于酶表面。我们的研究表明,由LiP和其他类似性质的天然酶介导的过程可能影响环境转化和雌激素污染物的命运。这项研究的发现为理解LiP介导的雌激素反应以及开发新型酶促方法控制雌激素污染提供了有用的信息。

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