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Fungal Laccases and Their Applications in Bioremediation

机译:真菌漆酶及其在生物修复中的应用

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摘要

Laccases are blue multicopper oxidases, which catalyze the monoelectronic oxidation of a broad spectrum of substrates, for example, ortho- and para-diphenols, polyphenols, aminophenols, and aromatic or aliphatic amines, coupled with a full, four-electron reduction of O2 to H2O. Hence, they are capable of degrading lignin and are present abundantly in many white-rot fungi. Laccases decolorize and detoxify the industrial effluents and help in wastewater treatment. They act on both phenolic and nonphenolic lignin-related compounds as well as highly recalcitrant environmental pollutants, and they can be effectively used in paper and pulp industries, textile industries, xenobiotic degradation, and bioremediation and act as biosensors. Recently, laccase has been applied to nanobiotechnology, which is an increasing research field, and catalyzes electron transfer reactions without additional cofactors. Several techniques have been developed for the immobilization of biomolecule such as micropatterning, self-assembled monolayer, and layer-by-layer techniques, which immobilize laccase and preserve their enzymatic activity. In this review, we describe the fungal source of laccases and their application in environment protection.
机译:漆酶是蓝色的多铜氧化酶,可催化多种底物的单电子氧化,例如邻二酚和对二酚,多酚,氨基酚和芳香族或脂肪族胺,再加上四电子将O2完全还原为水因此,它们能够降解木质素,并且在许多白腐真菌中大量存在。漆酶对工业废水进行脱色和解毒,并有助于废水处理。它们对酚类和非酚类木质素相关化合物以及难降解的环境污染物均起作用,并且可以有效地用于造纸和纸浆工业,纺织工业,异种生物降解和生物修复,并可以用作生物传感器。近年来,漆酶已被应用于纳米生物技术,这是一个正在不断发展的研究领域,并且其催化电子转移反应而无需额外的辅因子。已经开发了用于固定生物分子的多种技术,例如微图案化,自组装单层和逐层技术,它们固定了漆酶并保持了其酶活性。在这篇综述中,我们描述了漆酶的真菌来源及其在环境保护中的应用。

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