Fungal Laccases and Their Applications in Bioremediation
Грибные лакказы и их применение в биоремедиации
2014-05-15
SCID: 54.1/6v54dz35
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bioremediationblue multicopper oxidasesfungal laccaseslignin degradationwastewater treatment
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Abstract (AI)
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.
Key Findings
1
Because laccases degrade lignin and recalcitrant pollutants, they can decolorize and detoxify industrial effluents and support wastewater treatment.
2
Fungal laccases are blue multicopper oxidases that oxidize diverse phenolic, nonphenolic, and amine substrates while reducing O₂ completely to H₂O.
3
Laccases catalyze electron-transfer reactions without additional cofactors and have recently been incorporated into emerging nanobiotechnology applications.
4
Laccases have applications in pulp and paper processing, textile industries, xenobiotic degradation, environmental bioremediation, and biosensor development.
5
Micropatterning, self-assembled monolayers, and layer-by-layer methods can immobilize laccases while preserving their enzymatic activity.
Research Object
Fungal laccases (blue multicopper oxidase enzymes produced by white-rot fungi)
Research Subject
The enzymatic oxidation and degradation capabilities of fungal laccases, including pollutant detoxification, wastewater treatment, lignin-related compound degradation, bioremediation, biosensing, and immobilization while preserving enzymatic activity
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2014-05-15
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