Degradation Of Polycyclic Aromatic Hydrocarbons By Free And Nanoclay-immobilized Manganese Peroxidase From Anthracophyllum Discolor.
Francisca Acevedo, Leticia Pizzul, Monica D. Castillo, Maria Elizabeth Gonzalez, Mara Cea, Liliana Gianfreda, María Cristina Diez
Published 2010 · Medicine, Chemistry
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Manganese peroxidase (MnP) produced by Anthracophyllum discolor, a Chilean white rot fungus, was immobilized on nanoclay obtained from volcanic soil and its ability to degrade polycyclic aromatic hydrocarbons (PAHs) compared with the free enzyme was evaluated. At the same time, nanoclay characterization was performed. Nanoclay characterization by transmission electronic microscopy showed a particle average size smaller than 100 nm. The isoelectric points (IEP) of nanoclay and MnP from A. discolor were 7.0 and 3.7, respectively, as determined by micro electrophoresis migration and preparative isoelectric focusing. Results indicated that 75% of the enzyme was immobilized on the nanoclay through physical adsorption. As compared to the free enzyme, immobilized MnP from A. discolor achieved an improved stability to temperature and pH. The activation energy (Ea) value for immobilized MnP (51.9 kJ mol(-1)) was higher than that of the free MnP (34.4 kJ mol(-1)). The immobilized enzyme was able to degrade pyrene (>86%), anthracene (>65%), alone or in mixture, and to a less extent fluoranthene (<15.2%) and phenanthrene (<8.6%). Compared to free MnP from A. discolor, the enzyme immobilized on nanoclay enhanced the enzymatic transformation of anthracene in soil. Overall results indicate that nanoclay, a carrier of natural origin, is a suitable support material for MnP immobilization. In addition, immobilized MnP shows an increased stability to high temperature, pH and time storage, as well as an enhanced PAHs degradation efficiency in soil. All these characteristics may suggest the possible use of nanoclay-immobilized MnP from A. discolor as a valuable option for in situ bioremediation purposes.
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Catalytic power of enzymes decreases with temperature: New insights for understanding soil C cycling and microbial ecology under warming
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Biodegradation of Polycyclic Aromatic Hydrocarbons Using FungiNew Prospects toward Cytochrome P450 Engineering
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Bioremediation of PAH-Contaminated Soil by Fungi
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Potential of marine derived fungi and their enzymes in bioremediation of industrial pollutants
Ashutosh Kumar Verma (2011)
Biological and analytical techniques used for detection of polyaromatic hydrocarbons
Sunil Kumar (2017)
Sensitivity analysis of biodiesel blends on Benzo[a]pyrene and main emissions using MOVES: A case study in Temuco, Chile.
Ernesto Pino-Cortés (2015)
Microbial Peroxidases and Their Unique Catalytic Potentialities to Degrade Environmentally Related Pollutants
Muhammad Bilal (2020)
Immobilization of peroxidase on polypyrrole-cellulose-graphene oxide nanocomposite via non-covalent interactions for the degradation of Reactive Blue 4 dye.
Misha Ali (2018)
In Silico Genomics of Fungal Oxidoreductase Genes
Nicolas Détry (2015)
Fabrication of a novel immobilization system and its application for removal of anthracene from soil
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Securing The Future: Clay-Based Solutions For a Comprehensive and Sustainable Potable-Water Supply System
Giora Rytwo (2018)
Modern Bioremediation Approaches: Use of Biosurfactants, Emulsifiers, Enzymes, Biopesticides, GMOs
Martin Halecký (2020)
Fungal Peroxidases Mediated Bioremediation of Industrial Pollutants
Misha Ali (2019)
Biotechnological Advances for Restoring Degraded Land for Sustainable Development.
Vishal Tripathi (2017)
Versatile peroxidase of Bjerkandera fumosa: substrate and inhibitor specificity.
Natalia N. Pozdnyakova (2013)
Microbial Degradation of Aromatic Compounds and Pesticides: Challenges and Solutions
Randhir Singh (2015)
Biochemical Synthesis of Ag/AgCl Nanoparticles for Visible-Light-Driven Photocatalytic Removal of Colored Dyes
Xiyun Zhao (2015)
Ecoenzymatic Stoichiometry and Ecological Theory
Robert L. Sinsabaugh (2012)
Recent trends and valorization of immobilization strategies and ligninolytic enzymes by industrial biotechnology
Muhammad Asgher (2014)
Biocatalizadores fúngicos hidrocarbonoclásticos del genero Aspergillus para la descontaminación de agua con Hidrocarburos Policíclicos Aromáticos (HPAs) Fungal hidrocarbonoclastic biocatalysts of the genere Aspergillus for water descontamination with Polycyclic Aromatic Hydrocarbons(PAHs)
C. Francisco Yegres (2016)
Enzymatic technologies for remediation of hydrophobic organic pollutants in soil
Gemma Eibes (2015)
SCREENING FOR LIGNOCELLULOLYTIC ENZYMES AND METAL TOLERANCE IN ISOLATES OF WOOD-ROT FUNGI FROM CHILE
Yudith Guillén (2011)
Adsorption of Trametes versicolor laccase to soil iron and aluminum minerals: enzyme activity, kinetics and stability studies.
Yue Wu (2014)
Biogenic silver nanoparticles associated with silver chloride nanoparticles (Ag@AgCl) produced by laccase from Trametes versicolor
N. Busquet i Duran (2014)
Fungal enzymes for environmental management.
Ursula Kües (2015)
Involvement of the Ligninolytic System of White-Rot and Litter-Decomposing Fungi in the Degradation of Polycyclic Aromatic Hydrocarbons
Natalia N. Pozdnyakova (2012)
Nanoscience in Food and Agriculture 1
Eric Lichtfouse (2016)See more