Fungal laccases – occurrence and properties
Грибные лакказы: распространение и свойства
2006-02-09
SCID: 54.1/8wbj8vvm
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fungal laccaseslignin transformationligninolytic enzymesphenolic compoundsxenobiotic compounds
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Abstract (AI)
Laccases of fungi attract considerable attention due to their possible involvement in the transformation of a wide variety of phenolic compounds including the polymeric lignin and humic substances. So far, more than a 100 enzymes have been purified from fungal cultures and characterized in terms of their biochemical and catalytic properties. Most ligninolytic fungal species produce constitutively at least one laccase isoenzyme and laccases are also dominant among ligninolytic enzymes in the soil environment. The fact that they only require molecular oxygen for catalysis makes them suitable for biotechnological applications for the transformation or immobilization of xenobiotic compounds.
Key Findings
1
Because laccases require only molecular oxygen for catalysis, they are promising for biotechnological transformation or immobilization of xenobiotic compounds.
2
Fungal laccases can transform diverse phenolic compounds, including polymeric lignin and humic substances.
3
Laccases are dominant among ligninolytic enzymes in the soil environment.
4
More than 100 fungal laccases have been purified and characterized for their biochemical and catalytic properties.
5
Most ligninolytic fungi constitutively produce at least one laccase isoenzyme.
Research Object
Fungal laccases
Research Subject
Their occurrence and biochemical and catalytic properties, including their role in transforming phenolic, lignin, humic, and xenobiotic compounds
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2006-02-09
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