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  • Immobilization of laccase on modified silica: stabilization, thermal inactivation and kinetic behaviour in 1-ethyl-3-methylimidazolium ethylsulfate ionic liquid.

Immobilization of laccase on modified silica: stabilization, thermal inactivation and kinetic behaviour in 1-ethyl-3-methylimidazolium ethylsulfate ionic liquid.

Bioresource technology (2013-02-05)
Ana P M Tavares, Oscar Rodríguez, María Fernández-Fernández, Alberto Domínguez, Diego Moldes, María A Sanromán, Eugénia A Macedo
ABSTRACT

Laccase was immobilized on modified silica carrier. The immobilization conditions, pH and enzyme concentration were optimized. Operational stability of 10 reaction cycles showed that immobilized laccase in buffer was stable, presenting an activity loss <30%. Nevertheless, a high decrease >80% was obtained in ionic liquid (IL) solution. Activity of immobilized laccase was maintained when incubated in IL. After 7days of incubation, immobilized laccase lost 30-50% of its initial activity. Immobilization also improved thermal stability of laccase in the presence of IL. Enzyme kinetics was modelled with Michaelis-Menten model. The Km value for free laccase increases significantly with the IL concentration. Slight differences were found in Vm for free enzyme. Unusual kinetic behaviour was obtained for immobilized laccase in IL: Both Vm and Km increased with IL concentration, resulting in increased catalytic efficiency of the immobilized enzyme in presence of IL.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Laccase from Rhus vernicifera, crude acetone powder, ≥50 units/mg solid
Sigma-Aldrich
Laccase from Agaricus bisporus, powder, deep brown, ≥4 U/mg
Sigma-Aldrich
Laccase from Trametes versicolor, powder, light brown, ≥0.5 U/mg