Issue 24, 2018

Measurement of adsorption constants of laccase on gold nanoparticles to evaluate the enhancement in enzyme activity of adsorbed laccase

Abstract

Adsorption of enzymes to nanoparticles and the mechanisms responsible for enzyme activity modulation of adsorbed enzymes are not well understood. In this work, gold nanoparticles were used for electrostatic adsorption of a plant-derived laccase. Adsorption constants were determined by four independent techniques: dynamic light scattering, electrophoretic light scattering, agarose gel electrophoresis and fluorescence quenching. Stable bionanoconjugates were formed with log K in the range 6.8–8.9. An increase in enzyme activity was detected, in particular at acidic and close to neutral pH values, a feature that expands the useful pH range of the enzyme. A model for the adsorption was developed, based on geometrical considerations and volume increase data from dynamic light scattering. This indicates that enzymes adsorbed to gold nanoparticles are ca. 9 times more active than the free enzyme.

Graphical abstract: Measurement of adsorption constants of laccase on gold nanoparticles to evaluate the enhancement in enzyme activity of adsorbed laccase

Supplementary files

Article information

Article type
Paper
Submitted
16 May 2018
Accepted
03 Jun 2018
First published
04 Jun 2018

Phys. Chem. Chem. Phys., 2018,20, 16761-16769

Measurement of adsorption constants of laccase on gold nanoparticles to evaluate the enhancement in enzyme activity of adsorbed laccase

M. Peixoto de Almeida, P. Quaresma, S. Sousa, C. Couto, I. Gomes, L. Krippahl, R. Franco and E. Pereira, Phys. Chem. Chem. Phys., 2018, 20, 16761 DOI: 10.1039/C8CP03116A

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