14 p.- 3 fig.- 1 tab.Saturation mutagenesis was performed over six residues delimiting the substrate binding pocket of a fungal laccase previously engineered in the lab. Mutant libraries were screened using sinapic acid as a model substrate, and those mutants presenting increased activity were selected for exploring the oxidation of lignin-derived phenols. The latter comprised a battery of phenolic compounds of interest due to their use as redox mediators or precursors of added-value products and their biological activity. The new laccase variants were investigated in a multi-screening assay and the structural determinants, at both the substrate and the protein level, for the oxidation of the different phenols are discussed. Laccase activit...
Laccases are blue multi-copper oxidases that catalyse the oxidation of a wide variety of substrates,...
Lignin valorization is a pending issue for the integrated conversion of lignocellulose in consumer g...
13 p.-7 fig.-2 tabFungal laccases have great potential as biocatalysts oxidizing a variety of aromat...
Saturation mutagenesis was performed over six residues delimiting the substrate binding pocket of a ...
Laccases (EC 1.10.3.2) are multicopper oxidases able to oxidize various substrates, such as phenolic...
In spite of its broad specificity among phenols, Trametes versicolor laccase hardly succeeds in oxid...
Steric and redox issues of phenolic and non-phenolic substrates are investigated for a better insigh...
Laccases (EC 1.10.3.2) are multicopper oxidases able to oxidize phenolic compounds such as lignin-re...
11 p.-7 fig.-4 tab.Iterative saturation mutagenesis was performed over six residues delimiting the s...
Laccases are copper-containing oxidases that catalyze a one-electron abstraction from various phenol...
10 p.- 7 fig.The robustness of a high-redox potential laccase has been enhanced by swapping its seco...
New mediators of laccase have been comparatively evaluated and ranked towards the benchmark aerobic ...
<div><p></p><p>Laccases (EC 1.10.3.2) are copper-containing oxidoreductases that have a relatively h...
Understanding the molecular determinants of enzyme performance is of primary importance for the rati...
The stability and reactivity of five different thermostable fungal laccases from the species Tramete...
Laccases are blue multi-copper oxidases that catalyse the oxidation of a wide variety of substrates,...
Lignin valorization is a pending issue for the integrated conversion of lignocellulose in consumer g...
13 p.-7 fig.-2 tabFungal laccases have great potential as biocatalysts oxidizing a variety of aromat...
Saturation mutagenesis was performed over six residues delimiting the substrate binding pocket of a ...
Laccases (EC 1.10.3.2) are multicopper oxidases able to oxidize various substrates, such as phenolic...
In spite of its broad specificity among phenols, Trametes versicolor laccase hardly succeeds in oxid...
Steric and redox issues of phenolic and non-phenolic substrates are investigated for a better insigh...
Laccases (EC 1.10.3.2) are multicopper oxidases able to oxidize phenolic compounds such as lignin-re...
11 p.-7 fig.-4 tab.Iterative saturation mutagenesis was performed over six residues delimiting the s...
Laccases are copper-containing oxidases that catalyze a one-electron abstraction from various phenol...
10 p.- 7 fig.The robustness of a high-redox potential laccase has been enhanced by swapping its seco...
New mediators of laccase have been comparatively evaluated and ranked towards the benchmark aerobic ...
<div><p></p><p>Laccases (EC 1.10.3.2) are copper-containing oxidoreductases that have a relatively h...
Understanding the molecular determinants of enzyme performance is of primary importance for the rati...
The stability and reactivity of five different thermostable fungal laccases from the species Tramete...
Laccases are blue multi-copper oxidases that catalyse the oxidation of a wide variety of substrates,...
Lignin valorization is a pending issue for the integrated conversion of lignocellulose in consumer g...
13 p.-7 fig.-2 tabFungal laccases have great potential as biocatalysts oxidizing a variety of aromat...