Background: The lignin peroxidase isozyme H8 from the white-rot fungus Phanerochaete chrysosporium (LiPH8) demonstrates a high redox potential and can efficiently catalyze the oxidation of veratryl alcohol, as well as the degradation of recalcitrant lignin. However, native LiPH8 is unstable under acidic pH conditions. This characteristic is a barrier to lignin depolymerization, as repolymerization of phenolic products occurs simultaneously at neutral pH. Because repolymerization of phenolics is repressed at acidic pH, a highly acid-stable LiPH8 could accelerate the selective depolymerization of recalcitrant lignin. Results: The engineered LiPH8 was in silico designed through the structural superimposition of surface-active site-harboring L...
The present study maps the active site of lignin peroxidase in respect to substrate size using eithe...
Free-hydroxyl phenolic units can decrease or even abort the catalytic activity of lignin peroxidase ...
Combining solid acid catalysts with enzyme reactions in aqueous environments is challenging because ...
BackgroundThe lignin peroxidase isozyme H8 from the white-rot fungus Phanerochaete chrysosporium (Li...
Background Ligninolytic peroxidases are divided into three families: manganese peroxidases (MnPs), l...
The development of a lignin peroxidase (LiP) that is thermostable even under acidic pH conditions is...
BackgroundLignin peroxidases catalyze a variety of reactions, resulting in cleavage of both β-O-4' e...
Department of Chemical EngineeringThe development of acid-resistant lignin peroxidase is needed to i...
8 p.-6 fig.-2 tab.Two major peroxidases are secreted by the fungus Pleurotus eryngii in lignocellulo...
The authors wish to thank EaStCHEM, the School of Chemistry and the EPSRC (grant code EP/J018139/1) ...
Lignin, a high molecular weight branched polyphenol found in plants, is a source of aromatic compoun...
Background. Manganese peroxidases (MnP) and lignin peroxidases (LiP) are haem-including fungal secre...
Directed evolution was applied to dye-decolourizing peroxidase Dyp1B from Pseudomonas fluorescens Pf...
The conversion of polymeric lignin from plant biomass into renewable chemicals is an important unsol...
Dye-decolorizing peroxidases (DyPs) are a family of microbial heme-containing peroxidases that show ...
The present study maps the active site of lignin peroxidase in respect to substrate size using eithe...
Free-hydroxyl phenolic units can decrease or even abort the catalytic activity of lignin peroxidase ...
Combining solid acid catalysts with enzyme reactions in aqueous environments is challenging because ...
BackgroundThe lignin peroxidase isozyme H8 from the white-rot fungus Phanerochaete chrysosporium (Li...
Background Ligninolytic peroxidases are divided into three families: manganese peroxidases (MnPs), l...
The development of a lignin peroxidase (LiP) that is thermostable even under acidic pH conditions is...
BackgroundLignin peroxidases catalyze a variety of reactions, resulting in cleavage of both β-O-4' e...
Department of Chemical EngineeringThe development of acid-resistant lignin peroxidase is needed to i...
8 p.-6 fig.-2 tab.Two major peroxidases are secreted by the fungus Pleurotus eryngii in lignocellulo...
The authors wish to thank EaStCHEM, the School of Chemistry and the EPSRC (grant code EP/J018139/1) ...
Lignin, a high molecular weight branched polyphenol found in plants, is a source of aromatic compoun...
Background. Manganese peroxidases (MnP) and lignin peroxidases (LiP) are haem-including fungal secre...
Directed evolution was applied to dye-decolourizing peroxidase Dyp1B from Pseudomonas fluorescens Pf...
The conversion of polymeric lignin from plant biomass into renewable chemicals is an important unsol...
Dye-decolorizing peroxidases (DyPs) are a family of microbial heme-containing peroxidases that show ...
The present study maps the active site of lignin peroxidase in respect to substrate size using eithe...
Free-hydroxyl phenolic units can decrease or even abort the catalytic activity of lignin peroxidase ...
Combining solid acid catalysts with enzyme reactions in aqueous environments is challenging because ...