4-O-Methyl-d-glucuronic acid (MeGlcA) is a side-residue of glucuronoarabinoxylan and can form ester linkages to lignin, contributing significantly to the strength and rigidity of the plant cell wall. Glucuronoyl esterases (4-O-methyl-glucuronoyl methylesterases, GEs) can cleave this ester bond, and therefore may play a significant role as auxiliary enzymes in biomass saccharification for the production of biofuels and biochemicals. GEs belong to a relatively new family of carbohydrate esterases (CE15) in the CAZy database (www.cazy.org), and so far around ten fungal GEs have been characterized. To explore additional GE enzymes, we used a genome mining strategy. BLAST analysis with characterized GEs against approximately 250 publicly accessi...
Carbohydrate Esterase Family 15 (CE15) is a rather small family, comprising approximately 200 member...
Feruloyl esterases (FAEs) are accessory enzymes for plant biomass degradation, which catalyse hydrol...
Wood tissue constitutes of a tight network of biopolymers. Covalent linkages between lignin and carb...
4-O-Methyl-d-glucuronic acid (MeGlcA) is a side-residue of glucuronoarabinoxylan and can form ester ...
4-O-Methyl-d-glucuronic acid (MeGlcA) is a side-residue of glucuronoarabinoxylan and can form ester ...
4-O-Methyl-D-glucuronic acid (MeGlcA) is a side-residue of glucuronoarabinoxylan and can form ester ...
The glucuronoyl esterases (GEs) that have been identified so far belong to family 15 of the carbohyd...
AbstractThe cellulolytic system of the wood-rotting fungus Schizophyllum commune contains an esteras...
As the sustainable energy is becoming increasingly important, utilization of lignocellulosic biomass...
The white-rot fungus Phanerochaete chrysosporium produces glucuronoyl esterase, a recently discovere...
Feruloyl esterases (FAEs) are a diverse group of enzymes that specifically catalyze the hydrolysis o...
Feruloyl esterases (FAEs) are a diverse group of enzymes that specifically catalyze the hydrolysis o...
The development of new wood-based materials is of great interest to the forest industry. Wood tissue...
Feruloyl esterases (FAEs) are a diverse group of enzymes that specifically catalyze the hydrolysis o...
International audienceThe enzymatic conversion of acetylated hardwood glucuronoxylan to functional f...
Carbohydrate Esterase Family 15 (CE15) is a rather small family, comprising approximately 200 member...
Feruloyl esterases (FAEs) are accessory enzymes for plant biomass degradation, which catalyse hydrol...
Wood tissue constitutes of a tight network of biopolymers. Covalent linkages between lignin and carb...
4-O-Methyl-d-glucuronic acid (MeGlcA) is a side-residue of glucuronoarabinoxylan and can form ester ...
4-O-Methyl-d-glucuronic acid (MeGlcA) is a side-residue of glucuronoarabinoxylan and can form ester ...
4-O-Methyl-D-glucuronic acid (MeGlcA) is a side-residue of glucuronoarabinoxylan and can form ester ...
The glucuronoyl esterases (GEs) that have been identified so far belong to family 15 of the carbohyd...
AbstractThe cellulolytic system of the wood-rotting fungus Schizophyllum commune contains an esteras...
As the sustainable energy is becoming increasingly important, utilization of lignocellulosic biomass...
The white-rot fungus Phanerochaete chrysosporium produces glucuronoyl esterase, a recently discovere...
Feruloyl esterases (FAEs) are a diverse group of enzymes that specifically catalyze the hydrolysis o...
Feruloyl esterases (FAEs) are a diverse group of enzymes that specifically catalyze the hydrolysis o...
The development of new wood-based materials is of great interest to the forest industry. Wood tissue...
Feruloyl esterases (FAEs) are a diverse group of enzymes that specifically catalyze the hydrolysis o...
International audienceThe enzymatic conversion of acetylated hardwood glucuronoxylan to functional f...
Carbohydrate Esterase Family 15 (CE15) is a rather small family, comprising approximately 200 member...
Feruloyl esterases (FAEs) are accessory enzymes for plant biomass degradation, which catalyse hydrol...
Wood tissue constitutes of a tight network of biopolymers. Covalent linkages between lignin and carb...