Recent years have witnessed a spurt of activities in the elucidation of the molecular function of a class of proteins with great potential in biomass degradation. GH61 proteins are of fungal origin and were originally classified in family 61 of the glycoside hydrolases. From the beginning they were strongly suspected to be involved in cellulose degradation because of their expression profiles, despite very low detectable endoglucanase activities. A major breakthrough came from structure determination of the first members, establishing the presence of a divalent metal binding site and a similarity to bacterial proteins involved in chitin degradation. A second breakthrough came from the identification of cellulase boosting activity dependent ...
The enzymatic degradation of cellulose is an important process in nature. This thesis has focused on...
The cost of cellulose degrading enzymes is still a major barrier to the economical production of liq...
International audiencea-L-Arabinofuranosidases are glycoside hydrolases that specifically hydrolyze ...
AbstractRecent years have witnessed a spurt of activities in the elucidation of the molecular functi...
Many fungi growing on plant biomass produce proteins currently classified as glycoside hydrolase fam...
Many fungi growing on plant biomass produce proteins currently classified as glycoside hydrolase fam...
Many fungi growing on plant biomass produce proteins currently classified as glycoside hydrolase fam...
The recently discovered fungal and bacterial polysaccharide monooxygenases (PMOs) are capable of oxi...
Glycoside hydrolases (GHs) are key enzymes in the depolymerization of plant-derived cellulose, a pro...
Lignocellulose constitutes a major component of discarded wastes from various industries viz. agricu...
Enzymatic degradation of plant biomass has attracted intensive research interest for the production ...
The degradation of cellulose is typically described as a process that relies solely on the action of...
Glycoside hydrolases (GHs) are key enzymes in the depolymerization of plant-derived cellulose, a pro...
Cellulose is the most abundant organic compound on earth. A wide range of highly specialized microor...
Fungal cellulolytic enzymes are carbohydrate active enzymes (CAzymes) essential for the deconstructi...
The enzymatic degradation of cellulose is an important process in nature. This thesis has focused on...
The cost of cellulose degrading enzymes is still a major barrier to the economical production of liq...
International audiencea-L-Arabinofuranosidases are glycoside hydrolases that specifically hydrolyze ...
AbstractRecent years have witnessed a spurt of activities in the elucidation of the molecular functi...
Many fungi growing on plant biomass produce proteins currently classified as glycoside hydrolase fam...
Many fungi growing on plant biomass produce proteins currently classified as glycoside hydrolase fam...
Many fungi growing on plant biomass produce proteins currently classified as glycoside hydrolase fam...
The recently discovered fungal and bacterial polysaccharide monooxygenases (PMOs) are capable of oxi...
Glycoside hydrolases (GHs) are key enzymes in the depolymerization of plant-derived cellulose, a pro...
Lignocellulose constitutes a major component of discarded wastes from various industries viz. agricu...
Enzymatic degradation of plant biomass has attracted intensive research interest for the production ...
The degradation of cellulose is typically described as a process that relies solely on the action of...
Glycoside hydrolases (GHs) are key enzymes in the depolymerization of plant-derived cellulose, a pro...
Cellulose is the most abundant organic compound on earth. A wide range of highly specialized microor...
Fungal cellulolytic enzymes are carbohydrate active enzymes (CAzymes) essential for the deconstructi...
The enzymatic degradation of cellulose is an important process in nature. This thesis has focused on...
The cost of cellulose degrading enzymes is still a major barrier to the economical production of liq...
International audiencea-L-Arabinofuranosidases are glycoside hydrolases that specifically hydrolyze ...