Plant biomass holds a promise for the production of second-generation ethanol via enzymatic hydrolysis, but its utilization as a biofuel resource is currently limited to a large extent by the cost and low efficiency of the cellulolytic enzymes. Considerable efforts have been dedicated to elucidate the mechanisms of the enzymatic process. It is well known that most cellulases possess a catalytic core domain and a carbohydrate binding module (CBM), without which the enzymatic activity can be drastically reduced. However, Cel12A members of the glycosyl hydrolases family 12 (GHF12) do not bear a CBM and yet are able to hydrolyze amorphous cellulose quite efficiently. Here, we use X-ray crystallography and molecular dynamics simulations to unrav...
A total of 23 fungal cellulose-binding domain (CBD) sequences were aligned. Structural models of the...
Endoglucanases are enzymes that hydrolyze cellulose and are important components of the cellulolytic...
NREL researchers use high-performance computing to demonstrate fundamental roles of aromatic residue...
<div><p>Plant biomass holds a promise for the production of second-generation ethanol via enzymatic ...
Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)Conselho Nacional de Desenvolvimento Ci...
Plant biomass holds a promise for the production of second-generation ethanol via enzymatic hydrolys...
Aiming to contribute toward the characterization of new, biotechnologically relevant cellulolytic en...
Cellulose is the most abundant polymer in the biosphere. Although generally resistant to degradation...
The enzymatic degradation of cellulose is a critical step in the biological conversion of plant biom...
grantor: University of TorontoEnzymatic degradation of cellulose and hemicellulose abundan...
Conversion of inedible lignocellulosic plant biomass, composed primarily of carbohydrate polymers li...
Bifunctional glycoside hydrolases have potential for cost-savings in enzymatic decomposition of plan...
Cellulose is the most abundant organic compound on earth. A wide range of highly specialized microor...
Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)Enzymatic conversion of lignocellulosic...
Plant cell wall polysaccharides represent a vast source of food in Nature. To depolymerize polysacch...
A total of 23 fungal cellulose-binding domain (CBD) sequences were aligned. Structural models of the...
Endoglucanases are enzymes that hydrolyze cellulose and are important components of the cellulolytic...
NREL researchers use high-performance computing to demonstrate fundamental roles of aromatic residue...
<div><p>Plant biomass holds a promise for the production of second-generation ethanol via enzymatic ...
Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)Conselho Nacional de Desenvolvimento Ci...
Plant biomass holds a promise for the production of second-generation ethanol via enzymatic hydrolys...
Aiming to contribute toward the characterization of new, biotechnologically relevant cellulolytic en...
Cellulose is the most abundant polymer in the biosphere. Although generally resistant to degradation...
The enzymatic degradation of cellulose is a critical step in the biological conversion of plant biom...
grantor: University of TorontoEnzymatic degradation of cellulose and hemicellulose abundan...
Conversion of inedible lignocellulosic plant biomass, composed primarily of carbohydrate polymers li...
Bifunctional glycoside hydrolases have potential for cost-savings in enzymatic decomposition of plan...
Cellulose is the most abundant organic compound on earth. A wide range of highly specialized microor...
Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)Enzymatic conversion of lignocellulosic...
Plant cell wall polysaccharides represent a vast source of food in Nature. To depolymerize polysacch...
A total of 23 fungal cellulose-binding domain (CBD) sequences were aligned. Structural models of the...
Endoglucanases are enzymes that hydrolyze cellulose and are important components of the cellulolytic...
NREL researchers use high-performance computing to demonstrate fundamental roles of aromatic residue...