The industrially important glucoamylase 1 is an exo-acting glycosidase with substrate preference for alpha-1,4 and alpha-1,6 linkages at non-reducing ends of starch. It consists of a starch binding and a catalytic domain interspersed by a highly glycosylated polypeptide linker. The linker function is poorly understood and structurally undescribed, and data regarding domain organization and intramolecular functional cooperativity are conflicting or non-comprehensive. Here, we report a combined small angle x-ray scattering and calorimetry study of Aspergillus niger glucoamylase 1, glucoamylase 2, which lacks a starch binding domain, and an engineered low-glycosylated variant of glucoamylase 1 with a short linker. Low resolution solution struc...
[[abstract]]GA (glucoamylase) hydrolyses starch and polysaccharides to beta-D-glucose. RoGA (Rhizopu...
Background: -Glucosidase completes cellulose enzymatic hydrolysis by releasing glucose from cellobio...
α-Amylases occur widely in plants, animals, and microorganisms. They often act in synergy with other...
AbstractBackground: Carbohydrate-binding domains are usually small and physically separate from the ...
Glucoamylases (GA’s) are one of the most important classes of enzymes in the industrial degradation ...
Aspergillus awamori catalytic and starch binding domains were prepared, purified and characterized. ...
Most glucoamylases (α-1,4-d-glucan glucohydrolase, EC 3.2.1.3) have structures consisting of both a ...
AbstractThe full-length glucoamylase from Aspergillus niger, G1, consists of an N-terminal catalytic...
Glucoamylases are one of the most important classes of enzymes in the industrial degradation of star...
'To whom correspondence should be addressed The model of the catalytic domain of AspergUlus awa...
AbstractThe crystal structure at pH 4 of the complex of glucoamylase II(471) from Aspergillus awamor...
Higher plant, family GH3 β-d-glucan glucohydrolases exhibit exo-hydrolytic and retaining (e→e) mecha...
Amylases catalyze the hydrolysis of starch material and play central roles in carbohydrate metabolis...
The starch binding domain of glucoamylase from Aspergillus niger: overview of its structure
Starch is a major carbon and energy source throughout all kingdoms of life. It consists of two carbo...
[[abstract]]GA (glucoamylase) hydrolyses starch and polysaccharides to beta-D-glucose. RoGA (Rhizopu...
Background: -Glucosidase completes cellulose enzymatic hydrolysis by releasing glucose from cellobio...
α-Amylases occur widely in plants, animals, and microorganisms. They often act in synergy with other...
AbstractBackground: Carbohydrate-binding domains are usually small and physically separate from the ...
Glucoamylases (GA’s) are one of the most important classes of enzymes in the industrial degradation ...
Aspergillus awamori catalytic and starch binding domains were prepared, purified and characterized. ...
Most glucoamylases (α-1,4-d-glucan glucohydrolase, EC 3.2.1.3) have structures consisting of both a ...
AbstractThe full-length glucoamylase from Aspergillus niger, G1, consists of an N-terminal catalytic...
Glucoamylases are one of the most important classes of enzymes in the industrial degradation of star...
'To whom correspondence should be addressed The model of the catalytic domain of AspergUlus awa...
AbstractThe crystal structure at pH 4 of the complex of glucoamylase II(471) from Aspergillus awamor...
Higher plant, family GH3 β-d-glucan glucohydrolases exhibit exo-hydrolytic and retaining (e→e) mecha...
Amylases catalyze the hydrolysis of starch material and play central roles in carbohydrate metabolis...
The starch binding domain of glucoamylase from Aspergillus niger: overview of its structure
Starch is a major carbon and energy source throughout all kingdoms of life. It consists of two carbo...
[[abstract]]GA (glucoamylase) hydrolyses starch and polysaccharides to beta-D-glucose. RoGA (Rhizopu...
Background: -Glucosidase completes cellulose enzymatic hydrolysis by releasing glucose from cellobio...
α-Amylases occur widely in plants, animals, and microorganisms. They often act in synergy with other...