Designer cellulosomes (DCs) are engineered multi-enzyme complexes, comprising carbohydrate-active enzymes attached to a common backbone, the scaffoldin, via high-affinity cohesin-dockerin interactions. The use of DCs in the degradation of renewable biomass polymers is a promising approach for biorefineries. Indeed, DCs have shown significant hydrolytic activities due to the enhanced enzyme-substrate proximity and inter-enzyme synergies, but technical hurdles in DC engineering have hindered further progress towards industrial application. The challenge in DC engineering lies in the large diversity of possible building blocks and architectures, resulting in a multivariate and immense design space. Simultaneously, the precise DC composition af...
Degradation of cellulose is of major interest in the quest for alternative sources of renewable ener...
Cellulose binding domains (CBDs) are found in cellulolytic microorganisms as discrete domains in fre...
Cellulose waste biomass is the most abundant and attractive substrate for "biorefinery strategies" t...
Designer cellulosomes (DCs) are engineered multi-enzyme complexes, comprising carbohydrate-active en...
Industrial biotechnology aims to replace fossil-based chemicals by bio-based equivalents produced fr...
Industrial biotechnology aims to replace fossil-based chemicals by bio-based equivalents produced fr...
Background Designer cellulosomes are self-assembled chimeric enzyme complexes that can be used to im...
Industrial biotechnology aims to replace fossil-based chemicals by bio-based equivalents produced fr...
Designer cellulosomes consist of chimeric cohesin-bearing scaffoldins for the controlled incorporati...
Protein-protein interactions (PPIs) are essential in many biological processes, such as cell cycle, ...
Protein-protein interactions (PPIs) are essential in many biological processes, such as cell cycle, ...
Protein-protein interactions (PPIs) are essential in many biological processes, such as cell cycle, ...
Protein-protein interactions (PPIs) are essential in many biological processes, such as cell cycle, ...
Degradation of cellulose is of major interest in the quest for alternative sources of renewable ener...
<div><p>Degradation of cellulose is of major interest in the quest for alternative sources of renewa...
Degradation of cellulose is of major interest in the quest for alternative sources of renewable ener...
Cellulose binding domains (CBDs) are found in cellulolytic microorganisms as discrete domains in fre...
Cellulose waste biomass is the most abundant and attractive substrate for "biorefinery strategies" t...
Designer cellulosomes (DCs) are engineered multi-enzyme complexes, comprising carbohydrate-active en...
Industrial biotechnology aims to replace fossil-based chemicals by bio-based equivalents produced fr...
Industrial biotechnology aims to replace fossil-based chemicals by bio-based equivalents produced fr...
Background Designer cellulosomes are self-assembled chimeric enzyme complexes that can be used to im...
Industrial biotechnology aims to replace fossil-based chemicals by bio-based equivalents produced fr...
Designer cellulosomes consist of chimeric cohesin-bearing scaffoldins for the controlled incorporati...
Protein-protein interactions (PPIs) are essential in many biological processes, such as cell cycle, ...
Protein-protein interactions (PPIs) are essential in many biological processes, such as cell cycle, ...
Protein-protein interactions (PPIs) are essential in many biological processes, such as cell cycle, ...
Protein-protein interactions (PPIs) are essential in many biological processes, such as cell cycle, ...
Degradation of cellulose is of major interest in the quest for alternative sources of renewable ener...
<div><p>Degradation of cellulose is of major interest in the quest for alternative sources of renewa...
Degradation of cellulose is of major interest in the quest for alternative sources of renewable ener...
Cellulose binding domains (CBDs) are found in cellulolytic microorganisms as discrete domains in fre...
Cellulose waste biomass is the most abundant and attractive substrate for "biorefinery strategies" t...