Background The assembly and spatial organization of enzymes in naturally occurring multi-protein complexes is of paramount importance for the efficient degradation of complex polymers and biosynthesis of valuable products. The degradation of cellulose into fermentable sugars by Clostridium thermocellum is achieved by means of a multi-protein "cellulosome" complex. Assembled via dockerin-cohesin interactions, the cellulosome is associated with the cell surface during cellulose hydrolysis, forming ternary cellulose-enzyme-microbe complexes for enhanced activity and synergy. The assembly of recombinant cell surface displayed cellulosome-inspired complexes in surrogate microbes is highly desirable. The model organism Lactococcus lactis is of p...
The Cellulosome is an intricate macromolecular protein complex that centralizes the cellulolytic eff...
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...
Abstract Background The assembly and spatial organization of enzymes in naturally occurring multi-pr...
Multi-enzyme complexes are responsible for the synthesis of a number of biochemical compounds and th...
Abstract Background The microbial synthesis of fuels, commodity chemicals, and bioactive compounds n...
Background: The self-assembly of cellulosomes on the surface of yeast is a promising strategy for co...
Cellulosomes, which are multienzyme complexes from anaerobic bacteria, are considered nature’s fines...
This work was supported by the EU FP7 programme under the WallTraC project (grant No. 263916) and by...
Background: The concerted action of three complementary cellulases from Clostridium thermocellum, e...
Artificial designer minicellulosomes comprise a chimeric scaffoldin that displays an optional cellul...
Background: Cellulose is highly recalcitrant and thus requires a specialized suite of enzymes to sol...
A cellulosome-microbe complex was assembled ex vivo on the surface of Bacillus subtilis displaying a...
Degradation of cellulose is of major interest in the quest for alternative sources of renewable ener...
ABSTRACT: A new adaptive strategy was developed for the ex vivo assembly of a functional tetravalent...
The Cellulosome is an intricate macromolecular protein complex that centralizes the cellulolytic eff...
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...
Abstract Background The assembly and spatial organization of enzymes in naturally occurring multi-pr...
Multi-enzyme complexes are responsible for the synthesis of a number of biochemical compounds and th...
Abstract Background The microbial synthesis of fuels, commodity chemicals, and bioactive compounds n...
Background: The self-assembly of cellulosomes on the surface of yeast is a promising strategy for co...
Cellulosomes, which are multienzyme complexes from anaerobic bacteria, are considered nature’s fines...
This work was supported by the EU FP7 programme under the WallTraC project (grant No. 263916) and by...
Background: The concerted action of three complementary cellulases from Clostridium thermocellum, e...
Artificial designer minicellulosomes comprise a chimeric scaffoldin that displays an optional cellul...
Background: Cellulose is highly recalcitrant and thus requires a specialized suite of enzymes to sol...
A cellulosome-microbe complex was assembled ex vivo on the surface of Bacillus subtilis displaying a...
Degradation of cellulose is of major interest in the quest for alternative sources of renewable ener...
ABSTRACT: A new adaptive strategy was developed for the ex vivo assembly of a functional tetravalent...
The Cellulosome is an intricate macromolecular protein complex that centralizes the cellulolytic eff...
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...