Cellobiohydrolase I (CBHI) of Trichoderma reesei has two functional domains, a catalytic core domain and a cellulose binding domain (CBD). The structure of the CBD reveals two distinct faces, one of which is flat and the other rough. Several other fungal cellulolytic enzymes have similar two‐domain structures, in which the CBDs show a conserved primary structure. Here we have evaluated the contributions of conserved amino acids in CBHI CBD to its binding to cellulose. Binding isotherms were determined for a set of six synthetic analogues in which conserved amino acids were substituted. Two‐dimensional NMR spectroscopy was used to assess the structural effects of the substitutions by comparing chemical shifts, coupling constants, and NOEs of...
Cellobiohydrolase I (CBHI) is the major cellulase of Trichoderma reesei. The enzyme contains a discr...
The cellulose binding domain (CBD) of cellulase binding to cellulosic materials is the initiation of...
Three‐dimensional solution structures for three engineered, synthetic CBDs (Y5A, Y31A, and Y32A) of ...
Most cellulose degrading enzymes have a two-domain structure consisting of a catalytic domain and a ...
Most cellulose degrading enzymes have a two-domain structure consisting of a catalytic domain and a ...
Cellulose has a important environmental role in the preservation of the global carbon cycle and comm...
Cellulose has a important environmental role in the preservation of the global carbon cycle and comm...
The filamentous fungus Trichoderma reesei produces two cellobiohydrolases (CBHI and CBHII). These, l...
Cellulose‐binding domains (CBDs) form distinct functional units of most cellulolytic enzymes. We hav...
The enzymatic degradation of cellulose, the major organic carbon source in the biosphere, is essenti...
The enzymatic degradation of cellulose, the major organic carbon source in the biosphere, is essenti...
Cellulolytic enzymes consist of distinct catalytic and cellulose-binding domains (CBDs). The presenc...
Cellulolytic enzymes consist of distinct catalytic and cellulose-binding domains (CBDs). The presenc...
The function of the cellulosebinding domain (CBD) of the cellobiohydrolase I of Trichoderma reesei w...
The function of the cellulosebinding domain (CBD) of the cellobiohydrolase I of Trichoderma reesei w...
Cellobiohydrolase I (CBHI) is the major cellulase of Trichoderma reesei. The enzyme contains a discr...
The cellulose binding domain (CBD) of cellulase binding to cellulosic materials is the initiation of...
Three‐dimensional solution structures for three engineered, synthetic CBDs (Y5A, Y31A, and Y32A) of ...
Most cellulose degrading enzymes have a two-domain structure consisting of a catalytic domain and a ...
Most cellulose degrading enzymes have a two-domain structure consisting of a catalytic domain and a ...
Cellulose has a important environmental role in the preservation of the global carbon cycle and comm...
Cellulose has a important environmental role in the preservation of the global carbon cycle and comm...
The filamentous fungus Trichoderma reesei produces two cellobiohydrolases (CBHI and CBHII). These, l...
Cellulose‐binding domains (CBDs) form distinct functional units of most cellulolytic enzymes. We hav...
The enzymatic degradation of cellulose, the major organic carbon source in the biosphere, is essenti...
The enzymatic degradation of cellulose, the major organic carbon source in the biosphere, is essenti...
Cellulolytic enzymes consist of distinct catalytic and cellulose-binding domains (CBDs). The presenc...
Cellulolytic enzymes consist of distinct catalytic and cellulose-binding domains (CBDs). The presenc...
The function of the cellulosebinding domain (CBD) of the cellobiohydrolase I of Trichoderma reesei w...
The function of the cellulosebinding domain (CBD) of the cellobiohydrolase I of Trichoderma reesei w...
Cellobiohydrolase I (CBHI) is the major cellulase of Trichoderma reesei. The enzyme contains a discr...
The cellulose binding domain (CBD) of cellulase binding to cellulosic materials is the initiation of...
Three‐dimensional solution structures for three engineered, synthetic CBDs (Y5A, Y31A, and Y32A) of ...