Cellobiohydrolase I (CBHI) is the major cellulase of Trichoderma reesei. The enzyme contains a discrete cellulose‐binding domain (CBD), which increases its binding and activity on crystalline cellulose. We studied cellulase‐cellulose interactions using site‐directed mutagenesis on the basis of the three‐dimensional structure of the CBD of CBHI. Three mutant proteins which have earlier been produced in Saccharomyces cerevisiae were expressed in the native host organism. The data presented here support the hypothesis that a conserved tyrosine (Y492) located on the flat and more hydrophilic surface of the CBD is essential for the functionality. The data also suggest that the more hydrophobic surface is not directly involved in the CBD function...
Protein-carbohydrate interactions typically rely on aromatic stacking interactions of tyrosine, phen...
Protein-carbohydrate interactions typically rely on aromatic stacking interactions of tyrosine, phen...
The roles of the residues in the catalytic trio Glu212-Asp214-Glu217 in cellobiohydrolase I (CBHI) f...
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...
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...
The filamentous fungus Trichoderma reesei produces two cellobiohydrolases (CBHI and CBHII). These, l...
Cellobiohydrolase I (CBHI) of Trichoderma reesei has two functional domains, a catalytic core domain...
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...
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 ...
Trichoderma reesei degrades native cellulose utilizing a set of cellulolytic enzymes dominated by tw...
Trichoderma reesei degrades native cellulose utilizing a set of cellulolytic enzymes dominated by tw...
Protein-carbohydrate interactions typically rely on aromatic stacking interactions of tyrosine, phen...
Protein-carbohydrate interactions typically rely on aromatic stacking interactions of tyrosine, phen...
The roles of the residues in the catalytic trio Glu212-Asp214-Glu217 in cellobiohydrolase I (CBHI) f...
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...
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...
The filamentous fungus Trichoderma reesei produces two cellobiohydrolases (CBHI and CBHII). These, l...
Cellobiohydrolase I (CBHI) of Trichoderma reesei has two functional domains, a catalytic core domain...
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...
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 ...
Trichoderma reesei degrades native cellulose utilizing a set of cellulolytic enzymes dominated by tw...
Trichoderma reesei degrades native cellulose utilizing a set of cellulolytic enzymes dominated by tw...
Protein-carbohydrate interactions typically rely on aromatic stacking interactions of tyrosine, phen...
Protein-carbohydrate interactions typically rely on aromatic stacking interactions of tyrosine, phen...
The roles of the residues in the catalytic trio Glu212-Asp214-Glu217 in cellobiohydrolase I (CBHI) f...