A quantitative linear model accurately (R^2 = 0.88) describes the thermostabilities of 54 characterized members of a family of fungal cellobiohydrolase class II (CBH II) cellulase chimeras made by SCHEMA recombination of three fungal enzymes, demonstrating that the contributions of SCHEMA sequence blocks to stability are predominantly additive. Thirty-one of 31 predicted thermostable CBH II chimeras have thermal inactivation temperatures higher than the most thermostable parent CBH II, from Humicola insolens, and the model predicts that hundreds more CBH II chimeras share this superior thermostability. Eight of eight thermostable chimeras assayed hydrolyze the solid cellulosic substrate Avicel at temperatures at least 5 °C above the most st...
Cellulases containing a family 9 catalytic domain and a family 3c cellulose binding module (CBM3c) a...
Fungal laccases are biotechnologically relevant enzymes that are capable of oxidizing a wide array o...
Generating biofuels from cellulosic material may mitigate the detrimental environmental effects of ...
A quantitative linear model accurately (R^2 = 0.88) describes the thermostabilities of 54 characteri...
SCHEMA structure-guided recombination of 3 fungal class II cellobiohydrolases (CBH II cellulases) ha...
We describe an efficient SCHEMA recombination-based approach for screening homologous enzymes to ide...
Building on our previous efforts to generate thermostable chimeric fungal cellobiohydrolase I (CBH I...
Cellulases from Bacillus and Geobacillus bacteria are potentially useful in the biofuel and animal f...
Thermostability is an important feature in industrial enzymes: it increases biocatalyst lifetime and...
A major obstacle to using widely available and low-cost lignocellulosic feedstocks to produce renewa...
Meeting the world's growing energy demands while protecting our fragile environment is a challenging...
Thermal inactivation of saccharifying enzymes is a crucial issue for the efficient utilization of ce...
The creation of thermostable enzymes has wide-ranging applications in industrial, scientific, and ph...
Noncontiguous recombination (NCR) is a method to identify pieces of structure that can be swapped am...
Background: The concerted action of three complementary cellulases from Clostridium thermocellum, e...
Cellulases containing a family 9 catalytic domain and a family 3c cellulose binding module (CBM3c) a...
Fungal laccases are biotechnologically relevant enzymes that are capable of oxidizing a wide array o...
Generating biofuels from cellulosic material may mitigate the detrimental environmental effects of ...
A quantitative linear model accurately (R^2 = 0.88) describes the thermostabilities of 54 characteri...
SCHEMA structure-guided recombination of 3 fungal class II cellobiohydrolases (CBH II cellulases) ha...
We describe an efficient SCHEMA recombination-based approach for screening homologous enzymes to ide...
Building on our previous efforts to generate thermostable chimeric fungal cellobiohydrolase I (CBH I...
Cellulases from Bacillus and Geobacillus bacteria are potentially useful in the biofuel and animal f...
Thermostability is an important feature in industrial enzymes: it increases biocatalyst lifetime and...
A major obstacle to using widely available and low-cost lignocellulosic feedstocks to produce renewa...
Meeting the world's growing energy demands while protecting our fragile environment is a challenging...
Thermal inactivation of saccharifying enzymes is a crucial issue for the efficient utilization of ce...
The creation of thermostable enzymes has wide-ranging applications in industrial, scientific, and ph...
Noncontiguous recombination (NCR) is a method to identify pieces of structure that can be swapped am...
Background: The concerted action of three complementary cellulases from Clostridium thermocellum, e...
Cellulases containing a family 9 catalytic domain and a family 3c cellulose binding module (CBM3c) a...
Fungal laccases are biotechnologically relevant enzymes that are capable of oxidizing a wide array o...
Generating biofuels from cellulosic material may mitigate the detrimental environmental effects of ...