Thermostabilizing enzymes while retaining their activity and enantioselectivity for applied biocatalysis is an important topic in protein engineering. Rational and computational design strategies as well as directed evolution have been used successfully to thermostabilize enzymes. Herein, we describe an alternative mutability-landscape approach that identified three single mutations (R11Y, R11I and A33D) within the enzyme 4-oxalocrotonate tautomerase (4-OT), which has potential as a biocatalyst for pharmaceutical synthesis, that gave rise to significant increases in apparent melting temperature Tm (up to 20 °C) and in half-life at 80 °C (up to 111-fold). Introduction of these beneficial mutations in an enantioselective but thermolabile 4-OT...
We developed a method to improve protein thermostability, "loop-walking method". Three consecutive p...
Protein engineering has shown widespread use in improving the industrial application of enzymes and ...
Enzyme thermostability is a critical factor for its wide applications in industrial fields. Flexible...
Thermostabilizing enzymes while retaining their activity and enantioselectivity for applied biocatal...
The increasing number of enzyme applications in chemical synthesis calls for new engineering methods...
Enzymes do not only play a crucial role in nature, they are also increasingly used as biocatalysts f...
Enzymes do not only play a crucial role in nature, they are also increasingly used as biocatalysts f...
The use of enzymes in industrial processes is often limited by the unavailability of biocatalysts wi...
Many proteins are rapidly deactivated when exposed to high or even ambient temperatures. This cannot...
Gene duplication and fusion are among the primary natural processes that generate new proteins from ...
We developed a method to improve protein thermostability, "loop-walking method". Three consecutive p...
Protein engineering has shown widespread use in improving the industrial application of enzymes and ...
Enzyme thermostability is a critical factor for its wide applications in industrial fields. Flexible...
Thermostabilizing enzymes while retaining their activity and enantioselectivity for applied biocatal...
The increasing number of enzyme applications in chemical synthesis calls for new engineering methods...
Enzymes do not only play a crucial role in nature, they are also increasingly used as biocatalysts f...
Enzymes do not only play a crucial role in nature, they are also increasingly used as biocatalysts f...
The use of enzymes in industrial processes is often limited by the unavailability of biocatalysts wi...
Many proteins are rapidly deactivated when exposed to high or even ambient temperatures. This cannot...
Gene duplication and fusion are among the primary natural processes that generate new proteins from ...
We developed a method to improve protein thermostability, "loop-walking method". Three consecutive p...
Protein engineering has shown widespread use in improving the industrial application of enzymes and ...
Enzyme thermostability is a critical factor for its wide applications in industrial fields. Flexible...