The optimization of enzyme properties for specific reaction conditions enables their tailored use in biotechnology. Predictions using established computer-based methods, however, remain challenging, especially regarding physical parameters such as thermostability without concurrent loss of activity. Employing established computational methods such as energy calculations using FoldX can lead to the identification of beneficial single amino acid substitutions for the thermostabilization of enzymes. However, these methods require a three-dimensional (3D)-structure of the enzyme. In contrast, coevolutionary analysis is a computational method, which is solely based on sequence data. To enable a comparison, we employed coevolutionary analysis tog...
Many proteins are rapidly deactivated when exposed to high or even ambient temperatures. This cannot...
There is great interest in increasing proteins' stability to enhance their utility as biocatalysts, ...
Many proteins are rapidly deactivated when exposed to high or even ambient temperatures. This cannot...
Abstract Background Strategies for maximizing the microbial production of bio-based chemicals and fu...
Protein engineering strategies for increasing stability can be improved by replacing random mutagene...
Protein engineering strategies for increasing stability can be improved by replacing random mutagene...
Protein engineering strategies for increasing stability can be improved by replacing random mutagene...
Protein engineering strategies for increasing stability can be improved by replacing random mutagene...
AbstractEx vivo stability is a valuable protein characteristic but is laborious to improve experimen...
Protein engineering strategies for increasing stability can be improved by replacing random mutagene...
Protein engineering strategies for increasing stability can be improved by replacing random mutagene...
Protein thermostability is a crucial factor for biotechnological enzyme applications. Protein engine...
Elucidation of evolutionary factors that enhance protein thermostability is a critical problem and w...
The utility of engineering enzyme activity is expanding with the development of biotechnology. Conve...
Engineering proteins to enhance thermal stability is a widely utilized approach for creating industr...
Many proteins are rapidly deactivated when exposed to high or even ambient temperatures. This cannot...
There is great interest in increasing proteins' stability to enhance their utility as biocatalysts, ...
Many proteins are rapidly deactivated when exposed to high or even ambient temperatures. This cannot...
Abstract Background Strategies for maximizing the microbial production of bio-based chemicals and fu...
Protein engineering strategies for increasing stability can be improved by replacing random mutagene...
Protein engineering strategies for increasing stability can be improved by replacing random mutagene...
Protein engineering strategies for increasing stability can be improved by replacing random mutagene...
Protein engineering strategies for increasing stability can be improved by replacing random mutagene...
AbstractEx vivo stability is a valuable protein characteristic but is laborious to improve experimen...
Protein engineering strategies for increasing stability can be improved by replacing random mutagene...
Protein engineering strategies for increasing stability can be improved by replacing random mutagene...
Protein thermostability is a crucial factor for biotechnological enzyme applications. Protein engine...
Elucidation of evolutionary factors that enhance protein thermostability is a critical problem and w...
The utility of engineering enzyme activity is expanding with the development of biotechnology. Conve...
Engineering proteins to enhance thermal stability is a widely utilized approach for creating industr...
Many proteins are rapidly deactivated when exposed to high or even ambient temperatures. This cannot...
There is great interest in increasing proteins' stability to enhance their utility as biocatalysts, ...
Many proteins are rapidly deactivated when exposed to high or even ambient temperatures. This cannot...