Protein engineering has shown widespread use in improving the industrial application of enzymes and broadening the conditions they are able to operate under by increasing their thermostability and solvent tolerance. Here, we show that protein engineering can be used to increase the thermostability of an artificial metalloenzyme. Thermostable variants of the human steroid carrier protein 2L, modified to bind a metal catalyst, were created by rational design using structural data and a 3DM database. These variants were tested to identify mutations that enhanced the stability of the protein scaffold, and a significant increase in melting temperature was observed with a number of modified metalloenzymes. The ability to withstand higher reaction...
Artificial metalloenzymes (ArMs) result from the incorportation of a catalyst precursor within a hos...
Artificial metalloenzymes (ArMs) are created by embedding a synthetic metal catalyst into a protein ...
Artificial metalloenzymes have emerged as a promising approach to merge the attractive properties of...
Protein engineering has shown widespread use in improving the industrial application of enzymes and ...
The selective oxidation of organic molecules is fundamentally important to life and immensely usefu...
Artificial metalloenzymes (ArMs) are hybrid catalysts that offer a unique opportunity to combine the...
Protein engineering is a powerful tool for the improvement of the properties of biocatalysts, Previo...
Initial applications of biocatalysis involved the used of naturally occurring enzyme. With new chal...
Electronic version excludes material for which permission has not been granted by the rights holderT...
In recent years, substantial advances have been made in the development of artificial metalloenzymes...
Enzymes possessing many excellent properties such as high selectivity, consuming less energy, and pr...
The use of enzymes in industrial processes is often limited by the unavailability of biocatalysts wi...
Artificial metalloenzymes have received increasing attention over the last decade as a possible solu...
Dans un contexte de développement durable, les enzymes sont des outils biologiques puissants pour ca...
Funding: Marie Curie Individual Fellowship project ArtOxiZymes to AGJ (contract no. H2020-MSCA-IF-20...
Artificial metalloenzymes (ArMs) result from the incorportation of a catalyst precursor within a hos...
Artificial metalloenzymes (ArMs) are created by embedding a synthetic metal catalyst into a protein ...
Artificial metalloenzymes have emerged as a promising approach to merge the attractive properties of...
Protein engineering has shown widespread use in improving the industrial application of enzymes and ...
The selective oxidation of organic molecules is fundamentally important to life and immensely usefu...
Artificial metalloenzymes (ArMs) are hybrid catalysts that offer a unique opportunity to combine the...
Protein engineering is a powerful tool for the improvement of the properties of biocatalysts, Previo...
Initial applications of biocatalysis involved the used of naturally occurring enzyme. With new chal...
Electronic version excludes material for which permission has not been granted by the rights holderT...
In recent years, substantial advances have been made in the development of artificial metalloenzymes...
Enzymes possessing many excellent properties such as high selectivity, consuming less energy, and pr...
The use of enzymes in industrial processes is often limited by the unavailability of biocatalysts wi...
Artificial metalloenzymes have received increasing attention over the last decade as a possible solu...
Dans un contexte de développement durable, les enzymes sont des outils biologiques puissants pour ca...
Funding: Marie Curie Individual Fellowship project ArtOxiZymes to AGJ (contract no. H2020-MSCA-IF-20...
Artificial metalloenzymes (ArMs) result from the incorportation of a catalyst precursor within a hos...
Artificial metalloenzymes (ArMs) are created by embedding a synthetic metal catalyst into a protein ...
Artificial metalloenzymes have emerged as a promising approach to merge the attractive properties of...