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...
We have used citrate synthase from Thermoplasma (Tp.) acidophilum as a thermostable model system to ...
Metals play a crucial role in biology. Metalloenzymes perform various functions in various life sust...
<div><p>Artificial enzymes hold the potential to catalyze valuable reactions not observed in nature....
Protein engineering has shown widespread use in improving the industrial application of enzymes and ...
Protein engineering is a powerful tool for the improvement of the properties of biocatalysts, Previo...
The selective oxidation of organic molecules is fundamentally important to life and immensely usefu...
This thesis describes the design, synthesis and application of artificial metalloenzymes for transit...
Literature from the past two decades has outlined the existence of a trade-off between protein stabi...
Artificial enzymes hold the potential to catalyze valuable reactions not observed in nature. One app...
While chemists are developing confined environments for catalysis, nature has evolved highly elabora...
Initial applications of biocatalysis involved the used of naturally occurring enzyme. With new chal...
The development of thermostable and solvent-tolerant metalloproteins is a long-sought goal for many ...
Proteins are increasingly applied in commercial manufacturing, medicine, and research. Engineering p...
1,3-1,4-β-glucanase is an important biocatalyst in brewing industry and animal feed industry, while ...
Combining enzymes with synthetic materials is the new frontier of biocatalysis, materials science, a...
We have used citrate synthase from Thermoplasma (Tp.) acidophilum as a thermostable model system to ...
Metals play a crucial role in biology. Metalloenzymes perform various functions in various life sust...
<div><p>Artificial enzymes hold the potential to catalyze valuable reactions not observed in nature....
Protein engineering has shown widespread use in improving the industrial application of enzymes and ...
Protein engineering is a powerful tool for the improvement of the properties of biocatalysts, Previo...
The selective oxidation of organic molecules is fundamentally important to life and immensely usefu...
This thesis describes the design, synthesis and application of artificial metalloenzymes for transit...
Literature from the past two decades has outlined the existence of a trade-off between protein stabi...
Artificial enzymes hold the potential to catalyze valuable reactions not observed in nature. One app...
While chemists are developing confined environments for catalysis, nature has evolved highly elabora...
Initial applications of biocatalysis involved the used of naturally occurring enzyme. With new chal...
The development of thermostable and solvent-tolerant metalloproteins is a long-sought goal for many ...
Proteins are increasingly applied in commercial manufacturing, medicine, and research. Engineering p...
1,3-1,4-β-glucanase is an important biocatalyst in brewing industry and animal feed industry, while ...
Combining enzymes with synthetic materials is the new frontier of biocatalysis, materials science, a...
We have used citrate synthase from Thermoplasma (Tp.) acidophilum as a thermostable model system to ...
Metals play a crucial role in biology. Metalloenzymes perform various functions in various life sust...
<div><p>Artificial enzymes hold the potential to catalyze valuable reactions not observed in nature....