AbstractAs the number of industrial applications for proteins continues to expand, the exploitation of protein engineering becomes critical. It is predicted that protein engineering can generate enzymes with new catalytic properties and create desirable, high-value, products at lower production costs. Peroxidases are ubiquitous enzymes that catalyze a variety of oxygen-transfer reactions and are thus potentially useful for industrial and biomedical applications. However, peroxidases are unstable and are readily inactivated by their substrate, hydrogen peroxide. Researchers rely on the powerful tools of molecular biology to improve the stability of these enzymes, either by protecting residues sensitive to oxidation or by devising more effici...
Due to its importance in the pharmaceutical industry, ligand dynamic simulations have experienced a ...
Oxygenase enzymes have seen limited practical applications because of their complexity, poor stabili...
<p>Driven by the development of new technologies and an ever expanding knowledge base of molecular a...
AbstractAs the number of industrial applications for proteins continues to expand, the exploitation ...
Iso-1-cytochrome c, as any other hemeprotein, is able to react with hydrogen peroxide and to engage ...
The inactivation of peroxidases by its oxidant substrate H2O2 limits the usefulness of these versati...
The inactivation of peroxidases by its oxidant substrate H2O2 limits the usefulness of these versati...
Abstract Peroxidase research has been instrumental in defining the principles of chemical catalysis....
In an age of ever-increasing biotechnological and industrial demand for new and specialized biocatal...
Peroxygenases are attractive biocatalysts for the selective introduction of oxygen into organic mole...
Hydrogen peroxide is a substrate or side-product in many enzyme-catalyzed reactions. For example, it...
This PhD thesis describes research in the field of biocatalysis. We use enzymes, i.e. proteins that ...
Fungal unspecific peroxygenases (UPOs) are among the most promising biocatalysts in synthetic chemis...
Peroxidases have great potential as industrial biocatalysts. In particular, the oxidative polymeriza...
AbstractHuman myeloperoxidase (MPO) uses hydrogen peroxide generated by the oxidative burst of neutr...
Due to its importance in the pharmaceutical industry, ligand dynamic simulations have experienced a ...
Oxygenase enzymes have seen limited practical applications because of their complexity, poor stabili...
<p>Driven by the development of new technologies and an ever expanding knowledge base of molecular a...
AbstractAs the number of industrial applications for proteins continues to expand, the exploitation ...
Iso-1-cytochrome c, as any other hemeprotein, is able to react with hydrogen peroxide and to engage ...
The inactivation of peroxidases by its oxidant substrate H2O2 limits the usefulness of these versati...
The inactivation of peroxidases by its oxidant substrate H2O2 limits the usefulness of these versati...
Abstract Peroxidase research has been instrumental in defining the principles of chemical catalysis....
In an age of ever-increasing biotechnological and industrial demand for new and specialized biocatal...
Peroxygenases are attractive biocatalysts for the selective introduction of oxygen into organic mole...
Hydrogen peroxide is a substrate or side-product in many enzyme-catalyzed reactions. For example, it...
This PhD thesis describes research in the field of biocatalysis. We use enzymes, i.e. proteins that ...
Fungal unspecific peroxygenases (UPOs) are among the most promising biocatalysts in synthetic chemis...
Peroxidases have great potential as industrial biocatalysts. In particular, the oxidative polymeriza...
AbstractHuman myeloperoxidase (MPO) uses hydrogen peroxide generated by the oxidative burst of neutr...
Due to its importance in the pharmaceutical industry, ligand dynamic simulations have experienced a ...
Oxygenase enzymes have seen limited practical applications because of their complexity, poor stabili...
<p>Driven by the development of new technologies and an ever expanding knowledge base of molecular a...