The di-heme enzyme MauG catalyzes the oxidative biosynthesis of a tryptophan tryptophylquinone cofactor on a precursor of the enzyme methylamine dehydrogenase (preMADH). Reaction of H2O2 with the diferric form of MauG, or reaction of O2 with diferrous MauG, forms the catalytic intermediate known as bis-Fe(IV), which acts as the key oxidant during turnover. The site of substrate oxidation is more than 40 Å from the high-spin heme iron where H2O2 initially reacts, and catalysis relies on radical hopping through an interfacial residue, Trp199 of MauG. In the absence of preMADH, the bis-Fe(IV) intermediate is remarkably stable, but repeated exposure to H2O2 results in suicide inactivation. Using mass spectrometry, we show that this process invo...
MauG contains two c-type hemes with atypical physical and catalytic properties. While most c-type cy...
Protein-derived cofactors are formed by irreversible covalent posttranslational modification of amin...
Protein-derived cofactors are formed by irreversible covalent posttranslational modification of amin...
The di-heme enzyme MauG catalyzes the oxidative biosynthesis of a tryptophan tryptophylquinone cofac...
The di-heme enzyme MauG catalyzes the oxidative biosynthesis of a tryptophan tryptophylquinone cofac...
The diheme enzyme MauG catalyzes a six-electron oxidation required for posttranslational modificatio...
The diheme enzyme MauG catalyzes a six-electron oxidation that is required for the posttranslational...
The diheme enzyme MauG catalyzes a six-electron oxidation required for post-translational modificati...
The diheme enzyme MauG catalyzes a six-electron oxidation required for post-translational modificati...
AbstractThe diheme enzyme MauG catalyzes a six-electron oxidation required for posttranslational mod...
MauG contains two c-type hemes with atypical physical and catalytic properties. While most c-type cy...
The diheme enzyme MauG catalyzes a six-electron oxidation required for posttranslational modificatio...
The diheme enzyme MauG catalyzes a six-electron oxidation required for posttranslational modificatio...
The diheme enzyme MauG catalyzes a six-electron oxidation that is required for the posttranslational...
MauG catalyzes posttranslational modifications of methylamine dehydrogenase to complete the biosynth...
MauG contains two c-type hemes with atypical physical and catalytic properties. While most c-type cy...
Protein-derived cofactors are formed by irreversible covalent posttranslational modification of amin...
Protein-derived cofactors are formed by irreversible covalent posttranslational modification of amin...
The di-heme enzyme MauG catalyzes the oxidative biosynthesis of a tryptophan tryptophylquinone cofac...
The di-heme enzyme MauG catalyzes the oxidative biosynthesis of a tryptophan tryptophylquinone cofac...
The diheme enzyme MauG catalyzes a six-electron oxidation required for posttranslational modificatio...
The diheme enzyme MauG catalyzes a six-electron oxidation that is required for the posttranslational...
The diheme enzyme MauG catalyzes a six-electron oxidation required for post-translational modificati...
The diheme enzyme MauG catalyzes a six-electron oxidation required for post-translational modificati...
AbstractThe diheme enzyme MauG catalyzes a six-electron oxidation required for posttranslational mod...
MauG contains two c-type hemes with atypical physical and catalytic properties. While most c-type cy...
The diheme enzyme MauG catalyzes a six-electron oxidation required for posttranslational modificatio...
The diheme enzyme MauG catalyzes a six-electron oxidation required for posttranslational modificatio...
The diheme enzyme MauG catalyzes a six-electron oxidation that is required for the posttranslational...
MauG catalyzes posttranslational modifications of methylamine dehydrogenase to complete the biosynth...
MauG contains two c-type hemes with atypical physical and catalytic properties. While most c-type cy...
Protein-derived cofactors are formed by irreversible covalent posttranslational modification of amin...
Protein-derived cofactors are formed by irreversible covalent posttranslational modification of amin...