The diheme enzyme MauG catalyzes a six-electron oxidation that is required for the posttranslational modification of a precursor of methylamine dehydrogenase (preMADH) to complete the biosynthesis of its protein-derived cofactor, tryptophan tryptophylquinone (TTQ). Crystallographic and computational studies have implicated Gln103 in stabilizing the FeIV=O moiety of the bis-FeIV state by hydrogen bonding. The role of Gln103 was probed by site-directed mutagenesis. Q103L and Q103E mutations resulted in no expression and very little expression of the protein, respectively. Q103A MauG exhibited oxidative damage when isolated. Q103N MauG was isolated at levels comparable to that of wild-type MauG and exhibited normal activity in catalyzing the b...
Methylamine dehydrogenase (MADH) catalyzes the oxidative deamination of methylamine to formaldehyde ...
The di-heme enzyme MauG catalyzes the oxidative biosynthesis of a tryptophan tryptophylquinone cofac...
Protein-derived cofactors are formed by irreversible covalent posttranslational modification of amin...
The diheme enzyme MauG catalyzes a six-electron oxidation that is required for the posttranslational...
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...
The diheme enzyme MauG catalyzes a six-electron oxidation required for posttranslational modificatio...
AbstractThe diheme enzyme MauG catalyzes a six-electron oxidation required for posttranslational mod...
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 posttranslational modificatio...
The diheme enzyme MauG catalyzes a six-electron oxidation required for posttranslational modificatio...
The diheme enzyme MauG catalyzes the posttranslational modification of the precursor protein of meth...
The di-heme enzyme MauG catalyzes the oxidative biosynthesis of a tryptophan tryptophylquinone cofac...
MauG contains two c-type hemes with atypical physical and catalytic properties. While most c-type cy...
Methylamine dehydrogenase (MADH) catalyzes the oxidative deamination of methylamine to formaldehyde ...
The di-heme enzyme MauG catalyzes the oxidative biosynthesis of a tryptophan tryptophylquinone cofac...
Protein-derived cofactors are formed by irreversible covalent posttranslational modification of amin...
The diheme enzyme MauG catalyzes a six-electron oxidation that is required for the posttranslational...
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...
The diheme enzyme MauG catalyzes a six-electron oxidation required for posttranslational modificatio...
AbstractThe diheme enzyme MauG catalyzes a six-electron oxidation required for posttranslational mod...
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 posttranslational modificatio...
The diheme enzyme MauG catalyzes a six-electron oxidation required for posttranslational modificatio...
The diheme enzyme MauG catalyzes the posttranslational modification of the precursor protein of meth...
The di-heme enzyme MauG catalyzes the oxidative biosynthesis of a tryptophan tryptophylquinone cofac...
MauG contains two c-type hemes with atypical physical and catalytic properties. While most c-type cy...
Methylamine dehydrogenase (MADH) catalyzes the oxidative deamination of methylamine to formaldehyde ...
The di-heme enzyme MauG catalyzes the oxidative biosynthesis of a tryptophan tryptophylquinone cofac...
Protein-derived cofactors are formed by irreversible covalent posttranslational modification of amin...