Copper amine oxidases (CuAOs) are metalloenzymes that reduce molecular oxygen to hydrogen peroxide during catalytic turnover of primary amines. In addition to Cu2+ in the active site, two peripheral calcium sites, ∼32 Å from the active site, have roles in Escherichia coli amine oxidase (ECAO). The buried Ca2+ (Asp533, Leu534, Asp535, Asp678, and Ala679) is essential for full-length protein production, while the surface Ca2+ (Glu573, Tyr667, Asp670, and Glu672) modulates biogenesis of the 2,4,5-trihydroxyphenylalanine quinone (TPQ) cofactor. The E573Q mutation at the surface site prevents calcium binding and TPQ biogenesis. However, TPQ biogenesis can be restored by a suppressor mutation (I342F) in the proposed oxygen delivery channel to the...
Adduct I (λmax at ∼430 nm) formed in the reaction of 2-hydrazinopyridine (2HP) and the TPQ cofactor ...
AbstractThe first three-dimensional structure of copper amine oxidase demonstrates that one tyrosine...
The mechanism of molecular oxygen activation is the subject of controversy in the copper amine oxida...
Copper amine oxidases (CuAOs) are metalloenzymes that reduce molecular oxygen to hydrogen peroxide d...
Copper amine oxidases (CuAOs) are metalloenzymes that reduce molecular oxygen to hydrogen peroxide d...
Copper amine oxidases (CuAOs) are metalloenzymes that reduce molecular oxygen to hydrogen peroxide d...
To investigate the role of the active site copper in Escherichia coli copper amine oxidase (ECAO), w...
Copper amine oxidases (CAOs) catalyze the oxidative deamination of primary amines to their correspon...
AbstractBackground Copper-containing amine oxidases catalyze the oxidative deamination of primary am...
In copper amine oxidases the role of the buried active site copper has been extensively studied, whi...
AbstractBackground: Copper amine oxidases are a ubiquitous and novel group of quinoenzymes that cata...
Copper amine oxidases (CAOs) are a class of enzymes that contain Cu2+ and a tyrosine-derived quinone...
Copper amine oxidases (CAOs) are a class of enzymes that contain Cu2+ and a tyrosine-derived quinone...
Copper amine oxidases are homodimeric enzymes containing one Cu(2+) ion and one 2,4,5-trihydroxyphen...
Copper amine oxidases (CuAOs) are ubiquitous, copper containing, homodimeric enzymes that possess a ...
Adduct I (λmax at ∼430 nm) formed in the reaction of 2-hydrazinopyridine (2HP) and the TPQ cofactor ...
AbstractThe first three-dimensional structure of copper amine oxidase demonstrates that one tyrosine...
The mechanism of molecular oxygen activation is the subject of controversy in the copper amine oxida...
Copper amine oxidases (CuAOs) are metalloenzymes that reduce molecular oxygen to hydrogen peroxide d...
Copper amine oxidases (CuAOs) are metalloenzymes that reduce molecular oxygen to hydrogen peroxide d...
Copper amine oxidases (CuAOs) are metalloenzymes that reduce molecular oxygen to hydrogen peroxide d...
To investigate the role of the active site copper in Escherichia coli copper amine oxidase (ECAO), w...
Copper amine oxidases (CAOs) catalyze the oxidative deamination of primary amines to their correspon...
AbstractBackground Copper-containing amine oxidases catalyze the oxidative deamination of primary am...
In copper amine oxidases the role of the buried active site copper has been extensively studied, whi...
AbstractBackground: Copper amine oxidases are a ubiquitous and novel group of quinoenzymes that cata...
Copper amine oxidases (CAOs) are a class of enzymes that contain Cu2+ and a tyrosine-derived quinone...
Copper amine oxidases (CAOs) are a class of enzymes that contain Cu2+ and a tyrosine-derived quinone...
Copper amine oxidases are homodimeric enzymes containing one Cu(2+) ion and one 2,4,5-trihydroxyphen...
Copper amine oxidases (CuAOs) are ubiquitous, copper containing, homodimeric enzymes that possess a ...
Adduct I (λmax at ∼430 nm) formed in the reaction of 2-hydrazinopyridine (2HP) and the TPQ cofactor ...
AbstractThe first three-dimensional structure of copper amine oxidase demonstrates that one tyrosine...
The mechanism of molecular oxygen activation is the subject of controversy in the copper amine oxida...