Metmyoglobin catalyzes the nitration of various phenolic compounds in the presence of nitrite and hydrogen peroxide. The reaction rate depends on the reactant concentrations showing saturation behavior. Two competing paths are responsible for the reaction. In the first one, myoglobin reacts according to a peroxidase-like cycle forming two active intermediates, which can induce one-electron oxidation of the substrates. The MbFeIV=O intermediate oxidizes nitrite to nitrogen dioxide which, after reaction with the phenol or with a phenoxy radical, yields the nitrophenol. In the second mechanism, hydrogen peroxide reacts with the iron-bound nitrite to produce an active nitrating species, which we assume to be a protein bound peroxynitrite specie...
Myoglobin (Mb), generally taken as the molecular model of monomeric globular heme-proteins, is devot...
Nitration of tyrosine residues in proteins represents a pathological event that is associated with s...
In the present study, we investigated how cytochrome c catalyzed the nitration of tyrosine at variou...
Metmyoglobin catalyzes the nitration of various phenolic compounds in the presence of nitrite and hy...
The peroxidase-catalyzed nitration of tyrosine derivatives by nitrite and hydrogen peroxide has bee...
Peroxidases perform the nitration of tyrosine and tyrosyl residues in proteins, in the presence of ...
The modification of human myoglobin (HMb) by reaction with nitrite and hydrogen peroxide has been in...
Nitric oxide (NO) reacts with oxyhemoglobin or oxymyoglobin resulting in the generation of nitrate a...
Nitric oxide (NO) reacts with oxyhemoglobin or oxymyoglobin resulting in the generation of nitrate a...
The modification of human myoglobin (HMb) by reaction with nitrite and hydrogen peroxide has been in...
The reductive nitrosylation (FeIII(P) + 2NO + H2O = FeII(P)(NO) + NO2- + 2H+) of the ferriheme model...
Peroxynitrite (PN) gains high selectivity as a physiological oxidizing and nitrating agent through c...
Nitrite binds reversibly to the ferriheme pro- teins metmyoglobin and methemoglobin in aqueous bu ...
Each mole of oxyhemoglobin iron converted to methe-moglobin causes the oxidation of 1.5 mol of nitri...
Peroxynitrite-mediated oxidation of ferrous nitrosylated myoglobin (Mb(II)-NO) involves the transien...
Myoglobin (Mb), generally taken as the molecular model of monomeric globular heme-proteins, is devot...
Nitration of tyrosine residues in proteins represents a pathological event that is associated with s...
In the present study, we investigated how cytochrome c catalyzed the nitration of tyrosine at variou...
Metmyoglobin catalyzes the nitration of various phenolic compounds in the presence of nitrite and hy...
The peroxidase-catalyzed nitration of tyrosine derivatives by nitrite and hydrogen peroxide has bee...
Peroxidases perform the nitration of tyrosine and tyrosyl residues in proteins, in the presence of ...
The modification of human myoglobin (HMb) by reaction with nitrite and hydrogen peroxide has been in...
Nitric oxide (NO) reacts with oxyhemoglobin or oxymyoglobin resulting in the generation of nitrate a...
Nitric oxide (NO) reacts with oxyhemoglobin or oxymyoglobin resulting in the generation of nitrate a...
The modification of human myoglobin (HMb) by reaction with nitrite and hydrogen peroxide has been in...
The reductive nitrosylation (FeIII(P) + 2NO + H2O = FeII(P)(NO) + NO2- + 2H+) of the ferriheme model...
Peroxynitrite (PN) gains high selectivity as a physiological oxidizing and nitrating agent through c...
Nitrite binds reversibly to the ferriheme pro- teins metmyoglobin and methemoglobin in aqueous bu ...
Each mole of oxyhemoglobin iron converted to methe-moglobin causes the oxidation of 1.5 mol of nitri...
Peroxynitrite-mediated oxidation of ferrous nitrosylated myoglobin (Mb(II)-NO) involves the transien...
Myoglobin (Mb), generally taken as the molecular model of monomeric globular heme-proteins, is devot...
Nitration of tyrosine residues in proteins represents a pathological event that is associated with s...
In the present study, we investigated how cytochrome c catalyzed the nitration of tyrosine at variou...