The fragmentation mechanisms of singlet oxygen [O(2) ((1)Delta(g))]-derived oxidation products of tryptophan (W) were analyzed using collision-induced dissociation coupled with (18)O-isotopic labeling experiments and accurate mass measurements. The five identified oxidized products, namely two isomeric alcohols (trans and cis WOH), two isomeric hydroperoxides (trans and cis WOOH), and N-formylkynurenine (FMK), were shown to share some common fragment ions and losses of small neutral molecules. Conversely, each oxidation product has its own fragmentation mechanism and intermediates, which were confirmed by (18)O-labeling studies. Isomeric WOH lost mainly H(2)O + CO, while WOOH showed preferential elimination of C(2)H(5)NO(3) by two distinct ...
Gas phase odd-electron radical cationic peptides (M•+) display rich and diverse ion chemistry that d...
Microcystins are cyclic peptides produced by cyanobacteria, which can be harmful to humans and anima...
Reactive oxygen species (ROS) can oxidize virtually all cellular components. In proteins cysteine, m...
The fragmentation mechanisms of singlet oxygen [O(2) ((1)Delta(g))]-derived oxidation products of tr...
The fragmentation mechanisms of singlet oxygen [O2 (1Δg)]-derived oxidation products of tryptophan (...
Proteins have been considered important targets for reactive oxygen species. Indeed, tryptophan (W) ...
As proteínas são consideradas importantes alvos para os oxidantes, devido à abundância em sistemas b...
AbstractNew oxidation products and free radicals derived from tryptophan (Trp) oxidation under Fento...
AbstractAmino acid residues containing thioethers are easily oxidized during protein purification, d...
AbstractDifferent mass spectrometry (MS) techniques have been applied to the study of modified trypt...
Oxidative modification of tryptophan to kynurenine (KYN) and N-formyl kynurenine (NFK) has been desc...
Protein cross-links are formed in regulated biochemical processes in many biological systems, but th...
In this study, we used collision-induced dissociation (CID) to examine the gas-phase fragmentations ...
In biology, the kynurenine pathway is the major degradation pathway of tryptophan (L-Trp). The first...
Electrochemical oxidation of peptides and proteins has been shown to lead to specific cleavage next ...
Gas phase odd-electron radical cationic peptides (M•+) display rich and diverse ion chemistry that d...
Microcystins are cyclic peptides produced by cyanobacteria, which can be harmful to humans and anima...
Reactive oxygen species (ROS) can oxidize virtually all cellular components. In proteins cysteine, m...
The fragmentation mechanisms of singlet oxygen [O(2) ((1)Delta(g))]-derived oxidation products of tr...
The fragmentation mechanisms of singlet oxygen [O2 (1Δg)]-derived oxidation products of tryptophan (...
Proteins have been considered important targets for reactive oxygen species. Indeed, tryptophan (W) ...
As proteínas são consideradas importantes alvos para os oxidantes, devido à abundância em sistemas b...
AbstractNew oxidation products and free radicals derived from tryptophan (Trp) oxidation under Fento...
AbstractAmino acid residues containing thioethers are easily oxidized during protein purification, d...
AbstractDifferent mass spectrometry (MS) techniques have been applied to the study of modified trypt...
Oxidative modification of tryptophan to kynurenine (KYN) and N-formyl kynurenine (NFK) has been desc...
Protein cross-links are formed in regulated biochemical processes in many biological systems, but th...
In this study, we used collision-induced dissociation (CID) to examine the gas-phase fragmentations ...
In biology, the kynurenine pathway is the major degradation pathway of tryptophan (L-Trp). The first...
Electrochemical oxidation of peptides and proteins has been shown to lead to specific cleavage next ...
Gas phase odd-electron radical cationic peptides (M•+) display rich and diverse ion chemistry that d...
Microcystins are cyclic peptides produced by cyanobacteria, which can be harmful to humans and anima...
Reactive oxygen species (ROS) can oxidize virtually all cellular components. In proteins cysteine, m...