AbstractThe nitration of tyrosine residues in protein occurs through the action of reactive oxygen and nitrogen species and is considered a marker of oxidative stress under pathological conditions. The most active nitrating species so far identified is peroxynitrite, the product of the reaction between nitric oxide and superoxide anion. Previously, we have reported that in erythrocytes peroxynitrite irreversibly upregulates lyn, a tyrosine kinase of the src family. In this study we investigated the possible role of tyrosine nitration in the mechanism of lyn activation. We found that tyrosine containing peptides modelled either on the C-terminal tail of src kinases or corresponding to the first 15 amino acids of human erythrocyte band 3 were...
The reaction product of nitric oxide and superoxide, peroxynitrite, is a potent biological oxidant. ...
Nitrotyrosine is used as a marker for the production of peroxynitrite and other reactive nitrogen sp...
AbstractBackground: SH2 domains are found in a variety of signal transduction proteins; they bind ph...
AbstractThe nitration of tyrosine residues in protein occurs through the action of reactive oxygen a...
AbstractIn this study, we demonstrate that the phosphorylation activity of five tyrosine kinases of ...
Nitric oxide is a ubiquitous signalling molecule that plays a key role in cell physiology. Nitric ox...
AbstractThe ability of protein tyrosine kinases to phosphorylate a synthetic peptide was inhibited 5...
AbstractPeroxynitrite (ONOO−) is a `reactive nitrogen species' that can be formed (among other react...
AbstractProteins are targets of reactive species and detection of oxidatively modified proteins is o...
There is increasing evidence that sequence-specific formation of 3-nitrotyrosine (3-NT) may cause fu...
Tyrosine nitration is one of the most common post-transcriptional modifications of proteins, so affe...
Oxidative damage to proteins can occur under physiological conditions through the action of reactive...
Nitrotyrosine is used as a marker for the production of peroxynitrite and other reactive nitrogen sp...
The reaction product of nitric oxide and superoxide, peroxynitrite, is a potent biological oxidant. ...
AbstractPeroxynitrite, a reactive oxidising species resulting from a reaction between nitric oxide a...
The reaction product of nitric oxide and superoxide, peroxynitrite, is a potent biological oxidant. ...
Nitrotyrosine is used as a marker for the production of peroxynitrite and other reactive nitrogen sp...
AbstractBackground: SH2 domains are found in a variety of signal transduction proteins; they bind ph...
AbstractThe nitration of tyrosine residues in protein occurs through the action of reactive oxygen a...
AbstractIn this study, we demonstrate that the phosphorylation activity of five tyrosine kinases of ...
Nitric oxide is a ubiquitous signalling molecule that plays a key role in cell physiology. Nitric ox...
AbstractThe ability of protein tyrosine kinases to phosphorylate a synthetic peptide was inhibited 5...
AbstractPeroxynitrite (ONOO−) is a `reactive nitrogen species' that can be formed (among other react...
AbstractProteins are targets of reactive species and detection of oxidatively modified proteins is o...
There is increasing evidence that sequence-specific formation of 3-nitrotyrosine (3-NT) may cause fu...
Tyrosine nitration is one of the most common post-transcriptional modifications of proteins, so affe...
Oxidative damage to proteins can occur under physiological conditions through the action of reactive...
Nitrotyrosine is used as a marker for the production of peroxynitrite and other reactive nitrogen sp...
The reaction product of nitric oxide and superoxide, peroxynitrite, is a potent biological oxidant. ...
AbstractPeroxynitrite, a reactive oxidising species resulting from a reaction between nitric oxide a...
The reaction product of nitric oxide and superoxide, peroxynitrite, is a potent biological oxidant. ...
Nitrotyrosine is used as a marker for the production of peroxynitrite and other reactive nitrogen sp...
AbstractBackground: SH2 domains are found in a variety of signal transduction proteins; they bind ph...