AbstractTyrosine nitration is one of the most common post-transcriptional modifications of proteins, so affecting their structure and function. Human cytochrome c, with five tyrosine residues, is an excellent case study as it is a well-known protein playing a double physiological role in different cell compartments. On one hand, it acts as electron carrier within the mitochondrial respiratory electron transport chain, and on the other hand, it serves as a cytoplasmic apoptosis-triggering agent. In a previous paper, we reported the effect of nitration on physicochemical and kinetic features of monotyrosine cytochrome c mutants. Here, we analyse the nitration-induced changes in secondary structure, thermal stability, haem environment, alkalin...
AbstractThe nitration of tyrosine residues in protein occurs through the action of reactive oxygen a...
Posttranslational modifications of proteins play key roles in the regulation of biological processes...
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...
AbstractTyrosine nitration is one of the most common post-transcriptional modifications of proteins,...
Under nitroxidative stress, a minor fraction of cytochrome c can be modified by tyrosine nitration. ...
AbstractUnder nitroxidative stress, a minor fraction of cytochrome c can be modified by tyrosine nit...
Here we analyze the specific effect of nitration of tyrosines 46 and 48 on the dual role of cytochro...
AbstractThe Reactive Nitrogen and Oxygen Species (the so-called RNOS), which are well-known radicals...
Here we report a spectroscopic, electrochemical and computational study of cytochrome c showing that...
Tyrosine nitration is an oxidative post-translational modification that can occur in proteins associ...
Protein 3-nitrotyrosine is a post-translational modification that commonly arises from the nitration...
Respiratory cytochrome c has been found to be phosphorylated at tyrosine 97 in the postischemic brai...
A further function of cytochrome c (cyt c), beyond respiration, is realized outside mitochondria in ...
Regulation of mitochondrial activity allows cells to adapt to changing conditions and to control oxi...
AbstractThe nitration of tyrosine residues in protein occurs through the action of reactive oxygen a...
Posttranslational modifications of proteins play key roles in the regulation of biological processes...
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...
AbstractTyrosine nitration is one of the most common post-transcriptional modifications of proteins,...
Under nitroxidative stress, a minor fraction of cytochrome c can be modified by tyrosine nitration. ...
AbstractUnder nitroxidative stress, a minor fraction of cytochrome c can be modified by tyrosine nit...
Here we analyze the specific effect of nitration of tyrosines 46 and 48 on the dual role of cytochro...
AbstractThe Reactive Nitrogen and Oxygen Species (the so-called RNOS), which are well-known radicals...
Here we report a spectroscopic, electrochemical and computational study of cytochrome c showing that...
Tyrosine nitration is an oxidative post-translational modification that can occur in proteins associ...
Protein 3-nitrotyrosine is a post-translational modification that commonly arises from the nitration...
Respiratory cytochrome c has been found to be phosphorylated at tyrosine 97 in the postischemic brai...
A further function of cytochrome c (cyt c), beyond respiration, is realized outside mitochondria in ...
Regulation of mitochondrial activity allows cells to adapt to changing conditions and to control oxi...
AbstractThe nitration of tyrosine residues in protein occurs through the action of reactive oxygen a...
Posttranslational modifications of proteins play key roles in the regulation of biological processes...
There is increasing evidence that sequence-specific formation of 3-nitrotyrosine (3-NT) may cause fu...