S-nitrosylation is a major redox posttranslational modification involved in cell signaling. The steady state concentration of S-nitrosylated proteins depends on the balance between the relative ability to generate nitric oxide (NO) via NO synthase and to reduce nitrosothiols by denitrosylases. Numerous works have been published in last decades regarding the role of NO and S-nitrosylation in the regulation of protein structure and function, and in driving cellular activities in vertebrates. Notwithstanding an increasing number of observations indicates that impairment of denitrosylation equally affects cellular homeostasis, there is still no report providing comprehensive knowledge on the impact that denitrosylation has on maintaining correc...
Intracellular sulfhydryls, both protein and non-protein, are potential targets of nitric oxide-relat...
Significance: Cysteines have an essential role in redox signaling, transforming an oxidant signal in...
BACKGROUND: S-nitrosation--the formation of S-nitrosothiols (RSNOs) at cysteine residues in proteins...
S-nitrosylation is a major redox posttranslational modification involved in cell signaling. The stea...
S-nitrosylation of proteins occurs as a consequence of the derivatization of cysteine thiols with ni...
S-nitrosation has been recognized as an important mechanism of protein posttranslational regulations...
<p>S-nitrosylation, the prototypic mechanism of redox-based signal transduction, involves the covale...
Oxidative and nitrosative stress are harmful conditions for cellular homeostasis. To counteract reac...
Proteins dynamically contribute towards maintaining cellular homeostasis. Posttranslational modifica...
The number of proteins shown to be S-nitrosated in vivo is increasing steadily, highlighting the imp...
Nitric oxide (NO) is a gaseous pleiotropic molecule that can both induce irreversible oxidative dama...
S-Nitrosoglutathione reductase (GSNOR) is a key regulator of protein S-nitrosylation, the covalent m...
The S-nitrosoglutathione-metabolizing enzyme, GSNO reductase (GSNOR), has emerged as an important re...
Background: S-nitrosation – the formation of S-nitrosothiols (RSNOs) at cysteine residues in protein...
S-nitrosylation, a prototypic redox-based posttranslational modification, is frequently dysregulated...
Intracellular sulfhydryls, both protein and non-protein, are potential targets of nitric oxide-relat...
Significance: Cysteines have an essential role in redox signaling, transforming an oxidant signal in...
BACKGROUND: S-nitrosation--the formation of S-nitrosothiols (RSNOs) at cysteine residues in proteins...
S-nitrosylation is a major redox posttranslational modification involved in cell signaling. The stea...
S-nitrosylation of proteins occurs as a consequence of the derivatization of cysteine thiols with ni...
S-nitrosation has been recognized as an important mechanism of protein posttranslational regulations...
<p>S-nitrosylation, the prototypic mechanism of redox-based signal transduction, involves the covale...
Oxidative and nitrosative stress are harmful conditions for cellular homeostasis. To counteract reac...
Proteins dynamically contribute towards maintaining cellular homeostasis. Posttranslational modifica...
The number of proteins shown to be S-nitrosated in vivo is increasing steadily, highlighting the imp...
Nitric oxide (NO) is a gaseous pleiotropic molecule that can both induce irreversible oxidative dama...
S-Nitrosoglutathione reductase (GSNOR) is a key regulator of protein S-nitrosylation, the covalent m...
The S-nitrosoglutathione-metabolizing enzyme, GSNO reductase (GSNOR), has emerged as an important re...
Background: S-nitrosation – the formation of S-nitrosothiols (RSNOs) at cysteine residues in protein...
S-nitrosylation, a prototypic redox-based posttranslational modification, is frequently dysregulated...
Intracellular sulfhydryls, both protein and non-protein, are potential targets of nitric oxide-relat...
Significance: Cysteines have an essential role in redox signaling, transforming an oxidant signal in...
BACKGROUND: S-nitrosation--the formation of S-nitrosothiols (RSNOs) at cysteine residues in proteins...