Abstract Over the last 25 years protein S-nitrosylation, also known more correctly as S-nitrosation, has been progressively implicated in virtually every nitric oxide-regulated process within the cardiovascular system. The current, widely-held paradigm is that S-nitrosylation plays an equivalent role as phosphorylation, providing a stable and controllable post-translational modification that directly regulates end-effector target proteins to elicit biological responses. However, this concept largely ignores the intrinsic instability of the nitrosothiol bond, which rapidly reacts with typically abundant thiol-containing molecules to generate more stable disulfide bonds. These protein disulfides, formed via a nitrosothiol intermediate redox s...
S-nitrosylation is a post-translational modification in which nitric oxide (NO) binds to the thiol g...
S-nitrosylation is a post-translational modification in which nitric oxide (NO) binds to the thiol g...
ABSTRACT THE STRUCTURAL PROTEOMICS OF S-NITROSYLATION: FROM GLOBAL IDENTIFICATION TO ELUCIDATING PRO...
S-nitrosation, commonly referred to as S-nitrosylation, is widely regarded as a ubiquitous, stable p...
SummaryNitric oxide (NO) regulates protein function by S-nitrosylation of cysteine to form nitrosoth...
Decades of chemical, biochemical and pathophysiological research have established the relevance of p...
Decades of chemical, biochemical and pathophysiological research have established the relevance of p...
The modification of protein cysteine residues underlies some of the diverse biological functions of ...
SummaryNitric oxide (NO) regulates protein function by S-nitrosylation of cysteine to form nitrosoth...
Protein S-nitrosation is deemed as a prototype of posttranslational modifications governing cell sig...
S-Nitrosylated proteins form when a cysteine thiol reacts with nitric oxide (NO) in thepresence of a...
Significance: Nitric oxide (NO) classical and less classical signaling mechanisms (through interacti...
The transfer of a nitric oxide group to cysteine sulfhydryls on proteins, known as S-nitrosylation, ...
S-nitrosylation is a post-translational modification in which nitric oxide (NO) binds to the thiol g...
Copyright © 2014 Salvatore Rizza et al.(is is an open access article distributed under the Creative ...
S-nitrosylation is a post-translational modification in which nitric oxide (NO) binds to the thiol g...
S-nitrosylation is a post-translational modification in which nitric oxide (NO) binds to the thiol g...
ABSTRACT THE STRUCTURAL PROTEOMICS OF S-NITROSYLATION: FROM GLOBAL IDENTIFICATION TO ELUCIDATING PRO...
S-nitrosation, commonly referred to as S-nitrosylation, is widely regarded as a ubiquitous, stable p...
SummaryNitric oxide (NO) regulates protein function by S-nitrosylation of cysteine to form nitrosoth...
Decades of chemical, biochemical and pathophysiological research have established the relevance of p...
Decades of chemical, biochemical and pathophysiological research have established the relevance of p...
The modification of protein cysteine residues underlies some of the diverse biological functions of ...
SummaryNitric oxide (NO) regulates protein function by S-nitrosylation of cysteine to form nitrosoth...
Protein S-nitrosation is deemed as a prototype of posttranslational modifications governing cell sig...
S-Nitrosylated proteins form when a cysteine thiol reacts with nitric oxide (NO) in thepresence of a...
Significance: Nitric oxide (NO) classical and less classical signaling mechanisms (through interacti...
The transfer of a nitric oxide group to cysteine sulfhydryls on proteins, known as S-nitrosylation, ...
S-nitrosylation is a post-translational modification in which nitric oxide (NO) binds to the thiol g...
Copyright © 2014 Salvatore Rizza et al.(is is an open access article distributed under the Creative ...
S-nitrosylation is a post-translational modification in which nitric oxide (NO) binds to the thiol g...
S-nitrosylation is a post-translational modification in which nitric oxide (NO) binds to the thiol g...
ABSTRACT THE STRUCTURAL PROTEOMICS OF S-NITROSYLATION: FROM GLOBAL IDENTIFICATION TO ELUCIDATING PRO...