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Biologické funkce a význam S-nitrosace proteinů
[Biological functions and importance of protein S-nitrosation]
J. Jahnová, T. Tichá, L. Kubienová, L. Luhová, and M. Petřivalský
Jazyk čeština Země Česko
Typ dokumentu práce podpořená grantem
- MeSH
- apoptóza MeSH
- biochemické jevy MeSH
- nitrosace * MeSH
- oxid dusnatý chemie MeSH
- proteiny * chemie MeSH
- reaktivní formy dusíku * chemie MeSH
- S-nitrosoglutathion MeSH
- Publikační typ
- práce podpořená grantem MeSH
S-Nitrosation is a new type of protein posttranslational modification. S-nitrosothiols, which are stable and mobile reservoirs of nitric oxide, are considered convergence points of signalling pathways of reactive oxygen and nitrogen species. This review summarizes the current knowledge of the origin, properties and biological functions of both low-molecular-weight and protein S-nitrosothiols. The biological functions of the former nitrosothiols are derived from their ability to decompose yielding NO or to trans-nitrosate protein thiols. Altered levels of the S-nitrosothiols and S-nitrosation of proteins are associated with nitrosation stress, resulting in a series of pathological processes. Although considerable advances in the research on S-nitrosothiols and protein S-nitrosation have been recently achieved, understanding the exact role and functions of S-nitrosation in signalling pathways of reactive nitrogen species is still very limited.
Biological functions and importance of protein S-nitrosation
Literatura
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- $a S-Nitrosation is a new type of protein posttranslational modification. S-nitrosothiols, which are stable and mobile reservoirs of nitric oxide, are considered convergence points of signalling pathways of reactive oxygen and nitrogen species. This review summarizes the current knowledge of the origin, properties and biological functions of both low-molecular-weight and protein S-nitrosothiols. The biological functions of the former nitrosothiols are derived from their ability to decompose yielding NO or to trans-nitrosate protein thiols. Altered levels of the S-nitrosothiols and S-nitrosation of proteins are associated with nitrosation stress, resulting in a series of pathological processes. Although considerable advances in the research on S-nitrosothiols and protein S-nitrosation have been recently achieved, understanding the exact role and functions of S-nitrosation in signalling pathways of reactive nitrogen species is still very limited.
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