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Toxicology ; 163(2-3): 127-36, 2001 Jun 21.
Article in English | MEDLINE | ID: mdl-11516522

ABSTRACT

S-Nitrosothiols are formed in vivo and are involved in NO signaling. We investigated the sulfur-to-nitrogen transnitrosation activity of S-nitrosocysteine, S-nitrosoglutathione, S-nitrosohomocysteine, S-nitrosocysteinylglycine and S-nitroso-N-acetylcysteine in their reaction with the secondary amine diethanolamine in vitro. The resulting N-nitrosodiethanolamine, a strong carcinogen, was formed in yields of up to 11% from S-nitrosocysteine and S-nitrosocysteinylglycine, whereas the transnitrosation activity of the other S-nitroso compounds was weak. However, the addition of L-cysteine to a solution of S-nitrosohomocysteine and diethanolamine accelerated the decomposition of S-nitrosohomocysteine and resulted in a significant formation of N-nitrosodiethanolamine accompanied by the intermediate generation of S-nitrosocysteine. Thus, reactive nitrosothiols can be formed from less reactive analogs via sulfur-to-sulfur transnitrosation. We suggest that this affects regulation of NO trafficking in vivo. The reaction provides an alternative mechanism for the generation of carcinogenic N-nitroso derivatives.


Subject(s)
Ethanolamines/chemistry , Homocysteine/analogs & derivatives , Nitric Oxide/chemistry , Nitrogen/chemistry , Nitrosation , Nitroso Compounds/chemistry , S-Nitrosothiols , Sulfur/chemistry , Chromatography, High Pressure Liquid , Cysteine/analogs & derivatives , Cysteine/chemistry , Homocysteine/chemistry , Nitrates/chemistry , Signal Transduction , Sulfhydryl Compounds/chemistry , Time Factors
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