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Reversible Dissociation and Ligand-Glutathione Exchange Reaction in Binuclear Cationic Tetranitrosyl Iron Complex with Penicillamine

This paper describes a comparative study of the decomposition of two nitrosyl iron complexes (NICs) with penicillamine thiolic ligands [Fe(2)(SC(5)H(11)NO(2))(2)(NO)(4)]SO(4) ·5H(2)O (I) and glutathione- (GSH-) ligands [Fe(2)(SC(10)H(17)N(3)O(6))(2)(NO)(4)]SO(4) ·2H(2)O (II), which spontaneously evo...

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Detalles Bibliográficos
Autores principales: Syrtsova, Lidia, Sanina, Natalia, Lyssenko, Konstantin, Kabachkov, Evgeniy, Psikha, Boris, Shkondina, Natal'ja, Pokidova, Olesia, Kotelnikov, Alexander, Aldoshin, Sergey
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3984828/
https://www.ncbi.nlm.nih.gov/pubmed/24790592
http://dx.doi.org/10.1155/2014/641407
Descripción
Sumario:This paper describes a comparative study of the decomposition of two nitrosyl iron complexes (NICs) with penicillamine thiolic ligands [Fe(2)(SC(5)H(11)NO(2))(2)(NO)(4)]SO(4) ·5H(2)O (I) and glutathione- (GSH-) ligands [Fe(2)(SC(10)H(17)N(3)O(6))(2)(NO)(4)]SO(4) ·2H(2)O (II), which spontaneously evolve to NO in aqueous medium. NO formation was measured by a sensor electrode and by spectrophotometric methods by measuring the formation of a hemoglobin- (Hb-) NO complex. The NO evolution reaction rate from (I)  k (1) = (4.6 ± 0.1)·10(−3) s(−1) and the elimination rate constant of the penicillamine ligand k (2) = (1.8 ± 0.2)·10(−3) s(−1) at 25°C in 0.05 M phosphate buffer,  pH 7.0, was calculated using kinetic modeling based on the experimental data. Both reactions are reversible. Spectrophotometry and mass-spectrometry methods have firmly shown that the penicillamine ligand is exchanged for GS(−) during decomposition of 1.5·10(−4) M (I) in the presence of 10(−3) M GSH, with 76% yield in 24 h. As has been established, such behaviour is caused by the resistance of (II) to decomposition due to the higher affinity of iron to GSH in the complex. The discovered reaction may impede S-glutathionylation of the essential enzyme systems in the presence of (I) and is important for metabolism of NIC, connected with its antitumor activity.