Mechanistic studies on the interaction of reduced cobalamin (vitamin ) with nitroprusside

2003
journal article
article
cris.lastimport.wos2024-04-10T01:54:25Z
dc.abstract.enThe electron-transfer reaction between reduced cobalamin (Cbl(II)) and sodium pentacyano- nitrosylferrate(II) (sodium nitroprusside, NP), as well as the subsequent processes following the electron- transfer step, were investigated by spectroscopic (UV - vis, 1 H NMR, EPR), electrochemical (CV, DPV) and kinetic (stopped-flow) techniques. In an effort to clarify the complex reaction pattern observed at physiological pH, systematic spectroscopic and kinetic studies were undertaken as a function of pH (1.8 - 9) and NP concentration (0.0001 - 0.09 M). The kinetics of the electron-transfer reaction was studied under pseudo-first-order conditions with respect to NP. The reaction occurs in two parallel paths of different order, viz. pseudo-first and pseudo-second order with respect to the NP concentration, respectively. The contribution of each path depends on pH and the [NP]/[Cbl(II)] ratio. At low pH and total NP concentration (pH < 3, [NP]/[Cbl(II)] 1), the cyano-bridged successor complex [Cbl(III) - ( Ì -NC)-Fe I (CN) 3 (NO + )] - ( 1 s )is the final reaction product formed in an inner-sphere electron transfer reaction that is coupled to the release of cyanide from coordinated nitroprusside. At higher pH, subsequent reactions were observed which involve the attack of cyanide released in the electron transfer step on the initially formed cyano-bridged species, and lead to the formation of Cbl(III)CN and [Fe I (CN) 4 (NO + )] 2 - . The strong dependence of the rate and mechanism of the subsequent reactions on pH is attributed to the large variation in the effective nucleophilicity of the cyanide ligand in the studied pH range. An alternative electron-transfer pathway observed in the presence of excess NP involves the reaction of the precursor complex [Cbl(II) - ( Ì -NC) - Fe II (CN) 4 (NO + )] 2 - ( 1 p ) with NP to give [Cbl(III) - ( Ì -NC) - Fe II (CN) 4 (NO + )] - ( 2 ) and reduced nitroprusside, [Fe(CN) 5 NO] 3 - ,as the initial reaction products. Analysis of the kinetic data allowed elucidation of the rate constants for the inner- and outer-sphere electron-transfer pathways. The main factors which influence the kinetics and thermodynamics of the observed electron-transfer steps are discussed on the basis of the spectroscopic, kinetic and electrochemical results. A general picture of the reaction pathways that occur on a short (s) and long (min to h) time scale as a function of pH and relative reactant concentrations is derived from the experimental data. In addition, the release of NO resulting from the one-electron reduction of NP by Cbl(II) was monitored with the use of a sensitive NO electrode. The results obtained in the present study are discussed in reference to the possible influence of cobalamin on the pharmacological action of nitroprusside.pl
dc.affiliationWydział Chemii : Zakład Chemii Nieorganicznejpl
dc.contributor.authorWolak, Mariapl
dc.contributor.authorStochel, Grażyna - 132108 pl
dc.contributor.authorvan Eldik, Rudi - 239234 pl
dc.date.accessioned2015-09-22T10:52:33Z
dc.date.available2015-09-22T10:52:33Z
dc.date.issued2003pl
dc.description.admin[AU] van Eldik, Rudi [SAP14007947]pl
dc.description.number5pl
dc.description.physical1334-1351pl
dc.description.volume125pl
dc.identifier.doi10.1021/ja0210852pl
dc.identifier.eissn1520-5126pl
dc.identifier.issn0002-7863pl
dc.identifier.urihttp://ruj.uj.edu.pl/xmlui/handle/item/15755
dc.languageengpl
dc.language.containerengpl
dc.rightsDodaję tylko opis bibliograficzny*
dc.rights.licencebez licencji
dc.rights.uri*
dc.subtypeArticlepl
dc.titleMechanistic studies on the interaction of reduced cobalamin (vitamin $B_{12r}$) with nitroprussidepl
dc.title.journalJournal of the American Chemical Societypl
dc.typeJournalArticlepl
dspace.entity.typePublication
cris.lastimport.wos
2024-04-10T01:54:25Z
dc.abstract.enpl
The electron-transfer reaction between reduced cobalamin (Cbl(II)) and sodium pentacyano- nitrosylferrate(II) (sodium nitroprusside, NP), as well as the subsequent processes following the electron- transfer step, were investigated by spectroscopic (UV - vis, 1 H NMR, EPR), electrochemical (CV, DPV) and kinetic (stopped-flow) techniques. In an effort to clarify the complex reaction pattern observed at physiological pH, systematic spectroscopic and kinetic studies were undertaken as a function of pH (1.8 - 9) and NP concentration (0.0001 - 0.09 M). The kinetics of the electron-transfer reaction was studied under pseudo-first-order conditions with respect to NP. The reaction occurs in two parallel paths of different order, viz. pseudo-first and pseudo-second order with respect to the NP concentration, respectively. The contribution of each path depends on pH and the [NP]/[Cbl(II)] ratio. At low pH and total NP concentration (pH < 3, [NP]/[Cbl(II)] 1), the cyano-bridged successor complex [Cbl(III) - ( Ì -NC)-Fe I (CN) 3 (NO + )] - ( 1 s )is the final reaction product formed in an inner-sphere electron transfer reaction that is coupled to the release of cyanide from coordinated nitroprusside. At higher pH, subsequent reactions were observed which involve the attack of cyanide released in the electron transfer step on the initially formed cyano-bridged species, and lead to the formation of Cbl(III)CN and [Fe I (CN) 4 (NO + )] 2 - . The strong dependence of the rate and mechanism of the subsequent reactions on pH is attributed to the large variation in the effective nucleophilicity of the cyanide ligand in the studied pH range. An alternative electron-transfer pathway observed in the presence of excess NP involves the reaction of the precursor complex [Cbl(II) - ( Ì -NC) - Fe II (CN) 4 (NO + )] 2 - ( 1 p ) with NP to give [Cbl(III) - ( Ì -NC) - Fe II (CN) 4 (NO + )] - ( 2 ) and reduced nitroprusside, [Fe(CN) 5 NO] 3 - ,as the initial reaction products. Analysis of the kinetic data allowed elucidation of the rate constants for the inner- and outer-sphere electron-transfer pathways. The main factors which influence the kinetics and thermodynamics of the observed electron-transfer steps are discussed on the basis of the spectroscopic, kinetic and electrochemical results. A general picture of the reaction pathways that occur on a short (s) and long (min to h) time scale as a function of pH and relative reactant concentrations is derived from the experimental data. In addition, the release of NO resulting from the one-electron reduction of NP by Cbl(II) was monitored with the use of a sensitive NO electrode. The results obtained in the present study are discussed in reference to the possible influence of cobalamin on the pharmacological action of nitroprusside.
dc.affiliationpl
Wydział Chemii : Zakład Chemii Nieorganicznej
dc.contributor.authorpl
Wolak, Maria
dc.contributor.authorpl
Stochel, Grażyna - 132108
dc.contributor.authorpl
van Eldik, Rudi - 239234
dc.date.accessioned
2015-09-22T10:52:33Z
dc.date.available
2015-09-22T10:52:33Z
dc.date.issuedpl
2003
dc.description.adminpl
[AU] van Eldik, Rudi [SAP14007947]
dc.description.numberpl
5
dc.description.physicalpl
1334-1351
dc.description.volumepl
125
dc.identifier.doipl
10.1021/ja0210852
dc.identifier.eissnpl
1520-5126
dc.identifier.issnpl
0002-7863
dc.identifier.uri
http://ruj.uj.edu.pl/xmlui/handle/item/15755
dc.languagepl
eng
dc.language.containerpl
eng
dc.rights*
Dodaję tylko opis bibliograficzny
dc.rights.licence
bez licencji
dc.rights.uri*
dc.subtypepl
Article
dc.titlepl
Mechanistic studies on the interaction of reduced cobalamin (vitamin $B_{12r}$) with nitroprusside
dc.title.journalpl
Journal of the American Chemical Society
dc.typepl
JournalArticle
dspace.entity.type
Publication

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