Literature DB >> 7826396

Reversible conjugation of isothiocyanates with glutathione catalyzed by human glutathione transferases.

Y Zhang1, R H Kolm, B Mannervik, P Talalay.   

Abstract

Rates were determined for the nonezymatic (second order rate constants) and enzyme-catalyzed conjugations with glutathione of four isothiocyanates that are present in edible plants (allyl-, benzyl-, phenethyl-isothiocyanates, and sulforaphane). Of four cloned human glutathione transferases studied, GSTP1-1 and GSTM1-1 were the most efficient catalysts. GSTA1-1 was less efficient, and GSTM2-2 was the least efficient. Conjugation of benzyl-NCS is the most rapid and that of sulforaphane [CH3S(O)(CH2)4-NCS] is the slowest. The large enzymatic rate enhancements and the abundance of the enzymes suggest that the glutathione transferases play important roles in the metabolic disposition of isothiocyanates in humans. Enzymatic cleavage of the GSH conjugates of isothiocyanates (dithiocarbamates) is catalyzed by glutathione transferases. The importance of these reverse reactions is probably limited because they are slow and inhibited by high intracellular concentrations of glutathione.

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Year:  1995        PMID: 7826396     DOI: 10.1006/bbrc.1995.1106

Source DB:  PubMed          Journal:  Biochem Biophys Res Commun        ISSN: 0006-291X            Impact factor:   3.575


  59 in total

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9.  Assessment of DNA damage and repair in adults consuming allyl isothiocyanate or Brassica vegetables.

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10.  Correlates of self-reported dietary cruciferous vegetable intake and urinary isothiocyanate from two cohorts in China.

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