Structure-activity relationships of 4-hydroxyalkenals in the conjugation catalysed by mammalian glutathione transferases
- 1 November 1987
- journal article
- research article
- Published by Portland Press Ltd. in Biochemical Journal
- Vol. 247 (3), 707-713
- https://doi.org/10.1042/bj2470707
Abstract
The substrate specificities of 15 cytosolic glutathione transferases from rat, mouse and man have been explored by use of a homologous series of 4-hydroxyalkenals, extending from 4-hydroxypentenal to 4-hydroxypentadecenal. Rat glutathione transferase 8-8 is exceptionally active with the whole range of 4-hydroxyalkenals, from C5 to C15. Rat transferase 1-1, although more than 10-fold less efficient than transferase 8-8, is the second most active transferase with the longest chain length substrates. Other enzyme forms showing high activities with these substrates are rat transferase 4-4 and human transferase .mu.. The specificity constants, kcat/Km, for the various enzymes have been determined with the 4-hydroxyalkenals. From these constants the incremental Gibbs free energy of binding to the enzyme has been calculated for the homologous substrates. The enzymes responded differently to changes in the length of the hydrocarbon side chain and could be divided into three groups. All glutathione transferases displayed increased binding energy in response to increased hydrophobicity of the substrate. For some of the enzymes, steric limitations of the active site appear to counteract the increase in binding strength afforded by increased chain length of the substrate. Comparison of the activities with 4-hydroxyalkenals and other activated alkenes provides information about the active-site properties of certain glutathione transferases. The results show that the ensemble of glutathione transferases in a given species may serve an important physiological role in the conjugation of the whole range of 4-hydroxyalkenals. In view of its high catalytic efficiency with all the homologues, rat glutathione transferase 8-8 appears to have evolved specifically to serve in the detoxication of these reactive compounds of oxidative metabolism.This publication has 31 references indexed in Scilit:
- Variations in the glutathione S-transferase subunits expressed in human liversBiochimica et Biophysica Acta (BBA) - Protein Structure and Molecular Enzymology, 1986
- Rat glutathione transferase 8‐8, an enzyme efficiently detoxifying 4‐hydroxyalk‐2‐enalsFEBS Letters, 1986
- Studies on the mechanism of formation of 4-hydroxynonenal during microsomal lipid peroxidationBiochimica et Biophysica Acta (BBA) - Lipids and Lipid Metabolism, 1986
- Trans -4-Hydroxy-2-Hexenal: a Reactive Metabolite from the Macrocyclic Pyrrolizidine Alkaloid SenecionineScience, 1985
- Glutathione transferases in primary rat hepatomas: the isolation of a form with GSH peroxidase activityFEBS Letters, 1985
- Bioassay screening for toxicants in oil samples from the toxic-oil syndrome outbreak in SpainArchives of Environmental Contamination and Toxicology, 1985
- Leukotriene C4 formation catalyzed by three distinct forms of human cytosolic glutathione transferaseBiochemical and Biophysical Research Communications, 1985
- 4‐Hydroxyalk‐2‐enals are substrates for glutathione transferaseFEBS Letters, 1985
- Transformation of leukotriene A4 methyl ester to leukotriene C4 monomethyl ester by cytosolic rat glutathione transferasesFEBS Letters, 1984
- Identification of 4-hydroxynonenal as a cytotoxic product originating from the peroxidation of liver microsomal lipidsBiochimica et Biophysica Acta (BBA) - Lipids and Lipid Metabolism, 1980