Purification and physical characterization of glutathione S-transferase K. Differential use of S-hexylglutathione and glutathione affinity matrices to isolate a novel glutathione S-transferase from rat liver
- 1 February 1986
- journal article
- research article
- Published by Portland Press Ltd. in Biochemical Journal
- Vol. 233 (3) , 789-798
- https://doi.org/10.1042/bj2330789
Abstract
A novel hepatic enzyme, glutathione S-transferase K, is described that, unlike previously characterized transferases, possesses little affinity for S-hexylglutathione-Sepharose 6B but can be isolated because it binds to a glutathione affinity matrix. A purification scheme for this new enzyme was devised, with the use of DEAE-cellulose, S-hexylglutathione-Sepharose 6B, glutathione-Sepharose 6B and hydroxyapatite chromatography. The final hydroxyapatite step results in the elution of three chromatographically interconvertible forms, K1, K2 and K3. The purified protein has an isoelectric point of 6.1 and comprises subunits that are designated Yk (Mr 25000); during sodium dodecyl sulphate/polyacrylamide-gel electrophoresis, it migrates marginally faster than the Ya subunit but slower than the pulmonary Yf monomer (Mr 24500). Transferase K displays catalytic, immunochemical and physical properties that are distinct from those of other liver transferases. Tryptic peptide maps suggest that transferase K is a homodimer, or comprises closely homologous subunits. The tryptic fingerprints also demonstrate that, although transferase K is structurally separate from previously described hepatic forms, a limited sequence homology exists between the Yk, Ya and Yc polypeptides. These structural data are in accord with the immunochemical results presented in the accompanying paper [Hayes and Mantle (1986) Biochem. J. 233, 779-788].This publication has 25 references indexed in Scilit:
- Use of immuno-blot techniques to discriminate between the glutathione S-transferase Yf, Yk, Ya, Yn/Yb and Yc subunits and to study their distribution in extrahepatic tissues. Evidence for three immunochemically distinct groups of transferase in the ratBiochemical Journal, 1986
- Purification and characterization of glutathione S-transferases P, S and N. Isolation from rat liver of Yb1 Yn protein, the existence of which was predicted by subunit hybridization in vitroBiochemical Journal, 1984
- Bile acid inhibition of basic and neutral glutathione S-transferases in rat liverBiochemical Journal, 1983
- Structural, functional and hybridization studies of the glutathione S-transferases of rat liverBiochemical Pharmacology, 1983
- Purification and characterization of three forms of glutathione S-transferase A. A comparative study of the major YaYa-, YbYb- and YcYc-containing glutathione S-transferasesBiochemical Journal, 1982
- [28] Glutathione transferase (human placenta)Published by Elsevier ,1981
- [27] Glutathione S-transferases (rat and human)Published by Elsevier ,1981
- The Role of Glutathione and Glutathione S-Transferases in the Metabolism of Chemical Carcinogens and Other Electrophilic AgentsAdvances in Cancer Research, 1979
- Purification of glutathione S-transferases from human liver by glutathione-affinity chromatographyAnalytical Biochemistry, 1977
- Cleavage of Structural Proteins during the Assembly of the Head of Bacteriophage T4Nature, 1970