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PMID: 16278372 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

Deficiency of glutathione transferase zeta causes oxidative stress and activation of antioxidant response pathways.

Molecular pharmacology ·Vol. 69 ·No. 2 ·2006-02-00 ·Pages 650-7

Blackburn AC, Matthaei KI, Lim C, Taylor MC, Cappello JY, Hayes JD, Anders MW, Board PG

Abstract

Glutathione S-transferase (GST) zeta (GSTZ1-1) plays a significant role in the catabolism of phenylalanine and tyrosine, and a deficiency of GSTZ1-1 results in the accumulation of maleylacetoacetate and its derivatives maleylacetone (MA) and succinylacetone. Induction of GST subunits was detected in the liver of Gstz1(-/-) mice by Western blotting with specific antisera and high-performance liquid chromatography analysis of glutathione affinity column-purified proteins. The greatest induction was observed in members of the mu class. Induction of NAD(P)H:quinone oxidoreductase 1 and the catalytic and modifier subunits of glutamate-cysteine ligase was also observed. Many of the enzymes that are induced in Gstz1(-/-) mice are regulated by antioxidant response elements that respond to oxidative stress via the Keap1/Nrf2 pathway. It is significant that diminished glutathione concentrations were also observed in the liver of Gstz1(-/-) mice, which supports the conclusion that under normal dietary conditions, the accumulation of electrophilic intermediates such as maleylacetoacetate and MA results in a high level of oxidative stress. Elevated GST activities in the livers of Gstz1(-/-) mice suggest that GSTZ1-1 deficiency may alter the metabolism of some drugs and xenobiotics. Gstz1(-/-) mice given acetaminophen demonstrated increased hepatotoxicity compared with wild-type mice. This toxicity may be attributed to the increased GST activity or the decreased hepatic concentrations of glutathione, or both. Patients with acquired deficiency of GSTZ1-1 caused by therapeutic exposure to dichloroacetic acid for the clinical treatment of lactic acidosis may be at increased risk of drug- and chemical-induced toxicity.

MeSH Terms
Acetaminophen/metabolism,toxicity Animals Antioxidants/metabolism Female Glutathione/metabolism Glutathione Transferase/deficiency,genetics Isoenzymes/deficiency,genetics Liver/enzymology Male Mice Mice, Mutant Strains Oxidative Stress/genetics Xenobiotics/metabolism
Chemicals
Antioxidants Isoenzymes Xenobiotics Acetaminophen Gstz1 protein, mouse Glutathione Transferase Glutathione
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Blackburn Anneke C
Division of Molecular Bioscience, John Curtin School of Medical Research, Australian National University, Canberra.
Matthaei Klaus I
Lim Cindy
Taylor Matthew C
Cappello Jean Y
Hayes John D
Anders M W
Board Philip G
Article Info
Journal
Molecular pharmacology
Abbr.
Mol Pharmacol
ISSN
0026-895X
Published
2006-02-00
Epub
2005-00-08
Pages
650-7
Language
English
Region
United States
NLM ID
0035623
Subset
IM
Grants
NIEHS NIH HHS · ES03127 · United States
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