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PMID: 14616092 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Cellular mechanisms of redox cell signalling: role of cysteine modification in controlling antioxidant defences in response to electrophilic lipid oxidation products.

The Biochemical journal ·Vol. 378 ·No. Pt 2 ·2004-03-01 ·Pages 373-82

Levonen AL, Landar A, Ramachandran A, Ceaser EK, Dickinson DA, Zanoni G, Morrow JD, Darley-Usmar VM

Abstract

The molecular mechanisms through which oxidized lipids and their electrophilic decomposition products mediate redox cell signalling is not well understood and may involve direct modification of signal-transduction proteins or the secondary production of reactive oxygen or nitrogen species in the cell. Critical in the adaptation of cells to oxidative stress, including exposure to subtoxic concentrations of oxidized lipids, is the transcriptional regulation of antioxidant enzymes, many of which are controlled by antioxidant-responsive elements (AREs), also known as electrophile-responsive elements. The central regulator of the ARE response is the transcription factor Nrf2 (NF-E2-related factor 2), which on stimulation dissociates from its cytoplasmic inhibitor Keap1, translocates to the nucleus and transactivates ARE-dependent genes. We hypothesized that electrophilic lipids are capable of activating ARE through thiol modification of Keap1 and we have tested this concept in an intact cell system using induction of glutathione synthesis by the cyclopentenone prostaglandin, 15-deoxy-Delta12,14-prostaglandin J2. On exposure to 15-deoxy-Delta12,14-prostaglandin J2, the dissociation of Nrf2 from Keap1 occurred and this was dependent on the modification of thiols in Keap1. This mechanism appears to encompass other electrophilic lipids, since 15-A(2t)-isoprostane and the lipid aldehyde 4-hydroxynonenal were also shown to modify Keap1 and activate ARE. We propose that activation of ARE through this mechanism will have a major impact on inflammatory situations such as atherosclerosis, in which both enzymic as well as non-enzymic formation of electrophilic lipid oxidation products are increased.

MeSH Terms
Aldehydes/chemistry,pharmacology Antioxidants/metabolism Base Sequence Carrier Proteins/chemistry,genetics,metabolism Cell Line Cysteine/physiology DNA-Binding Proteins/metabolism Glutamate-Cysteine Ligase/biosynthesis,genetics Glutathione/biosynthesis Humans Molecular Sequence Data Mutation NF-E2-Related Factor 2 Oxidation-Reduction Oxidative Stress Prostaglandin D2/analogs & derivatives,chemistry,pharmacology Prostaglandins A/chemistry,pharmacology Response Elements Signal Transduction Trans-Activators/metabolism Transcriptional Activation
Chemicals
15-deoxy-delta(12,14)-prostaglandin J2 8-isoprostaglandin A2 Aldehydes Antioxidants Carrier Proteins DNA-Binding Proteins NF-E2-Related Factor 2 NFE2L2 protein, human Prostaglandins A Trans-Activators Glutamate-Cysteine Ligase Glutathione 4-hydroxy-2-nonenal Cysteine Prostaglandin D2
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Levonen Anna-Liisa
Department of Pathology, Center for Free Radical Biology, University of Alabama at Birmingham, Biomedical Research Building II, 901 19th Str. S., Birmingham, AL 35294, USA.
Landar Aimee
Ramachandran Anup
Ceaser Erin K
Dickinson Dale A
Zanoni Giuseppe
Morrow Jason D
Darley-Usmar Victor M
References (55)
55 references, click to expand
  1. Anti-inflammatory cyclopentenone prostaglandins are direct inhibitors of IkappaB kinase.
    Nature. 2000 Jan 6;403(6765):103-8 PMID: 10638762
  2. 15-deoxy-delta 12,14-prostaglandin J2. A prostaglandin D2 metabolite generated during inflammatory processes.
    J Biol Chem. 2002 Mar 22;277(12):10459-66 PMID: 11786541
  3. 15-deoxy-delta 12,14-prostaglandin J2 inhibits multiple steps in the NF-kappa B signaling pathway.
    Proc Natl Acad Sci U S A. 2000 Apr 25;97(9):4844-9 PMID: 10781090
  4. Identification of proteins containing cysteine residues that are sensitive to oxidation by hydrogen peroxide at neutral pH.
    Anal Biochem. 2000 Aug 1;283(2):214-21 PMID: 10906242
  5. Inhibition of ERK and p38 MAP kinases inhibits binding of Nrf2 and induction of GCS genes.
    Biochem Biophys Res Commun. 2000 Nov 19;278(2):484-92 PMID: 11097862
  6. Atherosclerosis. the road ahead.
    Cell. 2001 Feb 23;104(4):503-16 PMID: 11239408
  7. Activation of the mouse heme oxygenase-1 gene by 15-deoxy-Delta(12,14)-prostaglandin J(2) is mediated by the stress response elements and transcription factor Nrf2.
    Antioxid Redox Signal. 2002 Apr;4(2):249-57 PMID: 12006176
  8. First total synthesis of A(2) isoprostane.
    J Org Chem. 2002 Jun 14;67(12):4346-51 PMID: 12054973
  9. Identification of a variant antioxidant response element in the promoter of the human glutamate-cysteine ligase modifier subunit gene. Revision of the ARE consensus sequence.
    J Biol Chem. 2002 Aug 23;277(34):30730-7 PMID: 12070177
  10. Direct evidence that sulfhydryl groups of Keap1 are the sensors regulating induction of phase 2 enzymes that protect against carcinogens and oxidants.
    Proc Natl Acad Sci U S A. 2002 Sep 3;99(18):11908-13 PMID: 12193649
  11. Human colorectal cancer cells efficiently conjugate the cyclopentenone prostaglandin, prostaglandin J(2), to glutathione.
    Biochim Biophys Acta. 2002 Sep 5;1584(1):37-45 PMID: 12213491
  12. The cyclopentenone product of lipid peroxidation, 15-A(2t)-isoprostane (8-isoprostaglandin A(2)), is efficiently conjugated with glutathione by human and rat glutathione transferase A4-4.
    Chem Res Toxicol. 2002 Sep;15(9):1114-8 PMID: 12230403
  13. Formation of highly reactive A-ring and J-ring isoprostane-like compounds (A4/J4-neuroprostanes) in vivo from docosahexaenoic acid.
    J Biol Chem. 2002 Sep 27;277(39):36076-84 PMID: 12133837
  14. The Keap1 BTB/POZ dimerization function is required to sequester Nrf2 in cytoplasm.
    J Biol Chem. 2002 Sep 27;277(39):36544-52 PMID: 12145307
  15. Nrf2 degradation by the ubiquitin proteasome pathway is inhibited by KIAA0132, the human homolog to INrf2.
    Oncogene. 2002 Oct 3;21(44):6829-34 PMID: 12360409
  16. Degradation of transcription factor Nrf2 via the ubiquitin-proteasome pathway and stabilization by cadmium.
    J Biol Chem. 2003 Jan 24;278(4):2396-402 PMID: 12441344
  17. Regulatory mechanisms controlling gene expression mediated by the antioxidant response element.
    Annu Rev Pharmacol Toxicol. 2003;43:233-60 PMID: 12359864
  18. Increased protein stability as a mechanism that enhances Nrf2-mediated transcriptional activation of the antioxidant response element. Degradation of Nrf2 by the 26 S proteasome.
    J Biol Chem. 2003 Feb 14;278(7):4536-41 PMID: 12446695
  19. Induction of glutathione synthesis in macrophages by oxidized low-density lipoproteins is mediated by consensus antioxidant response elements.
    Circ Res. 2003 Mar 7;92(4):386-93 PMID: 12600891
  20. Keap1 regulates both cytoplasmic-nuclear shuttling and degradation of Nrf2 in response to electrophiles.
    Genes Cells. 2003 Apr;8(4):379-91 PMID: 12653965
  21. The cyclopentenone 15-deoxy-delta 12,14-prostaglandin J2 binds to and activates H-Ras.
    Proc Natl Acad Sci U S A. 2003 Apr 15;100(8):4772-7 PMID: 12684535
  22. Keap1-dependent proteasomal degradation of transcription factor Nrf2 contributes to the negative regulation of antioxidant response element-driven gene expression.
    J Biol Chem. 2003 Jun 13;278(24):21592-600 PMID: 12682069
  23. Thioredoxin as a molecular target of cyclopentenone prostaglandins.
    J Biol Chem. 2003 Jul 11;278(28):26046-54 PMID: 12709421
  24. Identification of a novel Nrf2-regulated antioxidant response element (ARE) in the mouse NAD(P)H:quinone oxidoreductase 1 gene: reassessment of the ARE consensus sequence.
    Biochem J. 2003 Sep 1;374(Pt 2):337-48 PMID: 12816537
  25. Biosynthesis of 15-deoxy-delta12,14-PGJ2 and the ligation of PPARgamma.
    J Clin Invest. 2003 Sep;112(6):945-55 PMID: 12975479
  26. NADPH oxidase activity is essential for Keap1/Nrf2-mediated induction of GCLC in response to 2-indol-3-yl-methylenequinuclidin-3-ols.
    Cancer Res. 2003 Sep 1;63(17):5636-45 PMID: 14500406
  27. Enzymic method for quantitative determination of nanogram amounts of total and oxidized glutathione: applications to mammalian blood and other tissues.
    Anal Biochem. 1969 Mar;27(3):502-22 PMID: 4388022
  28. Regulation of glutathione S-transferase Ya subunit gene expression: identification of a unique xenobiotic-responsive element controlling inducible expression by planar aromatic compounds.
    Proc Natl Acad Sci U S A. 1990 May;87(10):3826-30 PMID: 2160079
  29. Possible mutagens derived from lipids and lipid precursors.
    Mutat Res. 1990 May;238(3):223-33 PMID: 2342513
  30. Transcriptional regulation of the rat NAD(P)H:quinone reductase gene. Identification of regulatory elements controlling basal level expression and inducible expression by planar aromatic compounds and phenolic antioxidants.
    J Biol Chem. 1991 Mar 5;266(7):4556-61 PMID: 1900296
  31. The antioxidant responsive element. Activation by oxidative stress and identification of the DNA consensus sequence required for functional activity.
    J Biol Chem. 1991 Jun 25;266(18):11632-9 PMID: 1646813
  32. Chemistry and biochemistry of 4-hydroxynonenal, malonaldehyde and related aldehydes.
    Free Radic Biol Med. 1991;11(1):81-128 PMID: 1937131
  33. Induction of heme oxygenase by delta 12-prostaglandin J2 in porcine aortic endothelial cells.
    Prostaglandins. 1992 Feb;43(2):121-31 PMID: 1542739
  34. Biological activities and mechanisms of action of PGJ2 and related compounds: an update.
    Prostaglandins Leukot Essent Fatty Acids. 1992 Sep;47(1):1-12 PMID: 1438462
  35. Catalytic and regulatory properties of the heavy subunit of rat kidney gamma-glutamylcysteine synthetase.
    J Biol Chem. 1993 Sep 15;268(26):19675-80 PMID: 8103521
  36. Amino acid sequence and function of the light subunit of rat kidney gamma-glutamylcysteine synthetase.
    J Biol Chem. 1993 Sep 25;268(27):20578-83 PMID: 8104188
  37. Prostaglandin A2 protein interactions and inhibition of cellular proliferation.
    Prostaglandins. 1995 Nov-Dec;50(5-6):359-75 PMID: 8838245
  38. Transcriptional regulation of gamma-glutamylcysteine synthetase-heavy subunit by oxidants in human alveolar epithelial cells.
    Biochem Biophys Res Commun. 1996 Dec 24;229(3):832-7 PMID: 8954980
  39. Constitutive and beta-naphthoflavone-induced expression of the human gamma-glutamylcysteine synthetase heavy subunit gene is regulated by a distal antioxidant response element/TRE sequence.
    J Biol Chem. 1997 Mar 14;272(11):7445-54 PMID: 9054446
  40. Functional antioxidant responsive elements.
    Proc Natl Acad Sci U S A. 1997 May 13;94(10):5361-6 PMID: 9144242
  41. Expression of lipocalin-type prostaglandin D synthase (beta-trace) in human heart and its accumulation in the coronary circulation of angina patients.
    Proc Natl Acad Sci U S A. 1997 Dec 23;94(26):14689-94 PMID: 9405674
  42. Human glutathione transferase A4-4: an alpha class enzyme with high catalytic efficiency in the conjugation of 4-hydroxynonenal and other genotoxic products of lipid peroxidation.
    Biochem J. 1998 Feb 15;330 ( Pt 1):175-9 PMID: 9461507
  43. An electrophile responsive element (EpRE) regulates beta-naphthoflavone induction of the human gamma-glutamylcysteine synthetase regulatory subunit gene. Constitutive expression is mediated by an adjacent AP-1 site.
    J Biol Chem. 1998 Jun 12;273(24):14683-9 PMID: 9614065
  44. Reversible inactivation of protein-tyrosine phosphatase 1B in A431 cells stimulated with epidermal growth factor.
    J Biol Chem. 1998 Jun 19;273(25):15366-72 PMID: 9624118
  45. Nuclear factor kappa B dependent induction of gamma glutamylcysteine synthetase by ionizing radiation in T98G human glioblastoma cells.
    Free Radic Biol Med. 1998 May;24(7-8):1256-68 PMID: 9626582
  46. Keap1 represses nuclear activation of antioxidant responsive elements by Nrf2 through binding to the amino-terminal Neh2 domain.
    Genes Dev. 1999 Jan 1;13(1):76-86 PMID: 9887101
  47. Evidence for the formation of a novel cyclopentenone isoprostane, 15-A2t-isoprostane (8-iso-prostaglandin A2) in vivo.
    Biochim Biophys Acta. 1999 Jan 4;1436(3):550-6 PMID: 9989284
  48. Inducible cyclooxygenase may have anti-inflammatory properties.
    Nat Med. 1999 Jun;5(6):698-701 PMID: 10371510
  49. Structural identification of a novel pro-inflammatory epoxyisoprostane phospholipid in mildly oxidized low density lipoprotein.
    J Biol Chem. 1999 Aug 27;274(35):24787-98 PMID: 10455151
  50. Augmented expression of cyclooxygenase-2 in human atherosclerotic lesions.
    Am J Pathol. 1999 Oct;155(4):1281-91 PMID: 10514410
  51. Potency of Michael reaction acceptors as inducers of enzymes that protect against carcinogenesis depends on their reactivity with sulfhydryl groups.
    Proc Natl Acad Sci U S A. 2001 Mar 13;98(6):3404-9 PMID: 11248091
  52. 15-Deoxy-Delta 12,14-prostaglandin J2 inhibition of NF-kappaB-DNA binding through covalent modification of the p50 subunit.
    J Biol Chem. 2001 Sep 21;276(38):35530-6 PMID: 11466314
  53. Biphasic effects of 15-deoxy-delta(12,14)-prostaglandin J(2) on glutathione induction and apoptosis in human endothelial cells.
    Arterioscler Thromb Vasc Biol. 2001 Nov;21(11):1846-51 PMID: 11701476
  54. Induction of glutathione synthesis by oxidized low-density lipoprotein and 1-palmitoyl-2-arachidonyl phosphatidylcholine: protection against quinone-mediated oxidative stress.
    Biochem J. 2002 Feb 15;362(Pt 1):51-9 PMID: 11829739
  55. Regulation of gamma-glutamylcysteine synthetase subunit gene expression: insights into transcriptional control of antioxidant defenses.
    Free Radic Res. 2000 Apr;32(4):281-301 PMID: 10741850
Article Info
Journal
The Biochemical journal
Abbr.
Biochem J
ISSN
1470-8728
Published
2004-03-01
Pages
373-82
Language
English
Region
England
NLM ID
2984726R
PMCID
PMC1223973
Subset
IM
Grants
NIDDK NIH HHS · DK48831 · United States
NIEHS NIH HHS · ES 10167 · United States
NIGMS NIH HHS · GM 15431 · United States
Analysis Services
Analysis Services

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