Differential modulation of MAP kinases by zinc deficiency in IMR-32 cells: Role of H2O2

The influence of zinc deficiency on the modulation of the mitogen-activated protein kinases (MAPKs) extracellular signal-regulated kinase (ERK1/2), p38, and c-Jun N-terminal kinase (JNK) was studied. Using human IMR-32 cells as a model of neuronal cells, the role of oxidants on MAPKs and activator p...

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Autor principal: Zago, M.P
Otros Autores: Mackenzie, G.G, Adamo, A.M, Keen, C.L, Oteiza, P.I
Formato: Capítulo de libro
Lenguaje:Inglés
Publicado: 2005
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100 1 |a Zago, M.P. 
245 1 0 |a Differential modulation of MAP kinases by zinc deficiency in IMR-32 cells: Role of H2O2 
260 |c 2005 
270 1 0 |m Oteiza, P.I.; Department of Nutrition, University of California Davis, Davis, CA 95616, United States; email: poteiza@ucdavis.edu 
506 |2 openaire  |e Política editorial 
504 |a Beyersmann, D., Haase, H., Functions of zinc in signaling, proliferation and differentiation of mammalian cells (2001) Biometals, 14, pp. 331-341 
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504 |a Duffy, J.Y., Miller, C.M., Rutschilling, G.L., Ridder, G.M., Clegg, M.S., Keen, C.L., Daston, G.P., A decrease in intracellular zinc level precedes the detection of early indicators of apoptosis in HL-60 cells (2001) Apoptosis, 6, pp. 161-172 
504 |a Finkel, T., Oxygen radicals and signaling (1998) Curr Opin Cell Biol, 10, pp. 248-253 
504 |a Fraker, P.J., Telford, W.G., A reappraisal of the role of zinc in life and death decisions of cells (1997) Proc Soc Exp Biol Med, 215, pp. 229-236 
504 |a Guyton, K.Z., Liu, Y., Gorospe, M., Xu, Q., Holbrook, N.J., Activation of mitogen-activated protein kinase by H2O 2. Role in cell survival following oxidant injury (1996) J Biol Chem, 271, pp. 4138-4142 
504 |a Hecht, D., Zick, Y., Selective inhibition of protein tyrosine phosphatase activities by H 2O2 and vanadate in vitro (1992) Biochem Biophys Res Commun, 188, pp. 773-779 
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504 |a Jankowski-Hennig, M.A., Clegg, M.S., Daston, G.P., Rogers, J.M., Keen, C.L., Zinc-deficient rat embryos have increased caspase 3-like activity and apoptosis (2000) Biochem Biophys Res Commun, 271, pp. 250-256 
504 |a Karin, M., Shaulian, E., AP-1: Linking hydrogen peroxide and oxidative stress to the control of cell proliferation and death (2001) IUBMB Life, 52, pp. 17-24 
504 |a Karin, M., Takahashi, T., Kapahi, P., Delhase, M., Chen, Y., Makris, C., Rothwarf, D., Li, N., Oxidative stress and gene expression: The AP-1 and NF-kappaB connections (2001) Biofactors, 15, pp. 87-89 
504 |a Keen, C.L., Clegg, M.S., Hanna, L.A., Lanoue, L., Rogers, J.M., Daston, G.P., Oteiza, P., Uriu-Adams, J.Y., The plausibility of micronutrient deficiencies being a significant contributing factor to the occurrence of pregnancy complications (2003) J Nutr, 133, pp. 15978-16058 
504 |a Mackenzie, G.G., Keen, C.L., Oteiza, P.I., Zinc status of human IMR-32 neuroblastoma cells influences their susceptibility to iron-induced oxidative stress (2002) Dev Neurosci, 24, pp. 125-133 
504 |a Mackenzie, G.G., Zago, M.P., Keen, C.L., Oteiza, P.I., Low intracellular zinc impairs the translocation of activated NF-kappa B to the nuclei in human neuroblastoma IMR-32 cells (2002) J Biol Chem, 277, pp. 34610-34617 
504 |a Osborn, L., Kunkel, S., Nabel, G.J., Tumor necrosis factor alpha and interleukin 1 stimulate the human immunodeficiency virus enhancer by activation of the nuclear factor kappa B (1989) Proc Natl Acad Sci U S A, 86, pp. 2336-2340 
504 |a Oteiza, P.I., Olin, K.L., Fraga, C.G., Keen, C.L., Zinc deficiency causes oxidative damage to proteins, lipids and DNA in rat testes (1995) J Nutr, 125, pp. 823-829 
504 |a Oteiza, P.I., Clegg, M.S., Zago, M.P., Keen, C.L., Zinc deficiency induces oxidative stress and AP-1 activation in 3T3 cells (2000) Free Radic Biol Med, 28, pp. 1091-1099 
504 |a Rincon, M., Flavell, R.A., Davis, R.J., Signal transduction by MAP kinases in T lymphocytes (2001) Oncogene, 20, pp. 2490-2497 
504 |a Rodriguez-Puyol, M., Griera-Merino, M., Perez-Rivero, G., Diez-Marques, M.L., Ruiz-Torres, M.P., Rodriguez-Puyol, D., Angiotensin II induces a rapid and transient increase of reactive oxygen species (2002) Antioxid Redox Signal, 4, pp. 869-875 
504 |a Saitoh, M., Nishitoh, H., Fujii, M., Takeda, K., Tobiume, K., Sawada, Y., Kawabata, M., Ichijo, H., Mammalian thioredoxin is a direct inhibitor of apoptosis signal-regulating kinase (ASK) 1 (1998) EMBO J, 17, pp. 2596-2606 
504 |a Shaulian, E., Karin, M., AP-1 as a regulator of cell life and death (2002) Nat Cell Biol, 4, pp. E131-E136 
504 |a Steelman, L.S., Pohnert, S.C., Shelton, J.G., Franklin, R.A., Bertrand, F.E., McCubrey, J.A., JAK/STAT, Raf/MEK/ ERK, PI3K/Akt and BCR-ABL in cell cycle progression and leukemogenesis (2004) Leukemia, 18, pp. 189-218 
504 |a Szatrowski, T.P., Nathan, C.F., Production of large amounts of hydrogen peroxide by human tumor cells (1991) Cancer Res, 51, pp. 794-798 
504 |a Toone, W.M., Morgan, B.A., Jones, N., Redox control of AP-1-like factors in yeast and beyond (2001) Oncogene, 20, pp. 2336-2346 
504 |a Truong-Tran, A.Q., Grosser, D., Ruffin, R.E., Murgia, C., Zalewski, P.D., Apoptosis in the normal and inflamed airway epithelium: Role of zinc in epithelial protection and procaspase-3 regulation (2003) Biochem Pharmacol, 66, pp. 1459-1468 
504 |a Verstraeten, S.V., Zago, M.P., Mackenzie, G.G., Keen, C.L., Oteiza, P.I., Influence of zinc deficiency on cell-membrane fluidity in Jurkat, 3T3 and IMR-32 cells (2004) Biochem J, 378, pp. 579-587 
504 |a (2002) The World Health Report: Reducing Risks, Promoting Healthy Life, , World Health Organization; Geneva, Switzerland 
520 3 |a The influence of zinc deficiency on the modulation of the mitogen-activated protein kinases (MAPKs) extracellular signal-regulated kinase (ERK1/2), p38, and c-Jun N-terminal kinase (JNK) was studied. Using human IMR-32 cells as a model of neuronal cells, the role of oxidants on MAPKs and activator protein-1 (AP-1) activation in zinc deficiency was investigated, characterizing the participation of these events in the triggering of apoptosis. Relative to controls, cells incubated in media with low zinc concentrations showed increased cell oxidants and hydrogen peroxide (H2O2) release, increased JNK and p38 activation, high nuclear AP-1-DNA binding activity, and AP-1-dependent gene expression. Catalase addition to the media prevented the increase of cellular oxidants and inhibited JNK, p38, and AP-1 activation. Low levels of ERK1/2 phosphorylation were observed in the zinc-deficient cells in association with a reduction in cell proliferation. Catalase treatment did not prevent the above events nor the increased rate of apoptosis in the zinc-deficient cells. It is first demonstrated that a decrease in cellular zinc triggers H2O2-independent, as well as H2O 2-dependent effects on MAPKs. Zinc deficiency-induced increases in cellular H2O2 can trigger the activation of JNK and p38, leading to AP-1 activation, events that are not involved in zinc deficiency-induced apoptosis. © Mary Ann Liebert, Inc.  |l eng 
593 |a Departamento de Química Biológica, Instituto de Química y Fisicoquímica Biológicas (UBA-CONICET), Universidad de Buenos Aires, Buenos Aires, Argentina 
593 |a Department of Nutrition, University of California Davis, Davis, CA 95616, United States 
593 |a Department of Environmental Toxicology, University of California Davis, Davis, CA, United States 
593 |a Department of Internal Medicine, University of California Davis, Davis, CA, United States 
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700 1 |a Mackenzie, G.G. 
700 1 |a Adamo, A.M. 
700 1 |a Keen, C.L. 
700 1 |a Oteiza, P.I. 
773 0 |d 2005  |g v. 7  |h pp. 1773-1782  |k n. 11-12  |p Antioxid. Redox Signal.  |x 15230864  |t Antioxidants and Redox Signaling 
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