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Karen Bedard and Karl-Heinz Krause

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312 KAREN BEDARD AND KARL-HEINZ KRAUSE<br />

923. Volpp BD, Nauseef WM, Clark RA. Two cytosolic neutrophil<br />

oxidase components absent in autosomal chronic granulomatous<br />

disease. Science 242: 1295–1297, 1988.<br />

924. Voo KS, Skalnik DG. Elf-1 <strong>and</strong> PU1 induce expression of<br />

gp91(phox) via a promoter element mutated in a subset of chronic<br />

granulomatous disease patients. Blood 93: 3512–3520, 1999.<br />

925. Vulcano M, Dusi S, Liss<strong>and</strong>rini D, Badolato R, Mazzi P, Riboldi<br />

E, Borroni E, Calleri A, Donini M, Plebani A,<br />

Notarangelo L, Musso T, Sozzani S. Toll receptor-mediated<br />

regulation of NADPH oxidase in human dendritic cells. J Immunol<br />

173: 5749–5756, 2004.<br />

926. Waghray M, Cui Z, Horowitz JC, Subramanian IM, Martinez<br />

FJ, Toews GB, Thannickal VJ. Hydrogen peroxide is a diffusible<br />

paracrine signal for the induction of epithelial cell death by activated<br />

myofibroblasts. FASEB J 19: 854–856, 2005.<br />

927. Walder CE, Green SP, Darbonne WC, Mathias J, Rae J, Dinauer<br />

MC, Curnutte JT, Thomas GR. Ischemic stroke injury is<br />

reduced in mice lacking a functional NADPH oxidase. Stroke 28:<br />

2252–2258, 1997.<br />

928. Walker PD, Shah SV. Gentamicin enhanced production of hydrogen<br />

peroxide by renal cortical mitochondria. Am J Physiol Cell<br />

Physiol 253: C495–C499, 1987.<br />

929. Wallach TM, Segal AW. Analysis of glycosylation sites on<br />

gp91phox, the flavocytochrome of the NADPH oxidase, by sitedirected<br />

mutagenesis <strong>and</strong> translation in vitro. Biochem J 321: 583–<br />

585, 1997.<br />

930. Wallaert B, Aerts C, Gressier B, Gosset P, Voisin C. Oxidative<br />

inactivation of alpha 1-proteinase inhibitor by alveolar epithelial<br />

type II cells. J Appl Physiol 75: 2376–2382, 1993.<br />

931. Wang D, De Deken X, Milenkovic M, Song Y, Pirson I, Dumont<br />

JE, Miot F. Identification of a novel partner of duox: EFP1, a<br />

thioredoxin-related protein. J Biol Chem 280: 3096–3103, 2005.<br />

932. Wang FS, Wang CJ, Chen YJ, Chang PR, Huang YT, Sun YC,<br />

Huang HC, Yang YJ, Yang KD. Ras induction of superoxide<br />

activates ERK-dependent angiogenic transcription factor HIF-1alpha<br />

<strong>and</strong> VEGF-A expression in shock wave-stimulated osteoblasts.<br />

J Biol Chem 279: 10331–10337, 2004.<br />

933. Wang G, Anrather J, Huang J, Speth RC, Pickel VM, Iadecola<br />

C. NADPH oxidase contributes to angiotensin II signaling in the<br />

nucleus tractus solitarius. J Neurosci 24: 5516–5524, 2004.<br />

934. Wang H, Kochevar IE. Involvement of UVB-induced reactive<br />

oxygen species in TGF-beta biosynthesis <strong>and</strong> activation in keratinocytes.<br />

Free Radical Biol Med 38: 890–897, 2005.<br />

935. Wang HD, Xu S, Johns DG, Du Y, Quinn MT, Cayatte AJ,<br />

Cohen RA. Role of NADPH oxidase in the vascular hypertrophic<br />

<strong>and</strong> oxidative stress response to angiotensin II in mice. Circ Res 88:<br />

947–953, 2001.<br />

936. Wang Q, Tompkins KD, Simonyi A, Korthuis RJ, Sun AY, Sun<br />

GY. Apocynin protects against global cerebral ischemia-reperfusion-induced<br />

oxidative stress <strong>and</strong> injury in the gerbil hippocampus.<br />

Brain Res 1090: 182–189, 2006.<br />

937. Wang X, Takeda S, Mochizuki S, Jindal R, Dhalla NS. Mechanisms<br />

of hydrogen peroxide-induced increase in intracellular calcium<br />

in cardiomyocytes. J Cardiovasc Pharmacol Ther 4: 41–48,<br />

1999.<br />

938. Warburg O. Beobachtungen uber die Oxydationsprozesse im<br />

Seeigelei. Z Physiol Chem 57: 1–16, 1908.<br />

939. Ward PA, Hunninghake GW. Lung inflammation <strong>and</strong> fibrosis.<br />

Am J Respir Crit Care Med 157: 123–129, 1998.<br />

940. Wartenberg M, Hoffmann E, Schwindt H, Grunheck F, Petros<br />

J, Arnold JR, Hescheler J, Sauer H. Reactive oxygen specieslinked<br />

regulation of the multidrug resistance transporter P-glycoprotein<br />

in Nox-1 overexpressing prostate tumor spheroids. FEBS<br />

Lett 579: 4541–4549, 2005.<br />

941. Waypa GB, Ch<strong>and</strong>el NS, Schumacker PT. Model for hypoxic<br />

pulmonary vasoconstriction involving mitochondrial oxygen sensing.<br />

Circ Res 88: 1259–1266, 2001.<br />

942. Wede I, Altindag ZZ, Widner B, Wachter H, Fuchs D. Inhibition<br />

of xanthine oxidase by pterins. Free Radical Res 29: 331–338, 1998.<br />

943. Weissmann N, Kuzkaya N, Fuchs B, Tiyerili V, Schafer RU,<br />

Schutte H, Ghofrani HA, Schermuly RT, Schudt C, Sydykov A,<br />

Egemnazarow B, Seeger W, Grimminger F. Detection of reac-<br />

Physiol Rev VOL 87 JANUARY 2007 www.prv.org<br />

tive oxygen species in isolated, perfused lungs by electron spin<br />

resonance spectroscopy. Respir Res 6: 86, 2005.<br />

944. Weissmann N, Tadic A, Hanze J, Rose F, Winterhalder S,<br />

Nollen M, Schermuly RT, Ghofrani HA, Seeger W, Grimminger<br />

F. Hypoxic vasoconstriction in intact lungs: a role for<br />

NADPH oxidase-derived H 2O 2? Am J Physiol Lung Cell Mol<br />

Physiol 279: L683–L690, 2000.<br />

945. Wendt MC, Daiber A, Kleschyov AL, Mulsch A, Sydow K,<br />

Schulz E, Chen K, Keaney JF Jr, Lassegue B, Walter U, Griendling<br />

KK, Munzel T. Differential effects of diabetes on the expression<br />

of the gp91phox homologues nox1 <strong>and</strong> nox4. Free Radic Biol<br />

Med 39: 381–391, 2005.<br />

946. Wenger RH, Marti HH, Schuerer-Maly CC, Kvietikova I,<br />

Bauer C, Gassmann M, Maly FE. Hypoxic induction of gene<br />

expression in chronic granulomatous disease-derived B-cell lines:<br />

oxygen sensing is independent of the cytochrome b558-containing<br />

nicotinamide adenine dinucleotide phosphate oxidase. Blood 87:<br />

756–761, 1996.<br />

947. Wenzel S, Taimor G, Piper HM, Schluter KD. Redox-sensitive<br />

intermediates mediate angiotensin II-induced p38 MAP kinase activation,<br />

AP-1 binding activity, TGF-beta expression in adult ventricular<br />

cardiomyocytes. FASEB J 15: 2291–2293, 2001.<br />

948. Werner E, Werb Z. Integrins engage mitochondrial function for<br />

signal transduction by a mechanism dependent on Rho GTPases.<br />

J Cell Biol 158: 357–368, 2002.<br />

949. Wheeler MD, Thurman RG. Up-regulation of CD14 in liver caused<br />

by acute ethanol involves oxidant-dependent AP-1 pathway. J Biol<br />

Chem 278: 8435–8441, 2003.<br />

950. Whittington K, Ford WC. Relative contribution of leukocytes <strong>and</strong><br />

of spermatozoa to reactive oxygen species production in human<br />

sperm suspensions. Int J Androl 22: 229–235, 1999.<br />

951. Wientjes FB, Hsuan JJ, Totty NF, Segal AW. p40phox, a third<br />

cytosolic component of the activation complex of the NADPH<br />

oxidase to contain src homology 3 domains. Biochem J 296: 557–<br />

561, 1993.<br />

952. Wilcox CS. Redox regulation of the afferent arteriole <strong>and</strong> tubuloglomerular<br />

feedback. Acta Physiol Sc<strong>and</strong> 179: 217–223, 2003.<br />

953. Wilkinson B, Koenigsknecht-Talboo J, Grommes C, Lee CY,<br />

L<strong>and</strong>reth G. Fibrillar beta-amyloid stimulated intracellular signaling<br />

cascades require Vav for induction of respiratory burst <strong>and</strong><br />

phagocytosis in monocytes <strong>and</strong> microglia. J Biol Chem. In press.<br />

954. Williams MS, Kwon J. T cell receptor stimulation, reactive oxygen<br />

species, cell signaling. Free Radical Biol Med 37: 1144–1151,<br />

2004.<br />

955. Wingler K, Wunsch S, Kreutz R, Rothermund L, Paul M,<br />

Schmidt HH. Upregulation of the vascular NAD(P)H-oxidase isoforms<br />

Nox1 <strong>and</strong> Nox4 by the renin-angiotensin system in vitro <strong>and</strong><br />

in vivo. Free Radical Biol Med 31: 1456–1464, 2001.<br />

956. Winkelstein JA, Marino MC, Johnston RB Jr, Boyle J, Curnutte<br />

J, Gallin JI, Malech HL, Holl<strong>and</strong> SM, Ochs H, Quie P,<br />

Buckley RH, Foster CB, Chanock SJ, Dickler H. Chronic granulomatous<br />

disease. Report on a national registry of 368 patients.<br />

Medicine 79: 155–169, 2000.<br />

957. Wong JL, Creton R, Wessel GM. The oxidative burst at fertilization<br />

is dependent upon activation of the dual oxidase Udx1. Dev<br />

Cell 7: 801–814, 2004.<br />

958. Wood KC, Hebbel RP, Granger DN. Endothelial cell NADPH<br />

oxidase mediates the cerebral microvascular dysfunction in sickle<br />

cell transgenic mice. FASEB J 19: 989–991, 2005.<br />

959. Wrogemann K, Weidemann MJ, Peskar BA, Staudinger H,<br />

Rietschel ET, Fischer H. Chemiluminescence <strong>and</strong> immune cell<br />

activation. I. Early activation of rat thymocytes can be monitored<br />

by chemiluminescence measurements. Eur J Immunol 8: 749–752,<br />

1978.<br />

960. Wu L, Nicholson W, Knobel SM, Steffner RJ, May JM, Piston<br />

DW, Powers AC. Oxidative stress is a mediator of glucose toxicity<br />

in insulin-secreting pancreatic islet cell lines. J Biol Chem 279:<br />

12126–12134, 2004.<br />

961. Wu X, Hardy VE, Joseph JI, Jabbour S, Mahadev K, Zhu L,<br />

Goldstein BJ. Protein-tyrosine phosphatase activity in human<br />

adipocytes is strongly correlated with insulin-stimulated glucose<br />

uptake <strong>and</strong> is a target of insulin-induced oxidative inhibition. Metabolism<br />

52: 705–712, 2003.<br />

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