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Open AccessJournal ArticleDOI

Reactive oxygen intermediates as apparently widely used messengers in the activation of the NF-kappa B transcription factor and HIV-1.

R Schreck, +2 more
- 01 Aug 1991 - 
- Vol. 10, Iss: 8, pp 2247-2258
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TLDR
It is shown that micromolar concentrations of H2O2 can induce the expression and replication of HIV‐1 in a human T cell line and suggests that diverse agents thought to activate NF‐kappa B by distinct intracellular pathways might all act through a common mechanism involving the synthesis of ROI.
Abstract
Hydrogen peroxide and oxygen radicals are agents commonly produced during inflammatory processes. In this study, we show that micromolar concentrations of H2O2 can induce the expression and replication of HIV-1 in a human T cell line. The effect is mediated by the NF-kappa B transcription factor which is potently and rapidly activated by an H2O2 treatment of cells from its inactive cytoplasmic form. N-acetyl-L-cysteine (NAC), a well characterized antioxidant which counteracts the effects of reactive oxygen intermediates (ROI) in living cells, prevented the activation of NF-kappa B by H2O2. NAC and other thiol compounds also blocked the activation of NF-kappa B by cycloheximide, double-stranded RNA, calcium ionophore, TNF-alpha, active phorbol ester, interleukin-1, lipopolysaccharide and lectin. This suggests that diverse agents thought to activate NF-kappa B by distinct intracellular pathways might all act through a common mechanism involving the synthesis of ROI. ROI appear to serve as messengers mediating directly or indirectly the release of the inhibitory subunit I kappa B from NF-kappa B.

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Citations
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Journal ArticleDOI

Transcription factors and asthma.

TL;DR: Understanding transcription factors in asthma has given new insights into the complex chronic inflammatory process, the mechanism of action of corticosteroids, and may lead to new approaches to therapy in the future.
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Biphasic regulation of NF-kappa B activity underlies the pro- and anti-inflammatory actions of nitric oxide.

TL;DR: A novel, biphasic effect of NO on NF-κB activity in murine macrophages appears to play a pivotal role in the time course of activation of these immune cells and, by inference, in facilitating the initiation of a defense response against pathogenic stimuli and in its termination to limit tissue damage.
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Hydrogen peroxide-induced apoptosis is CD95-independent, requires the release of mitochondria-derived reactive oxygen species and the activation of NF-κB

TL;DR: This study shows that hydrogen peroxide-induced apoptosis in T-cells did not require tyrosine kinase p56lck, phosphatase CD45, the CD95 receptor and its associated Caspase-8, and that pharmacological and genetic inhibition of transcription factor NF-κB protected cells from hydrogenperoxide-elicited cell death.
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Macrophage inflammatory proteins: biology and role in pulmonary inflammation.

TL;DR: It is likely these chemokines play a significant role in respiratory tract defenses and may contribute to the pathogenesis of inflammatory lung disease.
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Cytokine-mediated Transcriptional Induction of the Human Inducible Nitric Oxide Synthase Gene Requires Both Activator Protein 1 and Nuclear Factor κB-binding Sites

TL;DR: AP-1 and NF-κB are important cis-elements for induction of hiNOS gene transcription in cytokine-mediated induction of human inducible nitric oxide synthase (hiNOS) promoter activity.
References
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A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding

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Accurate transcription initiation by RNA polymerase II in a soluble extract from isolated mammalian nuclei

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Prooxidant states and tumor promotion.

Peter A. Cerutti
- 25 Jan 1985 - 
TL;DR: Prooxidant states can be caused by different classes of agents, including hyperbaric oxygen, radiation, xenobiotic metabolites and Fenton-type reagents, modulators of the cytochrome P-450 electron-transport chain, peroxisome proliferators, inhibitors of the antioxidant defense, and membrane-active agents.
Journal ArticleDOI

I kappa B: a specific inhibitor of the NF-kappa B transcription factor.

TL;DR: The data show the existence of a phorbol ester-responsive regulatory protein that acts by controlling the DNA binding activity and subcellular localization of a transcription factor in cells that do not express immunoglobulin kappa light chain genes.
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