Scinovex
review Open AccessTop 1% cited

Oxidants as Stimulators of Signal Transduction

Free Radical Biology and Medicine · 1997 · Vol. 22(1-2) · pp. 269–285
Yuichiro SuzukiHenry Jay FormanAlex Sevanian

Abstract

Redox (oxidation-reduction) reactions regulate signal transduction. Oxidants such as superoxide, hydrogen peroxide, hydroxyl radicals, and lipid hydroperoxides (i.e., reactive oxygen species) are now realized as signaling molecules under subtoxic conditions. Nitric oxide is also an example of a redox mediator. Reactive oxygen species induce various biological processes such as gene expression by stimulating signal transduction components such as Ca(2+)-signaling and protein phosphorylation. Various oxidants increase cytosolic Ca2+; however, the exact origin of Ca2+ is controversial. Ca2+ may be released from the endoplasmic reticulum, extracellular space, or mitochondria in response to oxidant-influence on Ca2+ pumps, channels, and transporters. Alternatively, oxidants may release Ca2+ from Ca2+ binding proteins. Various oxidants stimulate tyrosine as well as serine/threonine phosphorylation, and direct stimulation of protein kinases and inhibition of protein phosphatases by oxidants have been proposed as mechanisms. The oxidant-stimulation of the effector molecules such as phospholipase A2 as well as the activation of oxidative stress-responsive transcription factors may also depend on the oxidant-mediated activation of Ca(2+)-signaling and/or protein phosphorylation. In addition to the stimulation of signal transduction by oxidants, the observations that ligand-receptor interactions produce reactive oxygen species and that antioxidants block receptor-mediated signal transduction led to a proposal that reactive oxygen species may be second messengers for transcription factor activation, apoptosis, bone resorption, cell growth, and chemotaxis. Physiological significance of the role of biological oxidants in the regulation of signal transduction as well as the mechanisms of the oxidant-stimulation of signal transduction are discussed.

Neutrophil, Myeloperoxidase and Oxidative MechanismsRedox biology and oxidative stressNitric Oxide and Endothelin EffectsSignal transductionCell biologyChemistryTyrosine phosphorylationSecond messenger systemBiochemistryReactive oxygen speciesPhosphorylationCell signalingBiology

MeSH terms

AnimalsCalciumHumansPhosphorylationReceptors, Cell SurfaceStimulation, ChemicalSecond Messenger SystemsSignal TransductionOxidantsReactive Oxygen Species

Funding

  • Georgetown University
Citations
1,374
FWCI
37.45
field-weighted impact
References
195
Percentile
100%
vs. same field & year
Citations per year
Cited by
The Free Radical Theory of Aging Matures
Physiological Reviews · 1998 · 3,854 citations
Reactive oxygen species, cell signaling, and cell injury
Free Radical Biology and Medicine · 2000 · 1,010 citations
Mammalian Oxygen Sensing, Signalling and Gene Regulation
Journal of Experimental Biology · 2000 · 453 citations
Free radical biology and medicine: it's a gas, man!
American Journal of Physiology-Regulatory, Integrative and Comparative Physiology · 2006 · 465 citations
Nrf2 signaling and cell survival
Toxicology and Applied Pharmacology · 2009 · 396 citations
Extracellular Matrix Metabolism in Diabetic Nephropathy
Journal of the American Society of Nephrology · 2003 · 656 citations
References
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.