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PMID: 15104185 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Role of TRP channels in oxidative stress.

Novartis Foundation symposium ·Vol. 258 ·2004-00-00 ·Pages 222-30; discussion 231-5, 263-6

Groschner K, Rosker C, Lukas M

Abstract

Increasing evidence suggests a pivotal role of reactive oxygen species (ROS) as well as reactive nitrogen species (RNS) in human pathophysiology. A typical target of ROS/RNS signalling is Ca2+ channels which mediate both long-term as well as acute cellular responses to oxidative stress. We have previously reported that cation channels related to the Drosophila transient receptor potential gene product (TRPC proteins) are likely to serve as redox sensors in the vascular endothelium, and demonstrated that TRPC3 expression is a determinant of the nitric oxide sensitivity of store-operated Ca2+ signalling. Experiments with TRPC species overexpressed in HEK293 cells confirmed that TRPC3 and TRPC4 are able to form redox sensitive cation channels. A key mechanism involved in redox activation of TRPC3 appears to be ROS-induced promotion of protein tyrosine phosphorylation and stimulation of phospholipase C activity. In addition, oxidative stress-induced disruption of caveolin 1-rich lipid raft domains, which interfere with functional TRPC channels, is likely to contribute to redox modulation of TRP proteins and to oxidative stress-induced changes in cellular Ca2+ signalling. Taken together, our data suggest TRPC species serve as a link between cellular redox state and Ca2+ homeostasis. Thus, modulation of these cellular redox sensors may offer unique opportunities for therapeutic interventions.

MeSH Terms
Calcium/physiology Calcium Signaling/physiology Caveolin 1 Caveolins/metabolism Cells, Cultured Cholesterol/metabolism Endothelial Cells/metabolism Humans Ion Channels/chemistry,genetics,metabolism Oxidation-Reduction Oxidative Stress Peroxides/pharmacology Sodium/metabolism TRPC Cation Channels Type C Phospholipases/pharmacology
Chemicals
CAV1 protein, human Caveolin 1 Caveolins Ion Channels Peroxides TRPC Cation Channels TRPC3 cation channel Cholesterol Sodium Type C Phospholipases Calcium
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Groschner Klaus
Department of Pharmacology and Toxicology, Karl-Franzens-University, University of Graz, Universitaetsplatz 2, A -8010 Graz, Austria.
Rosker Christian
Lukas Michael
Article Info
Journal
Novartis Foundation symposium
Abbr.
Novartis Found Symp
ISSN
1528-2511
Published
2004-00-00
Pages
222-30; discussion 231-5, 263-6
Language
English
Region
England
NLM ID
9807767
Subset
IM
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