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PMID: 10220556 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Transduction of intracellular calcium signals through G protein-mediated activation of phospholipase C by recombinant sphingosine 1-phosphate receptors.

Molecular pharmacology ·Vol. 55 ·No. 5 ·1999-05-00 ·Pages 787-94

An S, Bleu T, Zheng Y

Abstract

Sphingosine 1-phosphate (S1P) increases intracellular Ca2+ concentration in many cell types, but the signaling mechanism remains uncertain. The recent identification of three closely related seven-transmembrane domain receptors for S1P, termed Edg1, H218, and Edg3, support the extracellular ligand role of S1P and allowed examination of Ca2+ responses mediated specifically by each receptor subtype. To substantiate each subtype in S1P-induced Ca2+ responses and to study the transductional mechanisms, we applied the aequorin luminescence method and the fura-2 fluorescence method in two transfected mammalian cell systems. We showed that H218 and Edg3 were capable of mediating S1P-induced mobilization of intracellular Ca2+ when transiently transfected in human TAg-Jurkat T cells. Ca2+ responses mediated by Edg1 in TAg-Jurkat cells required coexpression of the Gqi5 chimeric G protein that links Gi-coupled receptors to Gq. When H218 and Edg3 were stably expressed in rat HTC4 hepatoma cells, S1P induced Ca2+ responses with nanomolar EC50 values. Edg3, but not H218, elicited a sustained influx of extracellular Ca2+. The coincident formation of inositol phosphates and the complete inhibition of Ca2+ responses by the phospholipase C inhibitor U73122 indicated that H218 and Edg3 mobilized Ca2+ through activation of phospholipase C. Partial inhibition of Ca2+ responses and inositol phosphates formation by pertussis toxin implied that H218 and Edg3 transduce phospholipase C activation and Ca2+ responses only partially through Gi proteins. Although these results did not dismiss that S1P may function as an intracellular second messenger in other settings, they definitively proved that S1P can mobilize Ca2+ as an extracellular ligand for G protein-coupled receptors.

MeSH Terms
Animals Calcium/metabolism Cells, Cultured DNA-Binding Proteins/metabolism Dose-Response Relationship, Drug Enzyme Activation GTP-Binding Proteins/metabolism Humans I-kappa B Proteins Immediate-Early Proteins/metabolism Jurkat Cells NF-KappaB Inhibitor alpha Rats Receptors, Cell Surface/genetics,metabolism Receptors, G-Protein-Coupled Receptors, Lysophospholipid Recombinant Proteins/metabolism Signal Transduction Transfection Type C Phospholipases/metabolism
Chemicals
DNA-Binding Proteins I-kappa B Proteins Immediate-Early Proteins NFKBIA protein, human Nfkbia protein, rat Receptors, Cell Surface Receptors, G-Protein-Coupled Receptors, Lysophospholipid Recombinant Proteins NF-KappaB Inhibitor alpha Type C Phospholipases GTP-Binding Proteins Calcium
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
An S
Department of Medicine, University of California, San Francisco, California 94143-0711, USA. songzhu@itsa.ucsf.edu
Bleu T
Zheng Y
Article Info
Journal
Molecular pharmacology
Abbr.
Mol Pharmacol
ISSN
0026-895X
Published
1999-05-00
Pages
787-94
Language
English
Region
United States
NLM ID
0035623
Subset
IM
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