Journal
EXPERIMENTAL CELL RESEARCH
Volume 313, Issue 8, Pages 1615-1627Publisher
ELSEVIER INC
DOI: 10.1016/j.yexcr.2007.02.009
Keywords
sphingosine-1-phosphate; sphingolipids; proliferation; invasion; CCN1; glioma; glioblastoma multiforme
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Funding
- NINDS NIH HHS [R01 NS41517, R01 NS041517, R01 NS041517-04] Funding Source: Medline
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Sphingosine-1-phosphate (S1P) is a bioactive lipid that signals through a family of five G-protein-coupled receptors, termed S1P(1-5). S1P stimulates growth and invasiveness of glioma cells, and high expression levels of the enzyme that forms S1P, sphingosine kinase-1, correlate with short survival of glioma patients. In this study we examined the mechanism of SIP stimulation of glioma cell proliferation and invasion by either overexpressing or knocking down, by RNA interference, SIP receptor expression in glioma cell lines. S1P(1), S1P(2) and S1P(3) all contribute positively to S1P-stimulated glioma cell proliferation, with S1P(1) being the major contributor. Stimulation of glioma cell proliferation by these receptors correlated with activation of ERK MAP kinase. S1P(5) blocks glioma cell proliferation, and inhibits ERK activation. S1P(1) and S1P(3) enhance glioma cell migration and invasion. S1P(2) inhibits migration through Rho activation, Rho kinase signaling and stress fiber formation, but unexpectedly, enhances glioma cell invasiveness by stimulating cell adhesion. S1P(2) also potently enhances expression of the matricellular protein CCN1/Cyr61, which has been implicated in tumor cell adhesion, and invasion as well as tumor angiogenesis. A neutralizing antibody to CCN1 blocked S1P(2)-stimulated glioma invasion. Thus, while S1P(2) decreases glioma cell motility, it may enhance invasion through induction of proteins that modulate glioma cell interaction with the extracellular matrix. (c) 2007 Elsevier Inc. All rights reserved.
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