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Sphingosine-1-phosphate phosphohydrolase in regulation of sphingolipid metabolism and apoptosis
Sphingosine-1-phosphate (S1P) is a bioactive sphingolipid metabolite that regulates diverse biological processes by binding to a family of G protein–coupled receptors or as an intracellular second messenger. Mammalian S1P phosphatase (SPP-1), which degrades S1P to terminate its actions, was recently...
Autores principales: | , , , , |
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Formato: | Texto |
Lenguaje: | English |
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The Rockefeller University Press
2002
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Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2173216/ https://www.ncbi.nlm.nih.gov/pubmed/12235122 http://dx.doi.org/10.1083/jcb.200203123 |
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author | Le Stunff, Hervé Galve-Roperh, Ismael Peterson, Courtney Milstien, Sheldon Spiegel, Sarah |
author_facet | Le Stunff, Hervé Galve-Roperh, Ismael Peterson, Courtney Milstien, Sheldon Spiegel, Sarah |
author_sort | Le Stunff, Hervé |
collection | PubMed |
description | Sphingosine-1-phosphate (S1P) is a bioactive sphingolipid metabolite that regulates diverse biological processes by binding to a family of G protein–coupled receptors or as an intracellular second messenger. Mammalian S1P phosphatase (SPP-1), which degrades S1P to terminate its actions, was recently cloned based on homology to a lipid phosphohydrolase that regulates the levels of phosphorylated sphingoid bases in yeast. Confocal microscopy surprisingly revealed that epitope-tagged SPP-1 is intracellular and colocalized with the ER marker calnexin. Moreover, SPP-1 activity and protein appeared to be mainly enriched in the intracellular membranes with lower expression in the plasma membrane. Treatment of SPP-1 transfectants with S1P markedly increased ceramide levels, predominantly in the intracellular membranes, diminished survival, and enhanced apoptosis. Remarkably, dihydro-S1P, although a good substrate for SPP-1 in situ, did not cause significant ceramide accumulation or increase apoptosis. Ceramide accumulation induced by S1P was completely blocked by fumonisin B1, an inhibitor of ceramide synthase, but only partially reduced by myriocin, an inhibitor of serine palmitoyltransferase, the first committed step in de novo synthesis of ceramide. Furthermore, S1P, but not dihydro-S1P, stimulated incorporation of [(3)H]palmitate, a substrate for both serine palmitoyltransferase and ceramide synthase, into C16-ceramide. Collectively, our results suggest that SPP-1 functions in an unprecedented manner to regulate sphingolipid biosynthesis and is poised to influence cell fate. |
format | Text |
id | pubmed-2173216 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2002 |
publisher | The Rockefeller University Press |
record_format | MEDLINE/PubMed |
spelling | pubmed-21732162008-05-01 Sphingosine-1-phosphate phosphohydrolase in regulation of sphingolipid metabolism and apoptosis Le Stunff, Hervé Galve-Roperh, Ismael Peterson, Courtney Milstien, Sheldon Spiegel, Sarah J Cell Biol Article Sphingosine-1-phosphate (S1P) is a bioactive sphingolipid metabolite that regulates diverse biological processes by binding to a family of G protein–coupled receptors or as an intracellular second messenger. Mammalian S1P phosphatase (SPP-1), which degrades S1P to terminate its actions, was recently cloned based on homology to a lipid phosphohydrolase that regulates the levels of phosphorylated sphingoid bases in yeast. Confocal microscopy surprisingly revealed that epitope-tagged SPP-1 is intracellular and colocalized with the ER marker calnexin. Moreover, SPP-1 activity and protein appeared to be mainly enriched in the intracellular membranes with lower expression in the plasma membrane. Treatment of SPP-1 transfectants with S1P markedly increased ceramide levels, predominantly in the intracellular membranes, diminished survival, and enhanced apoptosis. Remarkably, dihydro-S1P, although a good substrate for SPP-1 in situ, did not cause significant ceramide accumulation or increase apoptosis. Ceramide accumulation induced by S1P was completely blocked by fumonisin B1, an inhibitor of ceramide synthase, but only partially reduced by myriocin, an inhibitor of serine palmitoyltransferase, the first committed step in de novo synthesis of ceramide. Furthermore, S1P, but not dihydro-S1P, stimulated incorporation of [(3)H]palmitate, a substrate for both serine palmitoyltransferase and ceramide synthase, into C16-ceramide. Collectively, our results suggest that SPP-1 functions in an unprecedented manner to regulate sphingolipid biosynthesis and is poised to influence cell fate. The Rockefeller University Press 2002-09-16 /pmc/articles/PMC2173216/ /pubmed/12235122 http://dx.doi.org/10.1083/jcb.200203123 Text en Copyright © 2002, The Rockefeller University Press This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 Unported license, as described at http://creativecommons.org/licenses/by-nc-sa/4.0/). |
spellingShingle | Article Le Stunff, Hervé Galve-Roperh, Ismael Peterson, Courtney Milstien, Sheldon Spiegel, Sarah Sphingosine-1-phosphate phosphohydrolase in regulation of sphingolipid metabolism and apoptosis |
title | Sphingosine-1-phosphate phosphohydrolase in regulation of sphingolipid metabolism and apoptosis |
title_full | Sphingosine-1-phosphate phosphohydrolase in regulation of sphingolipid metabolism and apoptosis |
title_fullStr | Sphingosine-1-phosphate phosphohydrolase in regulation of sphingolipid metabolism and apoptosis |
title_full_unstemmed | Sphingosine-1-phosphate phosphohydrolase in regulation of sphingolipid metabolism and apoptosis |
title_short | Sphingosine-1-phosphate phosphohydrolase in regulation of sphingolipid metabolism and apoptosis |
title_sort | sphingosine-1-phosphate phosphohydrolase in regulation of sphingolipid metabolism and apoptosis |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2173216/ https://www.ncbi.nlm.nih.gov/pubmed/12235122 http://dx.doi.org/10.1083/jcb.200203123 |
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