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Sphingosine Kinase Activity Is Not Required for Tumor Cell Viability

Sphingosine kinases (SPHKs) are enzymes that phosphorylate the lipid sphingosine, leading to the formation of sphingosine-1-phosphate (S1P). In addition to the well established role of extracellular S1P as a mitogen and potent chemoattractant, SPHK activity has been postulated to be an important int...

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Autores principales: Rex, Karen, Jeffries, Shawn, Brown, Matthew L., Carlson, Timothy, Coxon, Angela, Fajardo, Flordeliza, Frank, Brendon, Gustin, Darin, Kamb, Alexander, Kassner, Paul D., Li, Shyun, Li, Yihong, Morgenstern, Kurt, Plant, Matthew, Quon, Kim, Ruefli-Brasse, Astrid, Schmidt, Joanna, Swearingen, Elissa, Walker, Nigel, Wang, Zhulun, Watson, J. E. Vivienne, Wickramasinghe, Dineli, Wong, Mariwil, Xu, Guifen, Wesche, Holger
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3702540/
https://www.ncbi.nlm.nih.gov/pubmed/23861887
http://dx.doi.org/10.1371/journal.pone.0068328
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author Rex, Karen
Jeffries, Shawn
Brown, Matthew L.
Carlson, Timothy
Coxon, Angela
Fajardo, Flordeliza
Frank, Brendon
Gustin, Darin
Kamb, Alexander
Kassner, Paul D.
Li, Shyun
Li, Yihong
Morgenstern, Kurt
Plant, Matthew
Quon, Kim
Ruefli-Brasse, Astrid
Schmidt, Joanna
Swearingen, Elissa
Walker, Nigel
Wang, Zhulun
Watson, J. E. Vivienne
Wickramasinghe, Dineli
Wong, Mariwil
Xu, Guifen
Wesche, Holger
author_facet Rex, Karen
Jeffries, Shawn
Brown, Matthew L.
Carlson, Timothy
Coxon, Angela
Fajardo, Flordeliza
Frank, Brendon
Gustin, Darin
Kamb, Alexander
Kassner, Paul D.
Li, Shyun
Li, Yihong
Morgenstern, Kurt
Plant, Matthew
Quon, Kim
Ruefli-Brasse, Astrid
Schmidt, Joanna
Swearingen, Elissa
Walker, Nigel
Wang, Zhulun
Watson, J. E. Vivienne
Wickramasinghe, Dineli
Wong, Mariwil
Xu, Guifen
Wesche, Holger
author_sort Rex, Karen
collection PubMed
description Sphingosine kinases (SPHKs) are enzymes that phosphorylate the lipid sphingosine, leading to the formation of sphingosine-1-phosphate (S1P). In addition to the well established role of extracellular S1P as a mitogen and potent chemoattractant, SPHK activity has been postulated to be an important intracellular regulator of apoptosis. According to the proposed rheostat theory, SPHK activity shifts the intracellular balance from the pro-apoptotic sphingolipids ceramide and sphingosine to the mitogenic S1P, thereby determining the susceptibility of a cell to apoptotic stress. Despite numerous publications with supporting evidence, a clear experimental confirmation of the impact of this mechanism on tumor cell viability in vitro and in vivo has been hampered by the lack of suitable tool reagents. Utilizing a structure based design approach, we developed potent and specific SPHK1/2 inhibitors. These compounds completely inhibited intracellular S1P production in human cells and attenuated vascular permeability in mice, but did not lead to reduced tumor cell growth in vitro or in vivo. In addition, siRNA experiments targeting either SPHK1 or SPHK2 in a large panel of cell lines failed to demonstrate any statistically significant effects on cell viability. These results show that the SPHK rheostat does not play a major role in tumor cell viability, and that SPHKs might not be attractive targets for pharmacological intervention in the area of oncology.
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spelling pubmed-37025402013-07-16 Sphingosine Kinase Activity Is Not Required for Tumor Cell Viability Rex, Karen Jeffries, Shawn Brown, Matthew L. Carlson, Timothy Coxon, Angela Fajardo, Flordeliza Frank, Brendon Gustin, Darin Kamb, Alexander Kassner, Paul D. Li, Shyun Li, Yihong Morgenstern, Kurt Plant, Matthew Quon, Kim Ruefli-Brasse, Astrid Schmidt, Joanna Swearingen, Elissa Walker, Nigel Wang, Zhulun Watson, J. E. Vivienne Wickramasinghe, Dineli Wong, Mariwil Xu, Guifen Wesche, Holger PLoS One Research Article Sphingosine kinases (SPHKs) are enzymes that phosphorylate the lipid sphingosine, leading to the formation of sphingosine-1-phosphate (S1P). In addition to the well established role of extracellular S1P as a mitogen and potent chemoattractant, SPHK activity has been postulated to be an important intracellular regulator of apoptosis. According to the proposed rheostat theory, SPHK activity shifts the intracellular balance from the pro-apoptotic sphingolipids ceramide and sphingosine to the mitogenic S1P, thereby determining the susceptibility of a cell to apoptotic stress. Despite numerous publications with supporting evidence, a clear experimental confirmation of the impact of this mechanism on tumor cell viability in vitro and in vivo has been hampered by the lack of suitable tool reagents. Utilizing a structure based design approach, we developed potent and specific SPHK1/2 inhibitors. These compounds completely inhibited intracellular S1P production in human cells and attenuated vascular permeability in mice, but did not lead to reduced tumor cell growth in vitro or in vivo. In addition, siRNA experiments targeting either SPHK1 or SPHK2 in a large panel of cell lines failed to demonstrate any statistically significant effects on cell viability. These results show that the SPHK rheostat does not play a major role in tumor cell viability, and that SPHKs might not be attractive targets for pharmacological intervention in the area of oncology. Public Library of Science 2013-07-05 /pmc/articles/PMC3702540/ /pubmed/23861887 http://dx.doi.org/10.1371/journal.pone.0068328 Text en © 2013 Rex et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Rex, Karen
Jeffries, Shawn
Brown, Matthew L.
Carlson, Timothy
Coxon, Angela
Fajardo, Flordeliza
Frank, Brendon
Gustin, Darin
Kamb, Alexander
Kassner, Paul D.
Li, Shyun
Li, Yihong
Morgenstern, Kurt
Plant, Matthew
Quon, Kim
Ruefli-Brasse, Astrid
Schmidt, Joanna
Swearingen, Elissa
Walker, Nigel
Wang, Zhulun
Watson, J. E. Vivienne
Wickramasinghe, Dineli
Wong, Mariwil
Xu, Guifen
Wesche, Holger
Sphingosine Kinase Activity Is Not Required for Tumor Cell Viability
title Sphingosine Kinase Activity Is Not Required for Tumor Cell Viability
title_full Sphingosine Kinase Activity Is Not Required for Tumor Cell Viability
title_fullStr Sphingosine Kinase Activity Is Not Required for Tumor Cell Viability
title_full_unstemmed Sphingosine Kinase Activity Is Not Required for Tumor Cell Viability
title_short Sphingosine Kinase Activity Is Not Required for Tumor Cell Viability
title_sort sphingosine kinase activity is not required for tumor cell viability
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3702540/
https://www.ncbi.nlm.nih.gov/pubmed/23861887
http://dx.doi.org/10.1371/journal.pone.0068328
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