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Erythrocytes efficiently utilize exogenous sphingosines for S1P synthesis and export via Mfsd2b

Sphingosine-1-phosphate (S1P) is a potent lipid mediator that exerts its activity via activation of five different G protein–coupled receptors, designated as S1P1–5. This potent lipid mediator is synthesized from the sphingosine precursor by two sphingosine kinases (SphK1 and 2) and must be exported...

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Autores principales: Nguyen, Toan Q., Vu, Thiet Minh, Tukijan, Farhana, Muralidharan, Sneha, Foo, Juat Chin, Li Chin, Jasmine Fei, Hasan, Zafrul, Torta, Federico, Nguyen, Long N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7948482/
https://www.ncbi.nlm.nih.gov/pubmed/33334894
http://dx.doi.org/10.1074/jbc.RA120.012941
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author Nguyen, Toan Q.
Vu, Thiet Minh
Tukijan, Farhana
Muralidharan, Sneha
Foo, Juat Chin
Li Chin, Jasmine Fei
Hasan, Zafrul
Torta, Federico
Nguyen, Long N.
author_facet Nguyen, Toan Q.
Vu, Thiet Minh
Tukijan, Farhana
Muralidharan, Sneha
Foo, Juat Chin
Li Chin, Jasmine Fei
Hasan, Zafrul
Torta, Federico
Nguyen, Long N.
author_sort Nguyen, Toan Q.
collection PubMed
description Sphingosine-1-phosphate (S1P) is a potent lipid mediator that exerts its activity via activation of five different G protein–coupled receptors, designated as S1P1–5. This potent lipid mediator is synthesized from the sphingosine precursor by two sphingosine kinases (SphK1 and 2) and must be exported to exert extracellular signaling functions. We recently identified Mfsd2b as the S1P transporter in the hematopoietic system. However, the sources of sphingosine for S1P synthesis and the transport mechanism of Mfsd2b in erythrocytes remain to be determined. Here, we show that erythrocytes efficiently take up exogenous sphingosine and that a de novo synthesis pathway in part provides sphingosines to erythrocytes. The uptake of sphingosine in erythrocytes is facilitated by the activity of SphK1. By converting sphingosine into S1P, SphK1 indirectly increases the influx of sphingosine, a process that is irreversible in erythrocytes. Our results explain for the abnormally high amount of sphingosine accumulation in Mfsd2b knockout erythrocytes. Furthermore, we show that Mfsd2b utilizes a proton gradient to facilitate the release of S1P. The negatively charged residues D95 and T157 are essential for Mfsd2b transport activity. Of interest, we also discovered an S1P analog that inhibits S1P export from erythrocytes, providing evidence that sphingosine analogs can be used to inhibit S1P export by Mfsd2b. Collectively, our results highlight that erythrocytes are efficient in sphingosine uptake for S1P production and the release of S1P is dependent on Mfsd2b functions.
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spelling pubmed-79484822021-03-19 Erythrocytes efficiently utilize exogenous sphingosines for S1P synthesis and export via Mfsd2b Nguyen, Toan Q. Vu, Thiet Minh Tukijan, Farhana Muralidharan, Sneha Foo, Juat Chin Li Chin, Jasmine Fei Hasan, Zafrul Torta, Federico Nguyen, Long N. J Biol Chem Research Article Sphingosine-1-phosphate (S1P) is a potent lipid mediator that exerts its activity via activation of five different G protein–coupled receptors, designated as S1P1–5. This potent lipid mediator is synthesized from the sphingosine precursor by two sphingosine kinases (SphK1 and 2) and must be exported to exert extracellular signaling functions. We recently identified Mfsd2b as the S1P transporter in the hematopoietic system. However, the sources of sphingosine for S1P synthesis and the transport mechanism of Mfsd2b in erythrocytes remain to be determined. Here, we show that erythrocytes efficiently take up exogenous sphingosine and that a de novo synthesis pathway in part provides sphingosines to erythrocytes. The uptake of sphingosine in erythrocytes is facilitated by the activity of SphK1. By converting sphingosine into S1P, SphK1 indirectly increases the influx of sphingosine, a process that is irreversible in erythrocytes. Our results explain for the abnormally high amount of sphingosine accumulation in Mfsd2b knockout erythrocytes. Furthermore, we show that Mfsd2b utilizes a proton gradient to facilitate the release of S1P. The negatively charged residues D95 and T157 are essential for Mfsd2b transport activity. Of interest, we also discovered an S1P analog that inhibits S1P export from erythrocytes, providing evidence that sphingosine analogs can be used to inhibit S1P export by Mfsd2b. Collectively, our results highlight that erythrocytes are efficient in sphingosine uptake for S1P production and the release of S1P is dependent on Mfsd2b functions. American Society for Biochemistry and Molecular Biology 2021-01-23 /pmc/articles/PMC7948482/ /pubmed/33334894 http://dx.doi.org/10.1074/jbc.RA120.012941 Text en © 2020 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Nguyen, Toan Q.
Vu, Thiet Minh
Tukijan, Farhana
Muralidharan, Sneha
Foo, Juat Chin
Li Chin, Jasmine Fei
Hasan, Zafrul
Torta, Federico
Nguyen, Long N.
Erythrocytes efficiently utilize exogenous sphingosines for S1P synthesis and export via Mfsd2b
title Erythrocytes efficiently utilize exogenous sphingosines for S1P synthesis and export via Mfsd2b
title_full Erythrocytes efficiently utilize exogenous sphingosines for S1P synthesis and export via Mfsd2b
title_fullStr Erythrocytes efficiently utilize exogenous sphingosines for S1P synthesis and export via Mfsd2b
title_full_unstemmed Erythrocytes efficiently utilize exogenous sphingosines for S1P synthesis and export via Mfsd2b
title_short Erythrocytes efficiently utilize exogenous sphingosines for S1P synthesis and export via Mfsd2b
title_sort erythrocytes efficiently utilize exogenous sphingosines for s1p synthesis and export via mfsd2b
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7948482/
https://www.ncbi.nlm.nih.gov/pubmed/33334894
http://dx.doi.org/10.1074/jbc.RA120.012941
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