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Age-Dependent Changes in the Sphingolipid Composition of Mouse CD4(+) T Cell Membranes and Immune Synapses Implicate Glucosylceramides in Age-Related T Cell Dysfunction

To determine whether changes in sphingolipid composition are associated with age-related immune dysfunction, we analyzed the core sphingolipidome (i.e., all of the metabolites through the first headgroup additions) of young and aged CD4(+) T cells. Since sphingolipids influence the biophysical prope...

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Autores principales: Molano, Alberto, Huang, Zhaofeng, Marko, Melissa G., Azzi, Angelo, Wu, Dayong, Wang, Elaine, Kelly, Samuel L., Merrill, Alfred H., Bunnell, Stephen C., Meydani, Simin Nikbin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3482221/
https://www.ncbi.nlm.nih.gov/pubmed/23110086
http://dx.doi.org/10.1371/journal.pone.0047650
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author Molano, Alberto
Huang, Zhaofeng
Marko, Melissa G.
Azzi, Angelo
Wu, Dayong
Wang, Elaine
Kelly, Samuel L.
Merrill, Alfred H.
Bunnell, Stephen C.
Meydani, Simin Nikbin
author_facet Molano, Alberto
Huang, Zhaofeng
Marko, Melissa G.
Azzi, Angelo
Wu, Dayong
Wang, Elaine
Kelly, Samuel L.
Merrill, Alfred H.
Bunnell, Stephen C.
Meydani, Simin Nikbin
author_sort Molano, Alberto
collection PubMed
description To determine whether changes in sphingolipid composition are associated with age-related immune dysfunction, we analyzed the core sphingolipidome (i.e., all of the metabolites through the first headgroup additions) of young and aged CD4(+) T cells. Since sphingolipids influence the biophysical properties of membranes, we evaluated the compositions of immune synapse (IS) and non-IS fractions prepared by magnetic immuno-isolation. Broadly, increased amounts of sphingomyelins, dihydrosphingomyelins and ceramides were found in aged CD4(+) T cells. After normalizing for total sphingolipid content, a statistically significant decrease in the molar fraction of glucosylceramides was evident in both the non-IS and IS fractions of aged T cells. This change was balanced by less dramatic increases in the molar fractions of sphingomyelins and dihydrosphingomyelins in aged CD4(+) T cells. In vitro, the direct or enzymatic enhancement of ceramide levels decreased CD4(+) T cell proliferation without regard for the age of the responding T cells. In contrast, the in vitro inhibition of glucosylceramidase preferentially increased the proliferation of aged CD4(+) T cells. These results suggest that reductions in glucosylceramide abundance contribute to age-related impairments in CD4(+) T cell function.
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spelling pubmed-34822212012-10-29 Age-Dependent Changes in the Sphingolipid Composition of Mouse CD4(+) T Cell Membranes and Immune Synapses Implicate Glucosylceramides in Age-Related T Cell Dysfunction Molano, Alberto Huang, Zhaofeng Marko, Melissa G. Azzi, Angelo Wu, Dayong Wang, Elaine Kelly, Samuel L. Merrill, Alfred H. Bunnell, Stephen C. Meydani, Simin Nikbin PLoS One Research Article To determine whether changes in sphingolipid composition are associated with age-related immune dysfunction, we analyzed the core sphingolipidome (i.e., all of the metabolites through the first headgroup additions) of young and aged CD4(+) T cells. Since sphingolipids influence the biophysical properties of membranes, we evaluated the compositions of immune synapse (IS) and non-IS fractions prepared by magnetic immuno-isolation. Broadly, increased amounts of sphingomyelins, dihydrosphingomyelins and ceramides were found in aged CD4(+) T cells. After normalizing for total sphingolipid content, a statistically significant decrease in the molar fraction of glucosylceramides was evident in both the non-IS and IS fractions of aged T cells. This change was balanced by less dramatic increases in the molar fractions of sphingomyelins and dihydrosphingomyelins in aged CD4(+) T cells. In vitro, the direct or enzymatic enhancement of ceramide levels decreased CD4(+) T cell proliferation without regard for the age of the responding T cells. In contrast, the in vitro inhibition of glucosylceramidase preferentially increased the proliferation of aged CD4(+) T cells. These results suggest that reductions in glucosylceramide abundance contribute to age-related impairments in CD4(+) T cell function. Public Library of Science 2012-10-26 /pmc/articles/PMC3482221/ /pubmed/23110086 http://dx.doi.org/10.1371/journal.pone.0047650 Text en © 2012 Molano 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
Molano, Alberto
Huang, Zhaofeng
Marko, Melissa G.
Azzi, Angelo
Wu, Dayong
Wang, Elaine
Kelly, Samuel L.
Merrill, Alfred H.
Bunnell, Stephen C.
Meydani, Simin Nikbin
Age-Dependent Changes in the Sphingolipid Composition of Mouse CD4(+) T Cell Membranes and Immune Synapses Implicate Glucosylceramides in Age-Related T Cell Dysfunction
title Age-Dependent Changes in the Sphingolipid Composition of Mouse CD4(+) T Cell Membranes and Immune Synapses Implicate Glucosylceramides in Age-Related T Cell Dysfunction
title_full Age-Dependent Changes in the Sphingolipid Composition of Mouse CD4(+) T Cell Membranes and Immune Synapses Implicate Glucosylceramides in Age-Related T Cell Dysfunction
title_fullStr Age-Dependent Changes in the Sphingolipid Composition of Mouse CD4(+) T Cell Membranes and Immune Synapses Implicate Glucosylceramides in Age-Related T Cell Dysfunction
title_full_unstemmed Age-Dependent Changes in the Sphingolipid Composition of Mouse CD4(+) T Cell Membranes and Immune Synapses Implicate Glucosylceramides in Age-Related T Cell Dysfunction
title_short Age-Dependent Changes in the Sphingolipid Composition of Mouse CD4(+) T Cell Membranes and Immune Synapses Implicate Glucosylceramides in Age-Related T Cell Dysfunction
title_sort age-dependent changes in the sphingolipid composition of mouse cd4(+) t cell membranes and immune synapses implicate glucosylceramides in age-related t cell dysfunction
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3482221/
https://www.ncbi.nlm.nih.gov/pubmed/23110086
http://dx.doi.org/10.1371/journal.pone.0047650
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