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TLR9-mediated dendritic cell activation uncovers mammalian ganglioside species with specific ceramide backbones that activate invariant natural killer T cells

CD1d-restricted invariant natural killer T (iNKT) cells represent a heterogeneous population of lipid-reactive T cells that are involved in many immune responses, mediated through T-cell receptor (TCR)–dependent and/or independent activation. Although numerous microbial lipid antigens (Ags) have bee...

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Autores principales: Paget, Christophe, Deng, Shenglou, Soulard, Daphnée, Priestman, David A., Speca, Silvia, von Gerichten, Johanna, Speak, Anneliese O., Saroha, Ashish, Pewzner-Jung, Yael, Futerman, Anthony H., Mallevaey, Thierry, Faveeuw, Christelle, Gu, Xiaobo, Platt, Frances M., Sandhoff, Roger, Trottein, François
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6420026/
https://www.ncbi.nlm.nih.gov/pubmed/30822302
http://dx.doi.org/10.1371/journal.pbio.3000169
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author Paget, Christophe
Deng, Shenglou
Soulard, Daphnée
Priestman, David A.
Speca, Silvia
von Gerichten, Johanna
Speak, Anneliese O.
Saroha, Ashish
Pewzner-Jung, Yael
Futerman, Anthony H.
Mallevaey, Thierry
Faveeuw, Christelle
Gu, Xiaobo
Platt, Frances M.
Sandhoff, Roger
Trottein, François
author_facet Paget, Christophe
Deng, Shenglou
Soulard, Daphnée
Priestman, David A.
Speca, Silvia
von Gerichten, Johanna
Speak, Anneliese O.
Saroha, Ashish
Pewzner-Jung, Yael
Futerman, Anthony H.
Mallevaey, Thierry
Faveeuw, Christelle
Gu, Xiaobo
Platt, Frances M.
Sandhoff, Roger
Trottein, François
author_sort Paget, Christophe
collection PubMed
description CD1d-restricted invariant natural killer T (iNKT) cells represent a heterogeneous population of lipid-reactive T cells that are involved in many immune responses, mediated through T-cell receptor (TCR)–dependent and/or independent activation. Although numerous microbial lipid antigens (Ags) have been identified, several lines of evidence have suggested the existence of relevant Ags of endogenous origin. However, the identification of their precise nature as well as the molecular mechanisms involved in their generation are still highly controversial and ill defined. Here, we identified two mammalian gangliosides—namely monosialoganglioside GM3 and disialoganglioside GD3—as endogenous activators for mouse iNKT cells. These glycosphingolipids are found in Toll-like receptor-stimulated dendritic cells (DC) as several species varying in their N-acyl fatty chain composition. Interestingly, their ability to activate iNKT cells is highly dependent on the ceramide backbone structure. Thus, both synthetic GM3 and GD3 comprising a d18:1-C24:1 ceramide backbone were able to activate iNKT cells in a CD1d-dependent manner. GM3 and GD3 are not directly recognized by the iNKT TCR and required the Ag presenting cell intracellular machinery to reveal their antigenicity. We propose a new concept in which iNKT cells can rapidly respond to pre-existing self-molecules after stress-induced structural changes in CD1d-expressing cells. Moreover, these gangliosides conferred partial protection in the context of bacterial infection. Thus, this report identified new biologically relevant lipid self-Ags for iNKT cells.
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spelling pubmed-64200262019-04-01 TLR9-mediated dendritic cell activation uncovers mammalian ganglioside species with specific ceramide backbones that activate invariant natural killer T cells Paget, Christophe Deng, Shenglou Soulard, Daphnée Priestman, David A. Speca, Silvia von Gerichten, Johanna Speak, Anneliese O. Saroha, Ashish Pewzner-Jung, Yael Futerman, Anthony H. Mallevaey, Thierry Faveeuw, Christelle Gu, Xiaobo Platt, Frances M. Sandhoff, Roger Trottein, François PLoS Biol Research Article CD1d-restricted invariant natural killer T (iNKT) cells represent a heterogeneous population of lipid-reactive T cells that are involved in many immune responses, mediated through T-cell receptor (TCR)–dependent and/or independent activation. Although numerous microbial lipid antigens (Ags) have been identified, several lines of evidence have suggested the existence of relevant Ags of endogenous origin. However, the identification of their precise nature as well as the molecular mechanisms involved in their generation are still highly controversial and ill defined. Here, we identified two mammalian gangliosides—namely monosialoganglioside GM3 and disialoganglioside GD3—as endogenous activators for mouse iNKT cells. These glycosphingolipids are found in Toll-like receptor-stimulated dendritic cells (DC) as several species varying in their N-acyl fatty chain composition. Interestingly, their ability to activate iNKT cells is highly dependent on the ceramide backbone structure. Thus, both synthetic GM3 and GD3 comprising a d18:1-C24:1 ceramide backbone were able to activate iNKT cells in a CD1d-dependent manner. GM3 and GD3 are not directly recognized by the iNKT TCR and required the Ag presenting cell intracellular machinery to reveal their antigenicity. We propose a new concept in which iNKT cells can rapidly respond to pre-existing self-molecules after stress-induced structural changes in CD1d-expressing cells. Moreover, these gangliosides conferred partial protection in the context of bacterial infection. Thus, this report identified new biologically relevant lipid self-Ags for iNKT cells. Public Library of Science 2019-03-01 /pmc/articles/PMC6420026/ /pubmed/30822302 http://dx.doi.org/10.1371/journal.pbio.3000169 Text en © 2019 Paget 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Paget, Christophe
Deng, Shenglou
Soulard, Daphnée
Priestman, David A.
Speca, Silvia
von Gerichten, Johanna
Speak, Anneliese O.
Saroha, Ashish
Pewzner-Jung, Yael
Futerman, Anthony H.
Mallevaey, Thierry
Faveeuw, Christelle
Gu, Xiaobo
Platt, Frances M.
Sandhoff, Roger
Trottein, François
TLR9-mediated dendritic cell activation uncovers mammalian ganglioside species with specific ceramide backbones that activate invariant natural killer T cells
title TLR9-mediated dendritic cell activation uncovers mammalian ganglioside species with specific ceramide backbones that activate invariant natural killer T cells
title_full TLR9-mediated dendritic cell activation uncovers mammalian ganglioside species with specific ceramide backbones that activate invariant natural killer T cells
title_fullStr TLR9-mediated dendritic cell activation uncovers mammalian ganglioside species with specific ceramide backbones that activate invariant natural killer T cells
title_full_unstemmed TLR9-mediated dendritic cell activation uncovers mammalian ganglioside species with specific ceramide backbones that activate invariant natural killer T cells
title_short TLR9-mediated dendritic cell activation uncovers mammalian ganglioside species with specific ceramide backbones that activate invariant natural killer T cells
title_sort tlr9-mediated dendritic cell activation uncovers mammalian ganglioside species with specific ceramide backbones that activate invariant natural killer t cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6420026/
https://www.ncbi.nlm.nih.gov/pubmed/30822302
http://dx.doi.org/10.1371/journal.pbio.3000169
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