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Dynamic Cardiolipin Synthesis Is Required for CD8(+) T Cell Immunity

Mitochondria constantly adapt to the metabolic needs of a cell. This mitochondrial plasticity is critical to T cells, which modulate metabolism depending on antigen-driven signals and environment. We show here that de novo synthesis of the mitochondrial membrane-specific lipid cardiolipin maintains...

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Autores principales: Corrado, Mauro, Edwards-Hicks, Joy, Villa, Matteo, Flachsmann, Lea J., Sanin, David E., Jacobs, Maaike, Baixauli, Francesc, Stanczak, Michal, Anderson, Eve, Azuma, Mai, Quintana, Andrea, Curtis, Jonathan D., Clapes, Thomas, Grzes, Katarzyna M., Kabat, Agnieszka M., Kyle, Ryan, Patterson, Annette E., Geltink, Ramon Klein, Amulic, Borko, Steward, Colin G., Strathdee, Douglas, Trompouki, Eirini, O’Sullivan, David, Pearce, Edward J., Pearce, Erika L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7721104/
https://www.ncbi.nlm.nih.gov/pubmed/33264603
http://dx.doi.org/10.1016/j.cmet.2020.11.003
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author Corrado, Mauro
Edwards-Hicks, Joy
Villa, Matteo
Flachsmann, Lea J.
Sanin, David E.
Jacobs, Maaike
Baixauli, Francesc
Stanczak, Michal
Anderson, Eve
Azuma, Mai
Quintana, Andrea
Curtis, Jonathan D.
Clapes, Thomas
Grzes, Katarzyna M.
Kabat, Agnieszka M.
Kyle, Ryan
Patterson, Annette E.
Geltink, Ramon Klein
Amulic, Borko
Steward, Colin G.
Strathdee, Douglas
Trompouki, Eirini
O’Sullivan, David
Pearce, Edward J.
Pearce, Erika L.
author_facet Corrado, Mauro
Edwards-Hicks, Joy
Villa, Matteo
Flachsmann, Lea J.
Sanin, David E.
Jacobs, Maaike
Baixauli, Francesc
Stanczak, Michal
Anderson, Eve
Azuma, Mai
Quintana, Andrea
Curtis, Jonathan D.
Clapes, Thomas
Grzes, Katarzyna M.
Kabat, Agnieszka M.
Kyle, Ryan
Patterson, Annette E.
Geltink, Ramon Klein
Amulic, Borko
Steward, Colin G.
Strathdee, Douglas
Trompouki, Eirini
O’Sullivan, David
Pearce, Edward J.
Pearce, Erika L.
author_sort Corrado, Mauro
collection PubMed
description Mitochondria constantly adapt to the metabolic needs of a cell. This mitochondrial plasticity is critical to T cells, which modulate metabolism depending on antigen-driven signals and environment. We show here that de novo synthesis of the mitochondrial membrane-specific lipid cardiolipin maintains CD8(+) T cell function. T cells deficient for the cardiolipin-synthesizing enzyme PTPMT1 had reduced cardiolipin and responded poorly to antigen because basal cardiolipin levels were required for activation. However, neither de novo cardiolipin synthesis, nor its Tafazzin-dependent remodeling, was needed for T cell activation. In contrast, PTPMT1-dependent cardiolipin synthesis was vital when mitochondrial fitness was required, most notably during memory T cell differentiation or nutrient stress. We also found CD8(+) T cell defects in a small cohort of patients with Barth syndrome, where TAFAZZIN is mutated, and in a Tafazzin-deficient mouse model. Thus, the dynamic regulation of a single mitochondrial lipid is crucial for CD8(+) T cell immunity.
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spelling pubmed-77211042020-12-11 Dynamic Cardiolipin Synthesis Is Required for CD8(+) T Cell Immunity Corrado, Mauro Edwards-Hicks, Joy Villa, Matteo Flachsmann, Lea J. Sanin, David E. Jacobs, Maaike Baixauli, Francesc Stanczak, Michal Anderson, Eve Azuma, Mai Quintana, Andrea Curtis, Jonathan D. Clapes, Thomas Grzes, Katarzyna M. Kabat, Agnieszka M. Kyle, Ryan Patterson, Annette E. Geltink, Ramon Klein Amulic, Borko Steward, Colin G. Strathdee, Douglas Trompouki, Eirini O’Sullivan, David Pearce, Edward J. Pearce, Erika L. Cell Metab Article Mitochondria constantly adapt to the metabolic needs of a cell. This mitochondrial plasticity is critical to T cells, which modulate metabolism depending on antigen-driven signals and environment. We show here that de novo synthesis of the mitochondrial membrane-specific lipid cardiolipin maintains CD8(+) T cell function. T cells deficient for the cardiolipin-synthesizing enzyme PTPMT1 had reduced cardiolipin and responded poorly to antigen because basal cardiolipin levels were required for activation. However, neither de novo cardiolipin synthesis, nor its Tafazzin-dependent remodeling, was needed for T cell activation. In contrast, PTPMT1-dependent cardiolipin synthesis was vital when mitochondrial fitness was required, most notably during memory T cell differentiation or nutrient stress. We also found CD8(+) T cell defects in a small cohort of patients with Barth syndrome, where TAFAZZIN is mutated, and in a Tafazzin-deficient mouse model. Thus, the dynamic regulation of a single mitochondrial lipid is crucial for CD8(+) T cell immunity. Cell Press 2020-12-01 /pmc/articles/PMC7721104/ /pubmed/33264603 http://dx.doi.org/10.1016/j.cmet.2020.11.003 Text en © 2020 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Corrado, Mauro
Edwards-Hicks, Joy
Villa, Matteo
Flachsmann, Lea J.
Sanin, David E.
Jacobs, Maaike
Baixauli, Francesc
Stanczak, Michal
Anderson, Eve
Azuma, Mai
Quintana, Andrea
Curtis, Jonathan D.
Clapes, Thomas
Grzes, Katarzyna M.
Kabat, Agnieszka M.
Kyle, Ryan
Patterson, Annette E.
Geltink, Ramon Klein
Amulic, Borko
Steward, Colin G.
Strathdee, Douglas
Trompouki, Eirini
O’Sullivan, David
Pearce, Edward J.
Pearce, Erika L.
Dynamic Cardiolipin Synthesis Is Required for CD8(+) T Cell Immunity
title Dynamic Cardiolipin Synthesis Is Required for CD8(+) T Cell Immunity
title_full Dynamic Cardiolipin Synthesis Is Required for CD8(+) T Cell Immunity
title_fullStr Dynamic Cardiolipin Synthesis Is Required for CD8(+) T Cell Immunity
title_full_unstemmed Dynamic Cardiolipin Synthesis Is Required for CD8(+) T Cell Immunity
title_short Dynamic Cardiolipin Synthesis Is Required for CD8(+) T Cell Immunity
title_sort dynamic cardiolipin synthesis is required for cd8(+) t cell immunity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7721104/
https://www.ncbi.nlm.nih.gov/pubmed/33264603
http://dx.doi.org/10.1016/j.cmet.2020.11.003
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