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CD28 costimulation drives tumor-infiltrating T cell glycolysis to promote inflammation

Metabolic reprogramming dictates the fate and function of stimulated T cells, yet these pathways can be suppressed in T cells in tumor microenvironments. We previously showed that glycolytic and mitochondrial adaptations directly contribute to reducing the effector function of renal cell carcinoma (...

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Autores principales: Beckermann, Kathryn E., Hongo, Rachel, Ye, Xiang, Young, Kirsten, Carbonell, Katie, Healey, Diana C. Contreras, Siska, Peter J., Barone, Sierra, Roe, Caroline E., Smith, Christof C., Vincent, Benjamin G., Mason, Frank M., Irish, Jonathan M., Rathmell, W. Kimryn, Rathmell, Jeffrey C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7455120/
https://www.ncbi.nlm.nih.gov/pubmed/32814710
http://dx.doi.org/10.1172/jci.insight.138729
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author Beckermann, Kathryn E.
Hongo, Rachel
Ye, Xiang
Young, Kirsten
Carbonell, Katie
Healey, Diana C. Contreras
Siska, Peter J.
Barone, Sierra
Roe, Caroline E.
Smith, Christof C.
Vincent, Benjamin G.
Mason, Frank M.
Irish, Jonathan M.
Rathmell, W. Kimryn
Rathmell, Jeffrey C.
author_facet Beckermann, Kathryn E.
Hongo, Rachel
Ye, Xiang
Young, Kirsten
Carbonell, Katie
Healey, Diana C. Contreras
Siska, Peter J.
Barone, Sierra
Roe, Caroline E.
Smith, Christof C.
Vincent, Benjamin G.
Mason, Frank M.
Irish, Jonathan M.
Rathmell, W. Kimryn
Rathmell, Jeffrey C.
author_sort Beckermann, Kathryn E.
collection PubMed
description Metabolic reprogramming dictates the fate and function of stimulated T cells, yet these pathways can be suppressed in T cells in tumor microenvironments. We previously showed that glycolytic and mitochondrial adaptations directly contribute to reducing the effector function of renal cell carcinoma (RCC) CD8(+) tumor-infiltrating lymphocytes (TILs). Here we define the role of these metabolic pathways in the activation and effector functions of CD8(+) RCC TILs. CD28 costimulation plays a key role in augmenting T cell activation and metabolism, and is antagonized by the inhibitory and checkpoint immunotherapy receptors CTLA4 and PD-1. While RCC CD8(+) TILs were activated at a low level when stimulated through the T cell receptor alone, addition of CD28 costimulation greatly enhanced activation, function, and proliferation. CD28 costimulation reprogrammed RCC CD8(+) TIL metabolism with increased glycolysis and mitochondrial oxidative metabolism, possibly through upregulation of GLUT3. Mitochondria also fused to a greater degree, with higher membrane potential and overall mass. These phenotypes were dependent on glucose metabolism, as the glycolytic inhibitor 2-deoxyglucose both prevented changes to mitochondria and suppressed RCC CD8(+) TIL activation and function. These data show that CD28 costimulation can restore RCC CD8(+) TIL metabolism and function through rescue of T cell glycolysis that supports mitochondrial mass and activity.
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spelling pubmed-74551202020-09-01 CD28 costimulation drives tumor-infiltrating T cell glycolysis to promote inflammation Beckermann, Kathryn E. Hongo, Rachel Ye, Xiang Young, Kirsten Carbonell, Katie Healey, Diana C. Contreras Siska, Peter J. Barone, Sierra Roe, Caroline E. Smith, Christof C. Vincent, Benjamin G. Mason, Frank M. Irish, Jonathan M. Rathmell, W. Kimryn Rathmell, Jeffrey C. JCI Insight Research Article Metabolic reprogramming dictates the fate and function of stimulated T cells, yet these pathways can be suppressed in T cells in tumor microenvironments. We previously showed that glycolytic and mitochondrial adaptations directly contribute to reducing the effector function of renal cell carcinoma (RCC) CD8(+) tumor-infiltrating lymphocytes (TILs). Here we define the role of these metabolic pathways in the activation and effector functions of CD8(+) RCC TILs. CD28 costimulation plays a key role in augmenting T cell activation and metabolism, and is antagonized by the inhibitory and checkpoint immunotherapy receptors CTLA4 and PD-1. While RCC CD8(+) TILs were activated at a low level when stimulated through the T cell receptor alone, addition of CD28 costimulation greatly enhanced activation, function, and proliferation. CD28 costimulation reprogrammed RCC CD8(+) TIL metabolism with increased glycolysis and mitochondrial oxidative metabolism, possibly through upregulation of GLUT3. Mitochondria also fused to a greater degree, with higher membrane potential and overall mass. These phenotypes were dependent on glucose metabolism, as the glycolytic inhibitor 2-deoxyglucose both prevented changes to mitochondria and suppressed RCC CD8(+) TIL activation and function. These data show that CD28 costimulation can restore RCC CD8(+) TIL metabolism and function through rescue of T cell glycolysis that supports mitochondrial mass and activity. American Society for Clinical Investigation 2020-08-20 /pmc/articles/PMC7455120/ /pubmed/32814710 http://dx.doi.org/10.1172/jci.insight.138729 Text en © 2020 Beckermann et al. http://creativecommons.org/licenses/by/4.0/ This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Research Article
Beckermann, Kathryn E.
Hongo, Rachel
Ye, Xiang
Young, Kirsten
Carbonell, Katie
Healey, Diana C. Contreras
Siska, Peter J.
Barone, Sierra
Roe, Caroline E.
Smith, Christof C.
Vincent, Benjamin G.
Mason, Frank M.
Irish, Jonathan M.
Rathmell, W. Kimryn
Rathmell, Jeffrey C.
CD28 costimulation drives tumor-infiltrating T cell glycolysis to promote inflammation
title CD28 costimulation drives tumor-infiltrating T cell glycolysis to promote inflammation
title_full CD28 costimulation drives tumor-infiltrating T cell glycolysis to promote inflammation
title_fullStr CD28 costimulation drives tumor-infiltrating T cell glycolysis to promote inflammation
title_full_unstemmed CD28 costimulation drives tumor-infiltrating T cell glycolysis to promote inflammation
title_short CD28 costimulation drives tumor-infiltrating T cell glycolysis to promote inflammation
title_sort cd28 costimulation drives tumor-infiltrating t cell glycolysis to promote inflammation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7455120/
https://www.ncbi.nlm.nih.gov/pubmed/32814710
http://dx.doi.org/10.1172/jci.insight.138729
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