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Activated protein C modulates T-cell metabolism and epigenetic FOXP3 induction via α-ketoglutarate

A direct regulation of adaptive immunity by the coagulation protease activated protein C (aPC) has recently been established. Preincubation of T cells with aPC for 1 hour before transplantation increases FOXP3(+) regulatory T cells (Tregs) and reduces acute graft-versus-host disease (aGVHD) in mice,...

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Autores principales: Gupta, Dheerendra, Elwakiel, Ahmed, Ranjan, Satish, Pandey, Manish Kumar, Krishnan, Shruthi, Ambreen, Saira, Henschler, Reinhard, Rana, Rajiv, Keller, Maria, Ceglarek, Uta, Shahzad, Khurrum, Kohli, Shrey, Isermann, Berend
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The American Society of Hematology 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10471940/
https://www.ncbi.nlm.nih.gov/pubmed/37315174
http://dx.doi.org/10.1182/bloodadvances.2023010083
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author Gupta, Dheerendra
Elwakiel, Ahmed
Ranjan, Satish
Pandey, Manish Kumar
Krishnan, Shruthi
Ambreen, Saira
Henschler, Reinhard
Rana, Rajiv
Keller, Maria
Ceglarek, Uta
Shahzad, Khurrum
Kohli, Shrey
Isermann, Berend
author_facet Gupta, Dheerendra
Elwakiel, Ahmed
Ranjan, Satish
Pandey, Manish Kumar
Krishnan, Shruthi
Ambreen, Saira
Henschler, Reinhard
Rana, Rajiv
Keller, Maria
Ceglarek, Uta
Shahzad, Khurrum
Kohli, Shrey
Isermann, Berend
author_sort Gupta, Dheerendra
collection PubMed
description A direct regulation of adaptive immunity by the coagulation protease activated protein C (aPC) has recently been established. Preincubation of T cells with aPC for 1 hour before transplantation increases FOXP3(+) regulatory T cells (Tregs) and reduces acute graft-versus-host disease (aGVHD) in mice, but the underlying mechanism remains unknown. Because cellular metabolism modulates epigenetic gene regulation and plasticity in T cells, we hypothesized that aPC promotes FOXP3(+) expression by altering T-cell metabolism. To this end, T-cell differentiation was assessed in vitro using mixed lymphocyte reaction or plate-bound α-CD3/CD28 stimulation, and ex vivo using T cells isolated from mice with aGVHD without and with aPC preincubation, or analyses of mice with high plasma aPC levels. In stimulated CD4(+)CD25(−) cells, aPC induces FOXP3 expression while reducing expression of T helper type 1 cell markers. Increased FOXP3 expression is associated with altered epigenetic markers (reduced 5-methylcytosine and H3K27me3) and reduced Foxp3 promoter methylation and activity. These changes are linked to metabolic quiescence, decreased glucose and glutamine uptake, decreased mitochondrial metabolism (reduced tricarboxylic acid metabolites and mitochondrial membrane potential), and decreased intracellular glutamine and α-ketoglutarate levels. In mice with high aPC plasma levels, T-cell subpopulations in the thymus are not altered, reflecting normal T-cell development, whereas FOXP3 expression in splenic T cells is reduced. Glutamine and α-ketoglutarate substitution reverse aPC-mediated FOXP3(+) induction and abolish aPC-mediated suppression of allogeneic T-cell stimulation. These findings show that aPC modulates cellular metabolism in T cells, reducing glutamine and α-ketoglutarate levels, which results in altered epigenetic markers, Foxp3 promoter demethylation and induction of FOXP3 expression, thus favoring a Treg-like phenotype.
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spelling pubmed-104719402023-09-02 Activated protein C modulates T-cell metabolism and epigenetic FOXP3 induction via α-ketoglutarate Gupta, Dheerendra Elwakiel, Ahmed Ranjan, Satish Pandey, Manish Kumar Krishnan, Shruthi Ambreen, Saira Henschler, Reinhard Rana, Rajiv Keller, Maria Ceglarek, Uta Shahzad, Khurrum Kohli, Shrey Isermann, Berend Blood Adv Immunobiology and Immunotherapy A direct regulation of adaptive immunity by the coagulation protease activated protein C (aPC) has recently been established. Preincubation of T cells with aPC for 1 hour before transplantation increases FOXP3(+) regulatory T cells (Tregs) and reduces acute graft-versus-host disease (aGVHD) in mice, but the underlying mechanism remains unknown. Because cellular metabolism modulates epigenetic gene regulation and plasticity in T cells, we hypothesized that aPC promotes FOXP3(+) expression by altering T-cell metabolism. To this end, T-cell differentiation was assessed in vitro using mixed lymphocyte reaction or plate-bound α-CD3/CD28 stimulation, and ex vivo using T cells isolated from mice with aGVHD without and with aPC preincubation, or analyses of mice with high plasma aPC levels. In stimulated CD4(+)CD25(−) cells, aPC induces FOXP3 expression while reducing expression of T helper type 1 cell markers. Increased FOXP3 expression is associated with altered epigenetic markers (reduced 5-methylcytosine and H3K27me3) and reduced Foxp3 promoter methylation and activity. These changes are linked to metabolic quiescence, decreased glucose and glutamine uptake, decreased mitochondrial metabolism (reduced tricarboxylic acid metabolites and mitochondrial membrane potential), and decreased intracellular glutamine and α-ketoglutarate levels. In mice with high aPC plasma levels, T-cell subpopulations in the thymus are not altered, reflecting normal T-cell development, whereas FOXP3 expression in splenic T cells is reduced. Glutamine and α-ketoglutarate substitution reverse aPC-mediated FOXP3(+) induction and abolish aPC-mediated suppression of allogeneic T-cell stimulation. These findings show that aPC modulates cellular metabolism in T cells, reducing glutamine and α-ketoglutarate levels, which results in altered epigenetic markers, Foxp3 promoter demethylation and induction of FOXP3 expression, thus favoring a Treg-like phenotype. The American Society of Hematology 2023-06-16 /pmc/articles/PMC10471940/ /pubmed/37315174 http://dx.doi.org/10.1182/bloodadvances.2023010083 Text en © 2023 by The American Society of Hematology. Licensed under Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0), permitting only noncommercial, nonderivative use with attribution. All other rights reserved. https://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 Immunobiology and Immunotherapy
Gupta, Dheerendra
Elwakiel, Ahmed
Ranjan, Satish
Pandey, Manish Kumar
Krishnan, Shruthi
Ambreen, Saira
Henschler, Reinhard
Rana, Rajiv
Keller, Maria
Ceglarek, Uta
Shahzad, Khurrum
Kohli, Shrey
Isermann, Berend
Activated protein C modulates T-cell metabolism and epigenetic FOXP3 induction via α-ketoglutarate
title Activated protein C modulates T-cell metabolism and epigenetic FOXP3 induction via α-ketoglutarate
title_full Activated protein C modulates T-cell metabolism and epigenetic FOXP3 induction via α-ketoglutarate
title_fullStr Activated protein C modulates T-cell metabolism and epigenetic FOXP3 induction via α-ketoglutarate
title_full_unstemmed Activated protein C modulates T-cell metabolism and epigenetic FOXP3 induction via α-ketoglutarate
title_short Activated protein C modulates T-cell metabolism and epigenetic FOXP3 induction via α-ketoglutarate
title_sort activated protein c modulates t-cell metabolism and epigenetic foxp3 induction via α-ketoglutarate
topic Immunobiology and Immunotherapy
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10471940/
https://www.ncbi.nlm.nih.gov/pubmed/37315174
http://dx.doi.org/10.1182/bloodadvances.2023010083
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