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Methylation of FOXP3 TSDR Underlies the Impaired Suppressive Function of Tregs from Long-term Belatacept-Treated Kidney Transplant Patients

Regulatory T cells (Tregs) are considered key players in the prevention of allograft rejection in transplanted patients. Belatacept (BLT) is an effective alternative to calcineurin inhibitors that appears to preserve graft survival and function; however, the impact of this drug in the homeostasis of...

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Autores principales: Alvarez Salazar, Evelyn Katy, Cortés-Hernández, Arimelek, Alemán-Muench, Germán Rodrigo, Alberú, Josefina, Rodríguez-Aguilera, Jesús R., Recillas-Targa, Félix, Chagoya de Sánchez, Victoria, Cuevas, Eric, Mancilla-Urrea, Eduardo, Pérez García, María, Mondragón-Ramírez, Guillermo, Vilatobá, Mario, Bostock, Ian, Hernández-Méndez, Erick, De Rungs, David, García-Zepeda, Eduardo A., Soldevila, Gloria
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5334349/
https://www.ncbi.nlm.nih.gov/pubmed/28316600
http://dx.doi.org/10.3389/fimmu.2017.00219
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author Alvarez Salazar, Evelyn Katy
Cortés-Hernández, Arimelek
Alemán-Muench, Germán Rodrigo
Alberú, Josefina
Rodríguez-Aguilera, Jesús R.
Recillas-Targa, Félix
Chagoya de Sánchez, Victoria
Cuevas, Eric
Mancilla-Urrea, Eduardo
Pérez García, María
Mondragón-Ramírez, Guillermo
Vilatobá, Mario
Bostock, Ian
Hernández-Méndez, Erick
De Rungs, David
García-Zepeda, Eduardo A.
Soldevila, Gloria
author_facet Alvarez Salazar, Evelyn Katy
Cortés-Hernández, Arimelek
Alemán-Muench, Germán Rodrigo
Alberú, Josefina
Rodríguez-Aguilera, Jesús R.
Recillas-Targa, Félix
Chagoya de Sánchez, Victoria
Cuevas, Eric
Mancilla-Urrea, Eduardo
Pérez García, María
Mondragón-Ramírez, Guillermo
Vilatobá, Mario
Bostock, Ian
Hernández-Méndez, Erick
De Rungs, David
García-Zepeda, Eduardo A.
Soldevila, Gloria
author_sort Alvarez Salazar, Evelyn Katy
collection PubMed
description Regulatory T cells (Tregs) are considered key players in the prevention of allograft rejection in transplanted patients. Belatacept (BLT) is an effective alternative to calcineurin inhibitors that appears to preserve graft survival and function; however, the impact of this drug in the homeostasis of Tregs in transplanted patients remains controversial. Here, we analyzed the phenotype, function, and the epigenetic status of the Treg-specific demethylated region (TSDR) in FOXP3 of circulating Tregs from long-term kidney transplant patients under BLT or Cyclosporine A treatment. We found a significant reduction in the proportion of CD4(+)CD25(hi)CD127(lo/−)FOXP3(+) T cells in all patients compared to healthy individual (controls). Interestingly, only BLT-treated patients displayed an enrichment of the CD45RA(+) “naïve” Tregs, while the expression of Helios, a marker used to identify stable FOXP3(+) thymic Tregs remained unaffected. Functional analysis demonstrated that Tregs from transplanted patients displayed a significant reduction in their suppressive capacity compared to Tregs from controls, which is associated with decreased levels of FOXP3 and CD25. Analysis of the methylation status of the FOXP3 gene showed that BLT treatment results in methylation of CpG islands within the TSDR, which could be associated with the impaired Treg suppression function. Our data indicate that analysis of circulating Tregs cannot be used as a marker for assessing tolerance toward the allograft in long-term kidney transplant patients. Trial registration number IM103008.
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spelling pubmed-53343492017-03-17 Methylation of FOXP3 TSDR Underlies the Impaired Suppressive Function of Tregs from Long-term Belatacept-Treated Kidney Transplant Patients Alvarez Salazar, Evelyn Katy Cortés-Hernández, Arimelek Alemán-Muench, Germán Rodrigo Alberú, Josefina Rodríguez-Aguilera, Jesús R. Recillas-Targa, Félix Chagoya de Sánchez, Victoria Cuevas, Eric Mancilla-Urrea, Eduardo Pérez García, María Mondragón-Ramírez, Guillermo Vilatobá, Mario Bostock, Ian Hernández-Méndez, Erick De Rungs, David García-Zepeda, Eduardo A. Soldevila, Gloria Front Immunol Immunology Regulatory T cells (Tregs) are considered key players in the prevention of allograft rejection in transplanted patients. Belatacept (BLT) is an effective alternative to calcineurin inhibitors that appears to preserve graft survival and function; however, the impact of this drug in the homeostasis of Tregs in transplanted patients remains controversial. Here, we analyzed the phenotype, function, and the epigenetic status of the Treg-specific demethylated region (TSDR) in FOXP3 of circulating Tregs from long-term kidney transplant patients under BLT or Cyclosporine A treatment. We found a significant reduction in the proportion of CD4(+)CD25(hi)CD127(lo/−)FOXP3(+) T cells in all patients compared to healthy individual (controls). Interestingly, only BLT-treated patients displayed an enrichment of the CD45RA(+) “naïve” Tregs, while the expression of Helios, a marker used to identify stable FOXP3(+) thymic Tregs remained unaffected. Functional analysis demonstrated that Tregs from transplanted patients displayed a significant reduction in their suppressive capacity compared to Tregs from controls, which is associated with decreased levels of FOXP3 and CD25. Analysis of the methylation status of the FOXP3 gene showed that BLT treatment results in methylation of CpG islands within the TSDR, which could be associated with the impaired Treg suppression function. Our data indicate that analysis of circulating Tregs cannot be used as a marker for assessing tolerance toward the allograft in long-term kidney transplant patients. Trial registration number IM103008. Frontiers Media S.A. 2017-03-03 /pmc/articles/PMC5334349/ /pubmed/28316600 http://dx.doi.org/10.3389/fimmu.2017.00219 Text en Copyright © 2017 Alvarez Salazar, Cortés-Hernández, Alemán-Muench, Alberú, Rodríguez-Aguilera, Recillas-Targa, Chagoya de Sánchez, Cuevas, Mancilla-Urrea, Pérez García, Mondragón-Ramírez, Vilatobá, Bostock, Hernández-Méndez, De Rungs, García-Zepeda and Soldevila. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Alvarez Salazar, Evelyn Katy
Cortés-Hernández, Arimelek
Alemán-Muench, Germán Rodrigo
Alberú, Josefina
Rodríguez-Aguilera, Jesús R.
Recillas-Targa, Félix
Chagoya de Sánchez, Victoria
Cuevas, Eric
Mancilla-Urrea, Eduardo
Pérez García, María
Mondragón-Ramírez, Guillermo
Vilatobá, Mario
Bostock, Ian
Hernández-Méndez, Erick
De Rungs, David
García-Zepeda, Eduardo A.
Soldevila, Gloria
Methylation of FOXP3 TSDR Underlies the Impaired Suppressive Function of Tregs from Long-term Belatacept-Treated Kidney Transplant Patients
title Methylation of FOXP3 TSDR Underlies the Impaired Suppressive Function of Tregs from Long-term Belatacept-Treated Kidney Transplant Patients
title_full Methylation of FOXP3 TSDR Underlies the Impaired Suppressive Function of Tregs from Long-term Belatacept-Treated Kidney Transplant Patients
title_fullStr Methylation of FOXP3 TSDR Underlies the Impaired Suppressive Function of Tregs from Long-term Belatacept-Treated Kidney Transplant Patients
title_full_unstemmed Methylation of FOXP3 TSDR Underlies the Impaired Suppressive Function of Tregs from Long-term Belatacept-Treated Kidney Transplant Patients
title_short Methylation of FOXP3 TSDR Underlies the Impaired Suppressive Function of Tregs from Long-term Belatacept-Treated Kidney Transplant Patients
title_sort methylation of foxp3 tsdr underlies the impaired suppressive function of tregs from long-term belatacept-treated kidney transplant patients
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5334349/
https://www.ncbi.nlm.nih.gov/pubmed/28316600
http://dx.doi.org/10.3389/fimmu.2017.00219
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