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P2X7 receptor drives Th1 cell differentiation and controls the follicular helper T cell population to protect against Plasmodium chabaudi malaria

A complete understanding of the mechanisms underlying the acquisition of protective immunity is crucial to improve vaccine strategies to eradicate malaria. However, it is still unclear whether recognition of damage signals influences the immune response to Plasmodium infection. Adenosine triphosphat...

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Autores principales: de Salles, Érika Machado, de Menezes, Maria Nogueira, Siqueira, Renan, Borges da Silva, Henrique, Amaral, Eduardo Pinheiro, Castillo-Méndez, Sheyla Inés, Cunha, Isabela, Cassado, Alexandra dos Anjos, Vieira, Flávia Sarmento, Olivieri, David Nicholas, Tadokoro, Carlos Eduardo, Alvarez, José Maria, Coutinho-Silva, Robson, D’Império-Lima, Maria Regina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5597262/
https://www.ncbi.nlm.nih.gov/pubmed/28859168
http://dx.doi.org/10.1371/journal.ppat.1006595
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author de Salles, Érika Machado
de Menezes, Maria Nogueira
Siqueira, Renan
Borges da Silva, Henrique
Amaral, Eduardo Pinheiro
Castillo-Méndez, Sheyla Inés
Cunha, Isabela
Cassado, Alexandra dos Anjos
Vieira, Flávia Sarmento
Olivieri, David Nicholas
Tadokoro, Carlos Eduardo
Alvarez, José Maria
Coutinho-Silva, Robson
D’Império-Lima, Maria Regina
author_facet de Salles, Érika Machado
de Menezes, Maria Nogueira
Siqueira, Renan
Borges da Silva, Henrique
Amaral, Eduardo Pinheiro
Castillo-Méndez, Sheyla Inés
Cunha, Isabela
Cassado, Alexandra dos Anjos
Vieira, Flávia Sarmento
Olivieri, David Nicholas
Tadokoro, Carlos Eduardo
Alvarez, José Maria
Coutinho-Silva, Robson
D’Império-Lima, Maria Regina
author_sort de Salles, Érika Machado
collection PubMed
description A complete understanding of the mechanisms underlying the acquisition of protective immunity is crucial to improve vaccine strategies to eradicate malaria. However, it is still unclear whether recognition of damage signals influences the immune response to Plasmodium infection. Adenosine triphosphate (ATP) accumulates in infected erythrocytes and is released into the extracellular milieu through ion channels in the erythrocyte membrane or upon erythrocyte rupture. The P2X7 receptor senses extracellular ATP and induces CD4 T cell activation and death. Here we show that P2X7 receptor promotes T helper 1 (Th1) cell differentiation to the detriment of follicular T helper (Tfh) cells during blood-stage Plasmodium chabaudi malaria. The P2X7 receptor was activated in CD4 T cells following the rupture of infected erythrocytes and these cells became highly responsive to ATP during acute infection. Moreover, mice lacking the P2X7 receptor had increased susceptibility to infection, which correlated with impaired Th1 cell differentiation. Accordingly, IL-2 and IFNγ secretion, as well as T-bet expression, critically depended on P2X7 signaling in CD4 T cells. Additionally, P2X7 receptor controlled the splenic Tfh cell population in infected mice by promoting apoptotic-like cell death. Finally, the P2X7 receptor was required to generate a balanced Th1/Tfh cell population with an improved ability to transfer parasite protection to CD4-deficient mice. This study provides a new insight into malaria immunology by showing the importance of P2X7 receptor in controlling the fine-tuning between Th1 and Tfh cell differentiation during P. chabaudi infection and thus in disease outcome.
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spelling pubmed-55972622017-09-15 P2X7 receptor drives Th1 cell differentiation and controls the follicular helper T cell population to protect against Plasmodium chabaudi malaria de Salles, Érika Machado de Menezes, Maria Nogueira Siqueira, Renan Borges da Silva, Henrique Amaral, Eduardo Pinheiro Castillo-Méndez, Sheyla Inés Cunha, Isabela Cassado, Alexandra dos Anjos Vieira, Flávia Sarmento Olivieri, David Nicholas Tadokoro, Carlos Eduardo Alvarez, José Maria Coutinho-Silva, Robson D’Império-Lima, Maria Regina PLoS Pathog Research Article A complete understanding of the mechanisms underlying the acquisition of protective immunity is crucial to improve vaccine strategies to eradicate malaria. However, it is still unclear whether recognition of damage signals influences the immune response to Plasmodium infection. Adenosine triphosphate (ATP) accumulates in infected erythrocytes and is released into the extracellular milieu through ion channels in the erythrocyte membrane or upon erythrocyte rupture. The P2X7 receptor senses extracellular ATP and induces CD4 T cell activation and death. Here we show that P2X7 receptor promotes T helper 1 (Th1) cell differentiation to the detriment of follicular T helper (Tfh) cells during blood-stage Plasmodium chabaudi malaria. The P2X7 receptor was activated in CD4 T cells following the rupture of infected erythrocytes and these cells became highly responsive to ATP during acute infection. Moreover, mice lacking the P2X7 receptor had increased susceptibility to infection, which correlated with impaired Th1 cell differentiation. Accordingly, IL-2 and IFNγ secretion, as well as T-bet expression, critically depended on P2X7 signaling in CD4 T cells. Additionally, P2X7 receptor controlled the splenic Tfh cell population in infected mice by promoting apoptotic-like cell death. Finally, the P2X7 receptor was required to generate a balanced Th1/Tfh cell population with an improved ability to transfer parasite protection to CD4-deficient mice. This study provides a new insight into malaria immunology by showing the importance of P2X7 receptor in controlling the fine-tuning between Th1 and Tfh cell differentiation during P. chabaudi infection and thus in disease outcome. Public Library of Science 2017-08-31 /pmc/articles/PMC5597262/ /pubmed/28859168 http://dx.doi.org/10.1371/journal.ppat.1006595 Text en © 2017 Salles 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
de Salles, Érika Machado
de Menezes, Maria Nogueira
Siqueira, Renan
Borges da Silva, Henrique
Amaral, Eduardo Pinheiro
Castillo-Méndez, Sheyla Inés
Cunha, Isabela
Cassado, Alexandra dos Anjos
Vieira, Flávia Sarmento
Olivieri, David Nicholas
Tadokoro, Carlos Eduardo
Alvarez, José Maria
Coutinho-Silva, Robson
D’Império-Lima, Maria Regina
P2X7 receptor drives Th1 cell differentiation and controls the follicular helper T cell population to protect against Plasmodium chabaudi malaria
title P2X7 receptor drives Th1 cell differentiation and controls the follicular helper T cell population to protect against Plasmodium chabaudi malaria
title_full P2X7 receptor drives Th1 cell differentiation and controls the follicular helper T cell population to protect against Plasmodium chabaudi malaria
title_fullStr P2X7 receptor drives Th1 cell differentiation and controls the follicular helper T cell population to protect against Plasmodium chabaudi malaria
title_full_unstemmed P2X7 receptor drives Th1 cell differentiation and controls the follicular helper T cell population to protect against Plasmodium chabaudi malaria
title_short P2X7 receptor drives Th1 cell differentiation and controls the follicular helper T cell population to protect against Plasmodium chabaudi malaria
title_sort p2x7 receptor drives th1 cell differentiation and controls the follicular helper t cell population to protect against plasmodium chabaudi malaria
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5597262/
https://www.ncbi.nlm.nih.gov/pubmed/28859168
http://dx.doi.org/10.1371/journal.ppat.1006595
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