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IL-17 Induction by ArtinM is Due to Stimulation of IL-23 and IL-1 Release and/or Interaction with CD3 in CD4(+) T Cells

ArtinM is a D-mannose-binding lectin extracted from the seeds of Artocarpus heterophyllus that interacts with TLR2 N-glycans and activates antigen-presenting cells (APCs), as manifested by IL-12 production. In vivo ArtinM administration induces Th1 immunity and confers protection against infection w...

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Autores principales: da Silva, Thiago Aparecido, Mariano, Vania Sammartino, Sardinha-Silva, Aline, de Souza, Maria Aparecida, Mineo, Tiago Wilson Patriarca, Roque-Barreira, Maria Cristina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4767177/
https://www.ncbi.nlm.nih.gov/pubmed/26901413
http://dx.doi.org/10.1371/journal.pone.0149721
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author da Silva, Thiago Aparecido
Mariano, Vania Sammartino
Sardinha-Silva, Aline
de Souza, Maria Aparecida
Mineo, Tiago Wilson Patriarca
Roque-Barreira, Maria Cristina
author_facet da Silva, Thiago Aparecido
Mariano, Vania Sammartino
Sardinha-Silva, Aline
de Souza, Maria Aparecida
Mineo, Tiago Wilson Patriarca
Roque-Barreira, Maria Cristina
author_sort da Silva, Thiago Aparecido
collection PubMed
description ArtinM is a D-mannose-binding lectin extracted from the seeds of Artocarpus heterophyllus that interacts with TLR2 N-glycans and activates antigen-presenting cells (APCs), as manifested by IL-12 production. In vivo ArtinM administration induces Th1 immunity and confers protection against infection with several intracellular pathogens. In the murine model of Candida albicans infection, it was verified that, in addition to Th1, ArtinM induces Th17 immunity manifested by high IL-17 levels in the treated animals. Herein, we investigated the mechanisms accounting for the ArtinM-induced IL-17 production. We found that ArtinM stimulates the IL-17 production by spleen cells in BALB/c or C57BL/6 mice, a response that was significantly reduced in the absence of IL-23, MyD88, or IL-1R. Furthermore, we showed that ArtinM directly induced the IL-23 mRNA expression and the IL-1 production by macrophages. Consistently, in cell suspensions depleted of macrophages, the IL-17 production stimulated by ArtinM was reduced by 53% and the exogenous IL-23 acted synergistically with ArtinM in promoting IL-17 production by spleen cell suspensions. We verified that the absence of IL-23, IL-1R, or MyD88 inhibited, but did not block, the IL-17 production by ArtinM-stimulated spleen cells. Therefore, we investigated whether ArtinM exerts a direct effect on CD4(+) T cells in promoting IL-17 production. Indeed, spleen cell suspensions depleted of CD4(+) T cells responded to ArtinM with very low levels of IL-17 release. Likewise, isolated CD4(+) T cells under ArtinM stimulus augmented the expression of TGF-β mRNA and released high levels of IL-17. Considering the observed synergism between IL-23 and ArtinM, we used cells from IL-23 KO mice to assess the direct effect of lectin on CD4(+) T cells. We verified that ArtinM increased the IL-17 production significantly, a response that was inhibited when the CD4(+) T cells were pre-incubated with anti-CD3 antibody. In conclusion, ArtinM stimulates the production of IL-17 by CD4(+) T cells in two major ways: (I) through the induction of IL-23 and IL-1 by APCs and (II) through the direct interaction with CD3 on the CD4(+) T cells. This study contributes to elucidation of mechanisms accounting for the property of ArtinM in inducing Th17 immunity and opens new perspectives in designing strategies for modulating immunity by using carbohydrate recognition agents.
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spelling pubmed-47671772016-03-07 IL-17 Induction by ArtinM is Due to Stimulation of IL-23 and IL-1 Release and/or Interaction with CD3 in CD4(+) T Cells da Silva, Thiago Aparecido Mariano, Vania Sammartino Sardinha-Silva, Aline de Souza, Maria Aparecida Mineo, Tiago Wilson Patriarca Roque-Barreira, Maria Cristina PLoS One Research Article ArtinM is a D-mannose-binding lectin extracted from the seeds of Artocarpus heterophyllus that interacts with TLR2 N-glycans and activates antigen-presenting cells (APCs), as manifested by IL-12 production. In vivo ArtinM administration induces Th1 immunity and confers protection against infection with several intracellular pathogens. In the murine model of Candida albicans infection, it was verified that, in addition to Th1, ArtinM induces Th17 immunity manifested by high IL-17 levels in the treated animals. Herein, we investigated the mechanisms accounting for the ArtinM-induced IL-17 production. We found that ArtinM stimulates the IL-17 production by spleen cells in BALB/c or C57BL/6 mice, a response that was significantly reduced in the absence of IL-23, MyD88, or IL-1R. Furthermore, we showed that ArtinM directly induced the IL-23 mRNA expression and the IL-1 production by macrophages. Consistently, in cell suspensions depleted of macrophages, the IL-17 production stimulated by ArtinM was reduced by 53% and the exogenous IL-23 acted synergistically with ArtinM in promoting IL-17 production by spleen cell suspensions. We verified that the absence of IL-23, IL-1R, or MyD88 inhibited, but did not block, the IL-17 production by ArtinM-stimulated spleen cells. Therefore, we investigated whether ArtinM exerts a direct effect on CD4(+) T cells in promoting IL-17 production. Indeed, spleen cell suspensions depleted of CD4(+) T cells responded to ArtinM with very low levels of IL-17 release. Likewise, isolated CD4(+) T cells under ArtinM stimulus augmented the expression of TGF-β mRNA and released high levels of IL-17. Considering the observed synergism between IL-23 and ArtinM, we used cells from IL-23 KO mice to assess the direct effect of lectin on CD4(+) T cells. We verified that ArtinM increased the IL-17 production significantly, a response that was inhibited when the CD4(+) T cells were pre-incubated with anti-CD3 antibody. In conclusion, ArtinM stimulates the production of IL-17 by CD4(+) T cells in two major ways: (I) through the induction of IL-23 and IL-1 by APCs and (II) through the direct interaction with CD3 on the CD4(+) T cells. This study contributes to elucidation of mechanisms accounting for the property of ArtinM in inducing Th17 immunity and opens new perspectives in designing strategies for modulating immunity by using carbohydrate recognition agents. Public Library of Science 2016-02-22 /pmc/articles/PMC4767177/ /pubmed/26901413 http://dx.doi.org/10.1371/journal.pone.0149721 Text en © 2016 da Silva 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
da Silva, Thiago Aparecido
Mariano, Vania Sammartino
Sardinha-Silva, Aline
de Souza, Maria Aparecida
Mineo, Tiago Wilson Patriarca
Roque-Barreira, Maria Cristina
IL-17 Induction by ArtinM is Due to Stimulation of IL-23 and IL-1 Release and/or Interaction with CD3 in CD4(+) T Cells
title IL-17 Induction by ArtinM is Due to Stimulation of IL-23 and IL-1 Release and/or Interaction with CD3 in CD4(+) T Cells
title_full IL-17 Induction by ArtinM is Due to Stimulation of IL-23 and IL-1 Release and/or Interaction with CD3 in CD4(+) T Cells
title_fullStr IL-17 Induction by ArtinM is Due to Stimulation of IL-23 and IL-1 Release and/or Interaction with CD3 in CD4(+) T Cells
title_full_unstemmed IL-17 Induction by ArtinM is Due to Stimulation of IL-23 and IL-1 Release and/or Interaction with CD3 in CD4(+) T Cells
title_short IL-17 Induction by ArtinM is Due to Stimulation of IL-23 and IL-1 Release and/or Interaction with CD3 in CD4(+) T Cells
title_sort il-17 induction by artinm is due to stimulation of il-23 and il-1 release and/or interaction with cd3 in cd4(+) t cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4767177/
https://www.ncbi.nlm.nih.gov/pubmed/26901413
http://dx.doi.org/10.1371/journal.pone.0149721
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