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miR-155 Inhibition Sensitizes CD4+ Th Cells for TREG Mediated Suppression

BACKGROUND: In humans and mice naturally occurring CD4(+)CD25(+) regulatory T cells (nTregs) are a thymus-derived subset of T cells, crucial for the maintenance of peripheral tolerance by controlling not only potentially autoreactive T cells but virtually all cells of the adaptive and innate immune...

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Autores principales: Stahl, Heiko F., Fauti, Tanja, Ullrich, Nina, Bopp, Tobias, Kubach, Jan, Rust, Werner, Labhart, Paul, Alexiadis, Vassili, Becker, Christian, Hafner, Mathias, Weith, Andreas, Lenter, Martin C., Jonuleit, Helmut, Schmitt, Edgar, Mennerich, Detlev
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2743997/
https://www.ncbi.nlm.nih.gov/pubmed/19777054
http://dx.doi.org/10.1371/journal.pone.0007158
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author Stahl, Heiko F.
Fauti, Tanja
Ullrich, Nina
Bopp, Tobias
Kubach, Jan
Rust, Werner
Labhart, Paul
Alexiadis, Vassili
Becker, Christian
Hafner, Mathias
Weith, Andreas
Lenter, Martin C.
Jonuleit, Helmut
Schmitt, Edgar
Mennerich, Detlev
author_facet Stahl, Heiko F.
Fauti, Tanja
Ullrich, Nina
Bopp, Tobias
Kubach, Jan
Rust, Werner
Labhart, Paul
Alexiadis, Vassili
Becker, Christian
Hafner, Mathias
Weith, Andreas
Lenter, Martin C.
Jonuleit, Helmut
Schmitt, Edgar
Mennerich, Detlev
author_sort Stahl, Heiko F.
collection PubMed
description BACKGROUND: In humans and mice naturally occurring CD4(+)CD25(+) regulatory T cells (nTregs) are a thymus-derived subset of T cells, crucial for the maintenance of peripheral tolerance by controlling not only potentially autoreactive T cells but virtually all cells of the adaptive and innate immune system. Recent work using Dicer-deficient mice irrevocably demonstrated the importance of miRNAs for nTreg cell-mediated tolerance. PRINCIPAL FINDINGS: DNA-Microarray analyses of human as well as murine conventional CD4(+) Th cells and nTregs revealed a strong up-regulation of mature miR-155 (microRNA-155) upon activation in both populations. Studying miR-155 expression in FoxP3-deficient scurfy mice and performing FoxP3 ChIP-Seq experiments using activated human T lymphocytes, we show that the expression and maturation of miR-155 seem to be not necessarily regulated by FoxP3. In order to address the functional relevance of elevated miR-155 levels, we transfected miR-155 inhibitors or mature miR-155 RNAs into freshly-isolated human and mouse primary CD4(+) Th cells and nTregs and investigated the resulting phenotype in nTreg suppression assays. Whereas miR-155 inhibition in conventional CD4(+) Th cells strengthened nTreg cell-mediated suppression, overexpression of mature miR-155 rendered these cells unresponsive to nTreg cell-mediated suppression. CONCLUSION: Investigation of FoxP3 downstream targets, certainly of bound and regulated miRNAs revealed the associated function between the master regulator FoxP3 and miRNAs as regulators itself. miR-155 is shown to be crucially involved in nTreg cell mediated tolerance by regulating the susceptibility of conventional human as well as murine CD4(+) Th cells to nTreg cell-mediated suppression.
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spelling pubmed-27439972009-09-24 miR-155 Inhibition Sensitizes CD4+ Th Cells for TREG Mediated Suppression Stahl, Heiko F. Fauti, Tanja Ullrich, Nina Bopp, Tobias Kubach, Jan Rust, Werner Labhart, Paul Alexiadis, Vassili Becker, Christian Hafner, Mathias Weith, Andreas Lenter, Martin C. Jonuleit, Helmut Schmitt, Edgar Mennerich, Detlev PLoS One Research Article BACKGROUND: In humans and mice naturally occurring CD4(+)CD25(+) regulatory T cells (nTregs) are a thymus-derived subset of T cells, crucial for the maintenance of peripheral tolerance by controlling not only potentially autoreactive T cells but virtually all cells of the adaptive and innate immune system. Recent work using Dicer-deficient mice irrevocably demonstrated the importance of miRNAs for nTreg cell-mediated tolerance. PRINCIPAL FINDINGS: DNA-Microarray analyses of human as well as murine conventional CD4(+) Th cells and nTregs revealed a strong up-regulation of mature miR-155 (microRNA-155) upon activation in both populations. Studying miR-155 expression in FoxP3-deficient scurfy mice and performing FoxP3 ChIP-Seq experiments using activated human T lymphocytes, we show that the expression and maturation of miR-155 seem to be not necessarily regulated by FoxP3. In order to address the functional relevance of elevated miR-155 levels, we transfected miR-155 inhibitors or mature miR-155 RNAs into freshly-isolated human and mouse primary CD4(+) Th cells and nTregs and investigated the resulting phenotype in nTreg suppression assays. Whereas miR-155 inhibition in conventional CD4(+) Th cells strengthened nTreg cell-mediated suppression, overexpression of mature miR-155 rendered these cells unresponsive to nTreg cell-mediated suppression. CONCLUSION: Investigation of FoxP3 downstream targets, certainly of bound and regulated miRNAs revealed the associated function between the master regulator FoxP3 and miRNAs as regulators itself. miR-155 is shown to be crucially involved in nTreg cell mediated tolerance by regulating the susceptibility of conventional human as well as murine CD4(+) Th cells to nTreg cell-mediated suppression. Public Library of Science 2009-09-24 /pmc/articles/PMC2743997/ /pubmed/19777054 http://dx.doi.org/10.1371/journal.pone.0007158 Text en Stahl 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Stahl, Heiko F.
Fauti, Tanja
Ullrich, Nina
Bopp, Tobias
Kubach, Jan
Rust, Werner
Labhart, Paul
Alexiadis, Vassili
Becker, Christian
Hafner, Mathias
Weith, Andreas
Lenter, Martin C.
Jonuleit, Helmut
Schmitt, Edgar
Mennerich, Detlev
miR-155 Inhibition Sensitizes CD4+ Th Cells for TREG Mediated Suppression
title miR-155 Inhibition Sensitizes CD4+ Th Cells for TREG Mediated Suppression
title_full miR-155 Inhibition Sensitizes CD4+ Th Cells for TREG Mediated Suppression
title_fullStr miR-155 Inhibition Sensitizes CD4+ Th Cells for TREG Mediated Suppression
title_full_unstemmed miR-155 Inhibition Sensitizes CD4+ Th Cells for TREG Mediated Suppression
title_short miR-155 Inhibition Sensitizes CD4+ Th Cells for TREG Mediated Suppression
title_sort mir-155 inhibition sensitizes cd4+ th cells for treg mediated suppression
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2743997/
https://www.ncbi.nlm.nih.gov/pubmed/19777054
http://dx.doi.org/10.1371/journal.pone.0007158
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