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      Inhibition of Myeloid Differentiation Factor 88 Reduces Human and Mouse T-Cell Interleukin-17 and IFNγ Production and Ameliorates Experimental Autoimmune Encephalomyelitis Induced in Mice

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          Abstract

          Myeloid differentiation factor 88 (MyD88) recruits signaling proteins to the intracellular domain of receptors belonging to the toll-like/interleukin-1 (IL-1) receptor superfamily. Mice lacking MyD88 are highly susceptible to infectious diseases, but tend to resist experimentally induced autoimmune diseases such as experimental autoimmune encephalomyelitis (EAE) and manifest diminished allograft rejection. We reasoned that inhibition of MyD88 should influence the cytokine profile of responding T cells by blocking costimulatory molecule expression by antigen-presenting cells (APCs) and by inhibiting T-cell responses to IL-18. We now report that inhibition of MyD88 in human APCs led to decreased IFNγ and IL-17 production and a shift to IL-4 production by responding T cells in a mixed lymphocyte reaction. Direct inhibition of Myd88 in mouse and human T cells also reduced their production of IFNγ in response to IL-12/IL-18 stimulation. Finally, systemic MyD88 antagonism significantly reduced the clinical manifestations of EAE in mice. Thus, MyD88 appears to be a key factor in determining T cell phenotype and represents a potential target for therapeutic intervention.

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          Most cited references44

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          Critical regulation of early Th17 cell differentiation by interleukin-1 signaling.

          T helper (Th) 17 cells have been recently discovered in both mouse and human. Here we show that interleukin-1 (IL-1) signaling on T cells is critically required for the early programming of Th17 cell lineage and Th17 cell-mediated autoimmunity. IL-1 receptor1 expression in T cells, which was induced by IL-6, was necessary for the induction of experimental autoimmune encephalomyelitis and for early Th17 cell differentiation in vivo. Moreover, IL-1 signaling in T cells was required in dendritic cell-mediated Th17 cell differentiation from naive or regulatory precursors and IL-1 synergized with IL-6 and IL-23 to regulate Th17 cell differentiation and maintain cytokine expression in effector Th17 cells. Importantly, IL-1 regulated the expression of the transcription factors IRF4 and RORgammat during Th17 cell differentiation; overexpression of these two factors resulted in IL-1-independent Th17 cell polarization. Our data thus indicate a critical role of IL-1 in Th17 cell differentiation and this pathway may serve as a unique target for Th17 cell-mediated immunopathology.
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            Dendritic-cell control of pathogen-driven T-cell polarization.

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              Pyogenic bacterial infections in humans with MyD88 deficiency.

              MyD88 is a key downstream adapter for most Toll-like receptors (TLRs) and interleukin-1 receptors (IL-1Rs). MyD88 deficiency in mice leads to susceptibility to a broad range of pathogens in experimental settings of infection. We describe a distinct situation in a natural setting of human infection. Nine children with autosomal recessive MyD88 deficiency suffered from life-threatening, often recurrent pyogenic bacterial infections, including invasive pneumococcal disease. However, these patients were otherwise healthy, with normal resistance to other microbes. Their clinical status improved with age, but not due to any cellular leakiness in MyD88 deficiency. The MyD88-dependent TLRs and IL-1Rs are therefore essential for protective immunity to a small number of pyogenic bacteria, but redundant for host defense to most natural infections.
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                Author and article information

                Contributors
                Journal
                Front Immunol
                Front Immunol
                Front. Immunol.
                Frontiers in Immunology
                Frontiers Media S.A.
                1664-3224
                29 May 2017
                2017
                : 8
                : 615
                Affiliations
                [1] 1Institute of Dental Sciences, Hebrew University-Hadassah Faculty of Dental Medicine , Jerusalem, Israel
                [2] 2Department of Immunology, Weizmann Institute of Science , Rehovot, Israel
                Author notes

                Edited by: Francesca Granucci, University of Milano-Bicocca, Italy

                Reviewed by: Gunnar Houen, Statens Serum Institut, Denmark; Taruna Madan, National Institute for Research in Reproductive Health, India; Roland Lang, University Hospital Erlangen, Germany

                *Correspondence: Gabriel Nussbaum, gabrieln@ 123456ekmd.huji.ac.il

                These authors have contributed equally to this work.

                Specialty section: This article was submitted to Molecular Innate Immunity, a section of the journal Frontiers in Immunology

                Article
                10.3389/fimmu.2017.00615
                5447018
                cd71a9c7-47c2-423d-a89c-600212e42307
                Copyright © 2017 Dishon, Cohen, Cohen and Nussbaum.

                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.

                History
                : 22 November 2016
                : 09 May 2017
                Page count
                Figures: 6, Tables: 0, Equations: 0, References: 50, Pages: 12, Words: 7190
                Funding
                Funded by: Ministry of Science and Technology, Israel 10.13039/501100006245
                Categories
                Immunology
                Original Research

                Immunology
                myeloid differentiation factor 88,mixed lymphocyte reaction,experimental autoimmune encephalomyelitis,multiple sclerosis,th1/th2

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