Th17 cells transdifferentiate into regulatory T cells during resolution of inflammation

被引:0
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作者
Nicola Gagliani
Maria Carolina Amezcua Vesely
Andrea Iseppon
Leonie Brockmann
Hao Xu
Noah W. Palm
Marcel R. de Zoete
Paula Licona-Limón
Ricardo S. Paiva
Travers Ching
Casey Weaver
Xiaoyuan Zi
Xinghua Pan
Rong Fan
Lana X. Garmire
Matthew J. Cotton
Yotam Drier
Bradley Bernstein
Jens Geginat
Brigitta Stockinger
Enric Esplugues
Samuel Huber
Richard A. Flavell
机构
[1] School of Medicine,Department of Immunobiology
[2] Yale University,Department of Pathology
[3] Medizinische Klinik und Poliklinik,Department of Biomedical Engineering
[4] Universitätsklinikum Hamburg-Eppendorf,Department of Genetics
[5] Howard Hughes Medical Institute,Howard Hughes Medical Institute and Department of Pathology
[6] Yale University School of Medicine,Division of Molecular Immunology
[7] University of Hawaii Cancer Center,Departamento de Biología Celular y del Desarrollo, Instituto de Fisiología Celular, Universidad Nacional Autónoma de México, D.F. México 04510, México (P.L.
[8] University of Alabama at Birmingham,L.); Department of Cell Biology, Second Military Medical University, Departamento de Biología Celular y del Desarrollo, México (P.L.
[9] Yale University,L.); Department of Cell Biology
[10] Yale University School of Medicine,Department of Cell Biology, Second Military Medical University, Department of Cell Biology
[11] Massachusetts General Hospital and Harvard Medical School,undefined
[12] Istituto Nazionale di Genetica Molecolare “Romeo ed Enrica Invernizzi”,undefined
[13] MRC National Institute for Medical Research,undefined
[14] Immunology Institute,undefined
[15] Mount Sinai School of Medicine,undefined
[16] Icahn Medical Institute,undefined
[17] Instituto de Fisiología Celular,undefined
[18] Universidad Nacional Autónoma de México,undefined
[19] D.F. México 04510,undefined
[20] Second Military Medical University,undefined
[21] Second Military Medical University,undefined
来源
Nature | 2015年 / 523卷
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摘要
Inflammation is a beneficial host response to infection but can contribute to inflammatory disease if unregulated. The Th17 lineage of T helper (Th) cells can cause severe human inflammatory diseases. These cells exhibit both instability (they can cease to express their signature cytokine, IL-17A)1 and plasticity (they can start expressing cytokines typical of other lineages)1,2 upon in vitro re-stimulation. However, technical limitations have prevented the transcriptional profiling of pre- and post-conversion Th17 cells ex vivo during immune responses. Thus, it is unknown whether Th17 cell plasticity merely reflects change in expression of a few cytokines, or if Th17 cells physiologically undergo global genetic reprogramming driving their conversion from one T helper cell type to another, a process known as transdifferentiation3,4. Furthermore, although Th17 cell instability/plasticity has been associated with pathogenicity1,2,5, it is unknown whether this could present a therapeutic opportunity, whereby formerly pathogenic Th17 cells could adopt an anti-inflammatory fate. Here we used two new fate-mapping mouse models to track Th17 cells during immune responses to show that CD4+ T cells that formerly expressed IL-17A go on to acquire an anti-inflammatory phenotype. The transdifferentiation of Th17 into regulatory T cells was illustrated by a change in their signature transcriptional profile and the acquisition of potent regulatory capacity. Comparisons of the transcriptional profiles of pre- and post-conversion Th17 cells also revealed a role for canonical TGF-β signalling and consequently for the aryl hydrocarbon receptor (AhR) in conversion. Thus, Th17 cells transdifferentiate into regulatory cells, and contribute to the resolution of inflammation. Our data suggest that Th17 cell instability and plasticity is a therapeutic opportunity for inflammatory diseases.
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页码:221 / 225
页数:4
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