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CD4+ B220+ TCRγδ+ T cells produce IL-17 in lupus-prone MRL/lpr mice
Institution:1. Department of Neurology, Navy Clinical College, Second Military Medical University, Shanghai 200433, China;2. Department of Neurology, Chinese Navy General Hospital, Beijing 100048, China;3. Department of Geriatric Gastroenterology, Chinese People''s Liberation Army General Hospital, Beijing 100853, China;4. Department of Clinical Immunology, Xijing Hospital, Fourth Military Medical University, Xi''an 710032, China;1. Unit of Translational Medicine, Department of Immunology and Rheumatology, Nagasaki University Graduate School of Biomedical Sciences, Sakamoto 1-7-1, Nagasaki 852-8102, Japan;2. Department of Rheumatology, Japan Community Health care Organization, Isahaya General Hospital, Isahaya 854-8501, Japan;3. Department of Tumor and Diagnostic Pathology, Atomic Bomb Disease Institute, Nagasaki University, Nagasaki 852-8523, Japan;4. Department of Hematology, Nagasaki University Hospital, Sakamoto 1-7-1, Nagasaki 852-8102, Japan;5. Department of Pathology, Nagasaki University, Sakamoto 1-7-1, Nagasaki 852-8102, Japan
Abstract:Systemic lupus erythematosus is an autoimmune disease with comprehensive immune cell disorders. Recent studies suggested that pro-inflammatory cytokine IL-17 plays important role in lupus, leaving the cellular sources and their pathogenic and physiologic characters largely unknown. In the current study, by using lupus-prone MRL/lpr mice, we demonstrated that Th17 response prevails in lupus disease regarding significantly accumulated serum IL-17, increased IL-17-producing splenocytes, and elevated phospho-STAT3 in CD4+ T cells. Intracellular staining revealed that unusual CD4+ B220+ T cells are major IL-17-producing cells, whereas conventional CD4+ B220? T cells are major IFN-γ-producing cells. Subsequent studies showed that CD4+ B220+ cells contains both αβ and γδ T cells in the spleen and thymus of MRL/lpr mice. Further study showed that around 60% of γδ T cells in MRL/lpr mice co-express both B220 and CD4 on their surface, and are the major RORγt+ cells in MRL/lpr mice. Finally, CD4+ B220+ T cells alone do not proliferate, but could enhance the proliferation and IFN-γ-production of conventional CD4+ B220? T cells. Our findings suggest the pathogenic role of unusual CD4+ B220+ T cells in lupus disease in MRL/lpr mice according to their IL-17-producing ability and stimulatory function for conventional CD4+ B220? T cells.
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