T cell deletional tolerance restricts AQP4 but not MOG CNS autoimmunity

中心公差 自身免疫 T细胞 免疫学 生物 髓鞘少突胶质细胞糖蛋白 克隆缺失 T细胞受体 ZAP70型 实验性自身免疫性脑脊髓炎 细胞生物学 多发性硬化 抗体 免疫系统
作者
Sharon A. Sagan,Zahra Moinfar,Carson E. Moseley,Ravi Dandekar,Collin M. Spencer,A.S. Verkman,Ole Petter Ottersen,Raymond A. Sobel,John Sidney,Alessandro Sette,Mark S. Anderson,Lawrence Steinman,Michael R. Wilson,Joseph J. Sabatino,Scott S. Zamvil
出处
期刊:Proceedings of the National Academy of Sciences of the United States of America [National Academy of Sciences]
卷期号:120 (30) 被引量:14
标识
DOI:10.1073/pnas.2306572120
摘要

Aquaporin-4 (AQP4)-specific Th17 cells are thought to have a central role in neuromyelitis optica (NMO) pathogenesis. When modeling NMO, only AQP4-reactive Th17 cells from AQP4-deficient (AQP4 −/− ), but not wild-type (WT) mice, caused CNS autoimmunity in recipient WT mice, indicating that a tightly regulated mechanism normally ensures tolerance to AQP4. Here, we found that pathogenic AQP4 T cell epitopes bind MHC II with exceptionally high affinity. Examination of T cell receptor (TCR) α/β usage revealed that AQP4-specific T cells from AQP4 −/− mice employed a distinct TCR repertoire and exhibited clonal expansion. Selective thymic AQP4 deficiency did not fully restore AQP4-reactive T cells, demonstrating that thymic negative selection alone did not account for AQP4-specific tolerance in WT mice. Indeed, AQP4-specific Th17 cells caused paralysis in recipient WT or B cell-deficient mice, which was followed by complete recovery that was associated with apoptosis of donor T cells. However, donor AQP4-reactive T cells survived and caused persistent paralysis in recipient mice deficient in both T and B cells or mice lacking T cells only. Thus, AQP4 CNS autoimmunity was limited by T cell–dependent deletion of AQP4-reactive T cells. In contrast, myelin oligodendrocyte glycoprotein (MOG)-specific T cells survived and caused sustained disease in WT mice. These findings underscore the importance of peripheral T cell deletional tolerance to AQP4, which may be relevant to understanding the balance of AQP4-reactive T cells in health and in NMO. T cell tolerance to AQP4, expressed in multiple tissues, is distinct from tolerance to MOG, an autoantigen restricted in its expression.
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