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Exacerbated experimental arthritis in Wiskott-Aldrich syndrome protein deficiency: Modulatory role of regulatory B cells

机译:加剧了实验性关节炎Wiskott-Aldrich综合症蛋白质缺乏:监管B细胞的调节作用

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Patients deficient in the cytoskeletal regulatorWiskott-Aldrich syndrome protein (WASp) are predisposed to varied autoimmunity, suggesting it has an important controlling role in participating cells. IL-10-producing regulatory B (Breg) cells are emerging as important mediators of immunosuppressive activity. In experimental, antigen-induced arthritis WASp-deficient (WASp knockout [WAS KO]) mice developed exacerbated disease associated with decreased Breg cells and regulatory T (Treg) cells, but increased Th17 cells in knee-draining LNs. Arthritic WAS KO mice showed increased serum levels of B-cellactivating factor, while their B cells were unresponsive in terms of B-cell-activating factor induced survival and IL-10 production. Adoptive transfer of WT Breg cells ameliorated arthritis inWAS KO recipients and restored a normal balance of Treg and Th17 cells. Mice with B-cell-restricted WASp deficiency, however, did not develop exacerbated arthritis, despite exhibiting reduced Breg- and Treg-cell numbers during active disease, and Th17 cells were not increased over equivalent WT levels. These findings support a contributory role for defective Breg cells in the development of WAS-related autoimmunity, but demonstrate that functional competence in other regulatory populations can be compensatory. A properly regulated cytoskeleton is therefore important for normal Bregcell activity and complementation of defects in this lineage is likely to have important therapeutic benefits.
机译:患者缺乏细胞骨架regulatorWiskott-Aldrich综合症蛋白(黄蜂)是倾向于不同的自身免疫,它有一个重要的控制作用参与细胞。正在成为监管B (Breg)细胞免疫抑制的重要介质活动。关节炎WASp-deficient(黄蜂淘汰赛(KO))老鼠开发加剧了疾病相关与降低Breg细胞和调节性T (Treg)细胞,但是在knee-draining Th17细胞增加LNs。B-cellactivating水平的因素,而B细胞的反应迟钝诱导生存和B-cell-activating因素il - 10的生产。细胞改善关节炎inWAS KO接受者和恢复的正常平衡Treg Th17细胞。然而,缺没有开发加剧了Breg,关节炎,尽管表现出减少Treg-cell数字在活动性疾病,Th17在等效WT细胞并没有增加的水平。为有缺陷的Breg细胞发展的作用有关的自身免疫,但证明在其他管理功能的能力人口可以补偿。因此调节细胞骨架是重要的正常Bregcell活动和互补的在这个家族可能是缺陷重要的疗效。

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