信号淋巴细胞激活分子(SLAM)/SLAM 相关蛋白通路调节人类 B 细胞耐受。
Signaling lymphocytic activation molecule (SLAM)/SLAM-associated protein pathway regulates human B-cell tolerance.
机构信息
Department of Immunobiology, Yale University School of Medicine, New Haven, Conn.
Immunology Program, Garvan Institute of Medical Research, and St Vincent's Clinical School, University of New South Wales, Darlinghurst, Australia.
出版信息
J Allergy Clin Immunol. 2014 Apr;133(4):1149-61. doi: 10.1016/j.jaci.2013.10.051. Epub 2013 Dec 25.
BACKGROUND
Signaling lymphocytic activation molecule (SLAM)-associated protein (SAP) can mediate the function of SLAM molecules, which have been proposed to be involved in the development of autoimmunity in mice.
OBJECTIVE
We sought to determine whether the SLAM/SAP pathway regulates the establishment of human B-cell tolerance and what mechanisms of B-cell tolerance could be affected by SAP deficiency.
METHODS
We tested the reactivity of antibodies isolated from single B cells from SAP-deficient patients with X-linked lymphoproliferative disease (XLP). The expressions of SAP and SLAM family members were assessed in human bone marrow-developing B cells. We also analyzed regulatory T (Treg) cell function in patients with XLP and healthy control subjects.
RESULTS
We found that new emigrant/transitional B cells from patients with XLP were enriched in autoreactive clones, revealing a defective central B-cell tolerance checkpoint in the absence of functional SAP. In agreement with a B cell-intrinsic regulation of central tolerance, we identified SAP expression in a discrete subset of bone marrow immature B cells. SAP colocalized with SLAMF6 only in association with clustered B-cell receptors likely recognizing self-antigens, suggesting that SLAM/SAP regulate B-cell receptor-mediated central tolerance. In addition, patients with XLP displayed defective peripheral B-cell tolerance, which is normally controlled by Treg cells. Treg cells in patients with XLP seem functional, but SAP-deficient T cells were resistant to Treg cell-mediated suppression. Indeed, SAP-deficient T cells were hyperresponsive to T-cell receptor stimulation, which resulted in increased secretion of IL-2, IFN-γ, and TNF-α.
CONCLUSIONS
SAP expression is required for the counterselection of developing autoreactive B cells and prevents their T cell-dependent accumulation in the periphery.
背景
信号淋巴细胞激活分子(SLAM)相关蛋白(SAP)可介导 SLAM 分子的功能,这些分子被认为参与了小鼠自身免疫的发生。
目的
我们旨在确定 SLAM/SAP 途径是否调节人类 B 细胞耐受的建立,以及 SAP 缺乏会影响哪些 B 细胞耐受机制。
方法
我们检测了来自 X 连锁淋巴组织增生性疾病(XLP)患者 SAP 缺陷的单个 B 细胞中分离的抗体的反应性。评估了 SAP 和 SLAM 家族成员在人骨髓发育中的 B 细胞中的表达。我们还分析了 XLP 患者和健康对照者调节性 T(Treg)细胞的功能。
结果
我们发现,来自 XLP 患者的新归巢/过渡 B 细胞富含自身反应性克隆,表明在缺乏功能性 SAP 的情况下,中央 B 细胞耐受检查点受损。与中央耐受的 B 细胞内在调节一致,我们在骨髓未成熟 B 细胞的一个离散亚群中鉴定到 SAP 的表达。SAP 仅与聚集的 B 细胞受体共定位,这可能识别自身抗原,表明 SLAM/SAP 调节 B 细胞受体介导的中央耐受。此外,XLP 患者表现出外周 B 细胞耐受缺陷,而外周 B 细胞耐受通常由 Treg 细胞控制。XLP 患者的 Treg 细胞似乎具有功能,但 SAP 缺陷的 T 细胞对 Treg 细胞介导的抑制具有抗性。事实上,SAP 缺陷的 T 细胞对 T 细胞受体刺激反应过度,导致 IL-2、IFN-γ 和 TNF-α 的分泌增加。
结论
SAP 的表达对于正在发育的自身反应性 B 细胞的反向选择是必需的,并防止其在 T 细胞依赖性情况下在外周积累。
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