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核因子-κB1 控制树突状细胞的功能成熟,并防止自身反应性 T 细胞的激活。

Nuclear factor-κB1 controls the functional maturation of dendritic cells and prevents the activation of autoreactive T cells.

机构信息

Campbell Family Institute for Breast Cancer Research, Ontario Cancer Institute, Toronto, Ontario, Canada.

出版信息

Nat Med. 2011 Nov 13;17(12):1663-7. doi: 10.1038/nm.2556.

Abstract

Mature dendritic cells (DCs) are crucial for the induction of adaptive immune responses and perturbed DC homeostasis can result in autoimmune disease. Either uncontrolled expansion or enhanced survival of DCs can result in a variety of autoimmune diseases in mouse models. In addition, increased maturation signals, through overexpression of surface Toll-like receptors (TLRs) or stimulation by type I interferon (IFN), has been associated with systemic autoimmunity. Whereas recent studies have focused on identifying factors required for initiating the maturation process, the possibility that resting DCs also express molecules that 'hold' them in an immature state has generally not been considered. Here we show that nuclear factor-κB1 (NF-κB1) is crucial for maintaining the resting state of DCs. Self-antigen-pulsed unstimulated DCs that do not express NF-κB1 were able to activate CD8(+) T lymphocytes and induce autoimmunity. We further show that NF-κB1 negatively regulates the spontaneous production of tumor necrosis factor-α (TNF-α), which is associated with increased granzyme B expression in cytotoxic T lymphocytes (CTLs). These findings provide a new perspective on functional DC maturation and a potential mechanism that may account for pathologic T cell activation.

摘要

成熟树突状细胞 (DC) 对于诱导适应性免疫反应至关重要,而 DC 稳态失调可导致自身免疫性疾病。无论是 DC 的不受控制的扩增还是存活增强,都可能导致小鼠模型中的各种自身免疫性疾病。此外,通过过度表达表面 Toll 样受体 (TLR) 或 I 型干扰素 (IFN) 的刺激来增加成熟信号,与全身性自身免疫有关。尽管最近的研究集中于确定启动成熟过程所需的因素,但静止 DC 也表达将其保持在未成熟状态的分子的可能性通常未被考虑。在这里,我们表明核因子-κB1 (NF-κB1) 对于维持 DC 的静止状态至关重要。未表达 NF-κB1 的自身抗原脉冲刺激的未刺激 DC 能够激活 CD8(+) T 淋巴细胞并诱导自身免疫。我们进一步表明,NF-κB1 负调节肿瘤坏死因子-α (TNF-α) 的自发产生,其与细胞毒性 T 淋巴细胞 (CTL) 中颗粒酶 B 表达的增加有关。这些发现为功能性 DC 成熟提供了新的视角,并提供了一种可能解释病理性 T 细胞激活的潜在机制。

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