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RelB+ Steady-State Migratory Dendritic Cells Control the Peripheral Pool of the Natural Foxp3+ Regulatory T Cells

机译:RelB +稳态迁移树突状细胞控制天然Foxp3 +调节性T细胞的外周血池。

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摘要

Thymus-derived natural Foxp3+ CD4+ regulatory T cells (nTregs) play a key role in maintaining immune tolerance and preventing autoimmune disease. Several studies indicate that dendritic cells (DCs) are critically involved in the maintenance and proliferation of nTregs. However, the mechanisms how DCs manage to keep the peripheral pool at constant levels remain poorly understood. Here, we describe that the NF-κB/Rel family transcription factor RelB controls the frequencies of steady-state migratory DCs (ssmDCs) in peripheral lymph nodes and their numbers control peripheral nTreg homeostasis. DC-specific RelB depletion was investigated in CD11c-Cre × RelBfl/fl mice (RelBDCko), which showed normal frequencies of resident DCs in lymph nodes and spleen while the subsets of CD103 Langerin dermal DCs (dDCs) and Langerhans cells but not CD103+ Langerin+ dDC of the ssmDCs in skin-draining lymph nodes were increased. Enhanced frequencies and proliferation rates were also observed for nTregs and a small population of CD4+ CD44high CD25low memory-like T cells (Tml). Interestingly, only the Tml but not DCs showed an increase in IL-2-producing capacity in lymph nodes of RelBDCko mice. Blocking of IL-2 in vivo reduced the frequency of nTregs but increased the Tml frequencies, followed by a recovery of nTregs. Taken together, by employing RelBDCko mice with increased frequencies of ssmDCs our data indicate a critical role for specific ssmDC subsets for the peripheral nTreg and IL-2+ Tml frequencies during homeostasis.
机译:胸腺来源的天然Foxp3 + CD4 + 调节性T细胞(nTregs)在维持免疫耐受和预防自身免疫性疾病中起关键作用。多项研究表明,树突状细胞(DCs)关键参与nTregs的维持和增殖。但是,DC如何将外围设备池保持在恒定水平的机制仍然知之甚少。在这里,我们描述了NF-κB/ Rel家族转录因子RelB控制外周淋巴结中稳态迁移DC(ssmDCs)的频率,其数目控制外周nTreg稳态。在CD11c-Cre×RelB fl / fl 小鼠(RelB DCko )中研究了DC特异性RelB耗竭,该结果显示淋巴结和脾中驻留DC的正常频率,而CD103 - Langerin -真皮DC(dDC)和Langerhans细胞的子集,但不是CD103 + Langerin + dDC的子集皮肤引流淋巴结中的ssmDCs增加。还观察到nTregs和少量CD4 + CD44 CD25 记忆样T细胞(Tml)的频率和增殖速率。有趣的是,在TelB DCko 小鼠的淋巴结中,只有Tml而不是DC显示出IL-2产生能力的增加。体内IL-2的阻断降低了nTreg的频率,但增加了Tm1频率,随后恢复了nTreg。综上所述,通过使用具有增加的ssmDC频率的RelB DCko 小鼠,我们的数据表明了稳态过程中外周nTreg和IL-2 + Tml频率的特定ssmDC亚组的关键作用。 。

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