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首页> 外文期刊>The journal of immunology >OX40L/Jagged1 Cosignaling by GM-CSF–Induced Bone Marrow-Derived Dendritic Cells Is Required for the Expansion of Functional Regulatory T Cells
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OX40L/Jagged1 Cosignaling by GM-CSF–Induced Bone Marrow-Derived Dendritic Cells Is Required for the Expansion of Functional Regulatory T Cells

机译:通过GM-CSF诱导的骨髓衍生的树突状细胞的氧化物40L / jagged1辅酶是用于膨胀功能调节T细胞

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摘要

Earlier, we had demonstrated that treatment with low dose of GM-CSF can prevent the development of experimental autoimmune thyroiditis (EAT), experimental autoimmune myasthenia gravis, and type 1 diabetes, and could also reverse ongoing EAT and experimental autoimmune myasthenia gravis. The protective effect was mediated through the induction of tolerogenic CD11C+CD8α? dendritic cells (DCs) and consequent expansion of Foxp3+ regulatory T cells (Tregs). Subsequently, we showed that GM-CSF acted specifically on bone marrow precursors and facilitated their differentiation into tolerogenic dendritic cells (DCs; GM-CSF–induced bone marrow-derived DCs [GM-BMDCs]), which directed Treg expansion in a contact-dependent manner. This novel mechanism of Treg expansion was independent of TCR-mediated signaling but required exogenous IL-2 and cosignaling from DC-bound OX40L. In this study, we observed that OX40L-mediated signaling by GM-BMDCs, although necessary, was not sufficient for Treg expansion and required signaling by Jagged1. Concurrent signaling induced by OX40L and Jagged1 via OX40 and Notch3 receptors expressed on Tregs was essential for the Treg expansion with sustained FoxP3 expression. Adoptive transfer of only OX40L+Jagged1+ BMDCs led to Treg expansion, increased production of IL-4 and IL-10, and suppression of EAT in the recipient mice. These results showed a critical role for OX40L- and Jagged1-induced cosignaling in GM-BMDC–induced Treg expansion.
机译:早些时候,我们曾证明过低剂量的GM-CSF治疗可以预防实验性自身免疫甲状腺炎(吃),实验自身免疫性肌肌瘤的开发,以及1型糖尿病,也可以逆转持续吃和实验性自身免疫肌无力。通过诱导耐受性CD11c +CD8α的诱导介导的保护作用?树突状细胞(DCS)和随后的Foxp3 +调节T细胞(Tregs)的扩展。随后,我们展示了GM-CSF在骨髓前体上专门作用,并促进其分化为耐甲醛树突细胞(DCS; GM-CSF诱导的骨髓衍生的DCS [GM-BMDCS]),其在接触中定向Treg膨胀 - 依赖的方式。这种Treg膨胀机制差异独立于TCR介导的信号传导,但是从DC结合的OX 40L所需的外源IL-2和有源。在该研究中,我们观察到通过GM-BMDCS介导的信号传导,但是必要的,不足以通过Jagged1的Treg膨胀和所需的信号传导。通过OX40L和Jagged1诱导的并发信令通过OX40和Tregs上表达的Notch3受体对Treg膨胀具有持续的Foxp3表达至关重要。只有Ox40L + jagged1 + BMDC的养老转移导致Treg扩张,增加IL-4和IL-10的产生,以及在受体小鼠中抑制吃的抑制。这些结果表明,在GM-BMDC诱导的Treg膨胀中的氧化物40L和Jagged1诱导的辅助性具有关键作用。

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