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首页> 外文期刊>Arthritis and Rheumatism >Interleukin-21-Producing c-Maf-Expressing CD4+ T Cells Induce Effector CD8+ T Cells and Enhance Autoimmune Inflammation in Scurfy Mice
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Interleukin-21-Producing c-Maf-Expressing CD4+ T Cells Induce Effector CD8+ T Cells and Enhance Autoimmune Inflammation in Scurfy Mice

机译:产生白介素21的表达c-Maf的CD4 + T细胞诱导黑猩猩小鼠效应CD8 + T细胞并增强自身免疫炎症。

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Objective. FoxP3 induces Treg cells and prevents autoimmune diseases. However, the precise mechanisms of FoxP3 in the prevention of autoimmune diseases remain unknown. We undertook this study to determine the regulatory roles of FoxP3 in autoimmune inflammation by using FoxP3-mutant sf mice. Methods. We characterized interleukin-21 (EL-21)-producing cells in sf mice. We examined the underlying mechanisms of enhanced IL-21 production in sf mouse CD4+ T cells. We examined the roles of IL-21 and CD8+ T cells in autoimmune inflammation in sf mice using IL-21 receptor (IL-21R)-deficient sf mice. Results. IL-21-producing c-Maf+CD4+ T cells, which were distinct from Thl7 cells, were increased in sf mice. Increased c-Maf expression was involved in enhanced IL-21 production in sf mouse CD4+ T cells. Experiments using bone marrow chimeric mice showed that lack of cell-extrinsic suppression by FoxP3 + Treg cells, but not cell-intrinsic defects in FoxP3 in sf mouse CD4+ T cells, was mainly involved in the development of IL-21-producing c-Maf+CD4+ T cells in sf mice. IL-21R deficiency prolonged survival and reducedmul-tiorgan autoimmune inflammation in sf mice. Moreover, IL-21R deficiency decreased short-lived effector CD8+ T cells in the lung in sf mice. Furthermore, depletion of CD8+ T cells inhibited lung inflammation in sf mice, suggesting that CD8+ T cells are critical for inducing lung inflammation in sf mice. Conclusion. Unique IL-21-producing c-Maf+ CD4+ T cells develop in the absence of FoxP3+ Treg cells, induce short-lived effector CD8+ T cells, and enhance multiorgan autoimmune inflammation in sf mice.
机译:目的。 FoxP3诱导Treg细胞并预防自身免疫性疾病。但是,FoxP3预防自身免疫性疾病的确切机制仍然未知。我们进行了这项研究,以确定通过使用FoxP3突变sf小鼠FoxP3在自身免疫炎症中的调节作用。方法。我们表征了sf小鼠中产生白介素21(EL-21)的细胞。我们检查了sf小鼠CD4 + T细胞中IL-21产生增强的潜在机制。我们使用IL-21受体(IL-21R)缺陷的sf小鼠研究了sf小鼠自身免疫炎症中IL-21和CD8 + T细胞的作用。结果。在sf小鼠中,产生不同于Thl7细胞的产生IL-21的c-Maf + CD4 + T细胞增加。 c-Maf表达增加与sf小鼠CD4 + T细胞中IL-21的产生增加有关。使用骨髓嵌合小鼠的实验表明,FoxP3 + Treg细胞缺乏细胞外源性抑制,但sf小鼠CD4 + T细胞中FoxP3中的细胞内在缺陷并不参与,主要与产生IL-21的c-Maf的发展有关。 sf小鼠中的+ CD4 + T细胞。 IL-21R缺乏症延长了sf小鼠的生存期,并降低了-多器官自身免疫炎症。此外,IL-21R缺乏会减少sf小鼠肺中的短期效应CD8 + T细胞。此外,CD8 + T细胞的耗竭抑制了sf小鼠的肺部炎症,这表明CD8 + T细胞对于诱导sf小鼠的肺部炎症至关重要。结论。在不存在FoxP3 + Treg细胞的情况下,会产生独特的产生IL-21的c-Maf + CD4 + T细胞,诱导寿命短的效应CD8 + T细胞,并增强sf小鼠的多器官自身免疫炎症。

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