首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >CD8+ T cell-mediated suppression of autoimmunity in a murine lupus model of peptide-induced immune tolerance depends on Foxp3 expression.
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CD8+ T cell-mediated suppression of autoimmunity in a murine lupus model of peptide-induced immune tolerance depends on Foxp3 expression.

机译:在肽诱导的免疫耐受的小鼠狼疮模型中,CD8 + T细胞介导的自身免疫抑制取决于Foxp3表达。

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摘要

Systemic lupus erythematosus is an autoimmune disease caused by autoantibodies, including IgG anti-DNA. New Zealand Black/New Zealand White F(1) female mice, a model of spontaneous polygenic systemic lupus erythematosus, tolerized with an artificial peptide (pConsensus) based on anti-DNA IgG sequences containing MHC class I and class II T cell determinants, develop regulatory CD4+CD25+ T cells and CD8+ inhibitory T cells (CD8+ Ti), both of which suppress autoantibody production. CD8+ Ti inhibit primarily via secretion of TGF-beta. In the present study, we show that the inhibitory function of CD8+ T cells from tolerized mice is sustained for up to 8 wk and at all times depends on expression of Foxp3. Both CD28-positive and CD28-negative CD8+ T cells contain inhibitory cells, but the expression of mRNA for Foxp3 and for TGF-beta is higher and lasts longer in the CD28- subset. In vitro addition of TGF-beta (in the presence of IL-2) induces Foxp3 expression in a dose-response manner. Gene inhibition or blockade with small interfering RNA of Foxp3 abrogates the ability of the CD8+ Ti to inhibit anti-DNA production and the proliferation of CD4+ Th cells. Moreover, a significant correlation between expression of Foxp3 and ability of CD8+ Ti to secrete TGF-beta is observed. Therefore, CD8+ Ti in this system of tolerance are similar to CD4+CD25+ regulatory T cells in their dependence on expression of Foxp3, and there may be a bidirectional Foxp3/TGF-beta autocrine loop that determines the ability of the CD8+ T cells to control autoimmunity.
机译:系统性红斑狼疮是由自身抗体(包括IgG抗DNA)引起的自身免疫性疾病。新西兰黑/新西兰白F(1)雌性小鼠,一种自发性多基因系统性红斑狼疮模型,可基于包含MHC I类和II类T细胞决定簇的抗DNA IgG序列耐受人工肽(pConsensus)调节性CD4 + CD25 + T细胞和CD8 +抑制性T细胞(CD8 + Ti),它们均可抑制自身抗体的产生。 CD8 + Ti主要通过分泌TGF-β来抑制。在本研究中,我们显示来自耐受小鼠的CD8 + T细胞的抑制功能可持续长达8周,并且始终取决于Foxp3的表达。 CD28阳性和CD28阴性的CD8 + T细胞均含有抑制性细胞,但Foxp3和TGF-β的mRNA表达较高,并且在CD28-亚型中持续时间更长。体外添加TGF-β(在IL-2存在下)以剂量反应方式诱导Foxp3表达。 Foxp3的小干扰RNA的基因抑制或阻断消除了CD8 + Ti抑制抗DNA产生和CD4 + Th细胞增殖的能力。此外,观察到Foxp3的表达和CD8 + Ti分泌TGF-β的能力之间的显着相关性。因此,这种耐受系统中的CD8 + Ti在依赖Foxp3表达方面类似于CD4 + CD25 +调节性T细胞,并且可能存在双向Foxp3 /TGF-β自分泌环,决定了CD8 + T细胞控制的能力。自身免疫。

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