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Stat5b/Ezh2 轴调控自身免疫性糖尿病中高 PD-L1 表达的耐受原性树突状细胞亚群。

Stat5b/Ezh2 axis governs high PD-L1 expressing tolerogenic dendritic cell subset in autoimmune diabetes.

机构信息

Department of Pediatrics, Immunology Division, Faculty of Medicine and Health Sciences, Centre de Recherche du CHUS, 3001, 12th Avenue North, Université de Sherbrooke, Sherbrooke, QC J1H 5N4, Canada.

Department of Pediatrics, Immunology Division, Faculty of Medicine and Health Sciences, Centre de Recherche du CHUS, 3001, 12th Avenue North, Université de Sherbrooke, Sherbrooke, QC J1H 5N4, Canada.

出版信息

Int Immunopharmacol. 2024 May 30;133:112166. doi: 10.1016/j.intimp.2024.112166. Epub 2024 Apr 27.

Abstract

Dendritic cells (DCs) are specialized antigen-presenting cells that play an important role in inducing and maintaining immune tolerance. The altered distribution and/or function of DCs contributes to defective tolerance in autoimmune diseases such as type 1 diabetes (T1D). In human T1D and in NOD mouse models, DCs share some defects and are often described as less tolerogenic and excessively immunogenic. In the NOD mouse model, the autoimmune response is associated with a defect in the Stat5b signaling pathway. We have reported that expressing a constitutively active form of Stat5b in DCs of transgenic NOD mice (NOD.Stat5b-CA), re-established their tolerogenic function, restored autoimmune tolerance and conferred protection from diabetes. However, the role and molecular mechanisms of Stat5b signaling in regulating splenic conventional DCs tolerogenic signature remained unclear. In this study, we reported that, compared to immunogenic splenic DCs of NOD, splenic DCs of NOD.Stat5b-CA mice exhibited a tolerogenic profile marked by elevated PD-L1 and PD-L2 expression, reduced pro-inflammatory cytokine production, increased frequency of the cDC2 subset and decreased frequency of the cDC1 subset. This tolerogenic profile was associated with increased Ezh2 and IRF4 but decreased IRF8 expression. We also found an upregulation of PD-L1 in the cDC1 subset and high PD-L1 and PD-L2 expression in cDC2 of NOD.Stat5b-CA mice. Mechanistically, we demonstrated that Ezh2 plays an important role in the maintenance of high PD-L1 expression in cDC1 and cDC2 subsets and that Ezh2 inhibition resulted in PD-L1 but not PD-L2 downregulation which was more drastic in the cDC2 subset. Additionally, Ezh2 inhibition severely reduced the cDC2 subset and increased the cDC1 subset and Stat5b-CA.DC pro-inflammatory cytokine production. Together our data suggest that the Stat5b-Ezh2 axis is critical for the maintenance of tolerogenic high PD-L1-expressing cDC2 and autoimmune tolerance in NOD.Stat5b-CA mice.

摘要

树突状细胞(DCs)是一种专门的抗原呈递细胞,在诱导和维持免疫耐受中发挥重要作用。DCs 的分布和/或功能改变导致自身免疫性疾病(如 1 型糖尿病(T1D))中耐受缺陷。在人类 T1D 和 NOD 小鼠模型中,DCs 存在一些缺陷,通常被描述为耐受性降低和免疫原性增强。在 NOD 小鼠模型中,自身免疫反应与 Stat5b 信号通路的缺陷有关。我们已经报道,在转基因 NOD 小鼠(NOD.Stat5b-CA)的 DC 中表达组成型激活形式的 Stat5b,可重建其耐受功能,恢复自身免疫耐受并提供对糖尿病的保护。然而,Stat5b 信号在调节脾常规 DC 耐受特征中的作用和分子机制尚不清楚。在这项研究中,我们报道与 NOD 的免疫原性脾 DC 相比,NOD.Stat5b-CA 小鼠的脾 DC 表现出一种耐受特征,其特征为 PD-L1 和 PD-L2 表达升高、促炎细胞因子产生减少、cDC2 亚群频率增加和 cDC1 亚群频率减少。这种耐受特征与 Ezh2 和 IRF4 表达增加但 IRF8 表达减少有关。我们还发现 NOD.Stat5b-CA 小鼠的 cDC1 亚群中 PD-L1 上调和 cDC2 中 PD-L1 和 PD-L2 高表达。在机制上,我们证明 Ezh2 在维持 cDC1 和 cDC2 亚群中高 PD-L1 表达中发挥重要作用,Ezh2 抑制导致 PD-L1 而非 PD-L2 下调,在 cDC2 亚群中更为明显。此外,Ezh2 抑制严重减少 cDC2 亚群并增加 cDC1 亚群和 Stat5b-CA.DC 的促炎细胞因子产生。我们的数据表明,Stat5b-Ezh2 轴对于维持 NOD.Stat5b-CA 小鼠中高 PD-L1 表达的耐受 cDC2 和自身免疫耐受至关重要。

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