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首页> 外文期刊>The journal of immunology >Segregated Regulatory CD39+CD4+ T Cell Function: TGF-β–Producing Foxp3? and IL-10–Producing Foxp3+ Cells Are Interdependent for Protection against Collagen-Induced Arthritis
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Segregated Regulatory CD39+CD4+ T Cell Function: TGF-β–Producing Foxp3? and IL-10–Producing Foxp3+ Cells Are Interdependent for Protection against Collagen-Induced Arthritis

机译:分离的调节性CD39 + CD4 + T细胞功能:TGF-β产生Foxp3吗?和产生IL-10的Foxp3 +细胞相互依赖,可抵抗胶原蛋白诱发的关节炎

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Oral immunization with a Salmonella vaccine vector expressing enterotoxigenic Escherichia coli colonization factor Ag I (CFA/I) can protect against collagen-induced arthritis (CIA) by dampening IL-17 and IFN-γ via enhanced IL-4, IL-10, and TGF-β. To identify the responsible regulatory CD4+ T cells making the host refractory to CIA, Salmonella -CFA/I induced CD39+CD4+ T cells with enhanced apyrase activity relative to Salmonella vector-immunized mice. Adoptive transfer of vaccine-induced CD39+CD4+ T cells into CIA mice conferred complete protection, whereas CD39?CD4+ T cells did not. Subsequent analysis of vaccinated Foxp3-GFP mice revealed the CD39+ T cells were composed of Foxp3-GFP? and Foxp3-GFP+ subpopulations. Although each adoptively transferred Salmonella -CFA/I–induced Foxp3? and Foxp3+CD39+CD4+ T cells could protect against CIA, each subset was not as efficacious as total CD39+CD4+ T cells, suggesting their interdependence for optimal protection. Cytokine analysis revealed Foxp3? CD39+CD4+ T cells produced TGF-β, and Foxp3+CD39+CD4+ T cells produced IL-10, showing a segregation of function. Moreover, donor Foxp3-GFP? CD4+ T cells converted to Foxp3-GFP+ CD39+CD4+ T cells in the recipients, showing plasticity of these regulatory T cells. TGF-β was found to be essential for protection because in vivo TGF-β neutralization reversed activation of CREB and reduced the development of CD39+CD4+ T cells. Thus, CD39 apyrase-expressing CD4+ T cells stimulated by Salmonella -CFA/I are composed of TGF-β–producing Foxp3? CD39+CD4+ T cells and support the stimulation of IL-10–producing Foxp3+ CD39+CD4+ T cells.
机译:表达肠毒素的大肠杆菌定殖因子Ag I(CFA / I)的沙门氏菌疫苗载体的口服免疫可通过增强IL-4,IL-10和IL-10抑制IL-17和IFN-γ来预防胶原诱导的关节炎(CIA)。 TGF-β。为了鉴定使宿主对CIA耐药的负责的调节性CD4 + T细胞,沙门氏菌-CFA / I诱导了相对于经沙门氏菌载体免疫的小鼠具有增强的腺苷三磷酸双磷酸酶活性的CD39 + CD4 + T细胞。疫苗诱导的CD39 + CD4 + T细胞过继转移到CIA小鼠中可提供完全保护,而CD39?CD4 + T细胞则没有。随后对接种的Foxp3-GFP小鼠进行分析,发现CD39 + T细胞由Foxp3-GFP?和Foxp3-GFP +亚群。虽然每个人都过继转移了沙门氏菌-CFA / I诱导的Foxp3? Foxp3 + CD39 + CD4 + T细胞可以预防CIA,每个子集都不如总CD39 + CD4 + T细胞有效,表明它们相互依存,可提供最佳保护。细胞因子分析显示Foxp3? CD39 + CD4 + T细胞产生TGF-β,Foxp3 + CD39 + CD4 + T细胞产生IL-10,显示功能分离。此外,捐助者Foxp3-GFP? CD4 + T细胞在受体中转化为Foxp3-GFP + CD39 + CD4 + T细胞,显示了这些调节性T细胞的可塑性。发现TGF-β对于保护是必不可少的,因为体内TGF-β的中和逆转了CREB的活化并减少了CD39 + CD4 + T细胞的发育。因此,沙门氏菌-CFA / I刺激的表达CD39腺苷三磷酸酶的CD4 + T细胞是由产生TGF-β的Foxp3组成的? CD39 + CD4 + T细胞并支持刺激产生IL-10的Foxp3 + CD39 + CD4 + T细胞。

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