犬非常规 TCRαβpos CD4negCD8αneg 双阴性 T 细胞亚群的独特免疫调节特性

Laura Karwig, Peter F. Moore, Gottfried Alber, Maria Eschke
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引用次数: 0

摘要

以表达关键转录因子叉头盒 P3(FoxP3)为特征的常规 CD4pos 调节性 T(Treg)细胞对控制免疫反应,从而维持体内平衡和自身耐受性至关重要。在狗的大量非常规 T 细胞受体(TCR)αβpos CD4negCD8αneg 双阴性(dn)T 细胞中,发现了一种新型 FoxP3pos Treg 样亚群,它与传统的 CD4pos Treg 细胞相似,以高表达 CD25 为特征。值得注意的是,人类和鼠类的 TCRαβpos 调节性 dn T 细胞缺乏 FoxP3。根据抑制分子(白细胞介素(IL)-10、细胞毒性 T 淋巴细胞相关蛋白 4 CTLA4)的表达,推测犬 dn T 细胞具有免疫抑制能力。为了验证它们的调节功能,我们通过荧光激活细胞分选技术从比格犬的外周血单核细胞(PBMC)中分离出了 dnCD25pos(富含 FoxP3pos Treg 样细胞)和 dnCD25neg 部分,并在体外抑制试验中与传统的 CD4posCD25pos Treg 细胞(阳性对照)和 CD4posCD25neg T 细胞(阴性对照)进行了比较分析。犬 dnCD25pos T 细胞对康卡纳伐林 A 驱动的反应者 PBMC 增殖的抑制程度与传统的 CD4posCD25pos Treg 细胞相似。尽管与富含 FoxP3 的 dn 和 CD4posCD25pos 群体相比,dnCD25neg T 细胞抑制反应细胞增殖的程度较低,但甚至 dnCD25neg T 细胞也能减少反应细胞的增殖。这一点非常重要,因为 dnCD25neg T 细胞的 FoxP3neg 表型与非抑制性 CD4posCD25neg T 细胞相当。与 CD4posCD25pos T 细胞相比,CD25pos 和 CD25neg dn T 细胞都能独立于细胞-细胞接触介导抑制,并且不需要来自 CD4posCD25neg T 细胞的额外信号来分泌抑制因子。在 Transwell™ 系统中,IL-10 的中和作用完全减弱了 dnCD25pos 和 CD4posCD25pos Treg 细胞的抑制作用,而只部分减弱了 dnCD25neg T 细胞的抑制作用。综上所述,独特的犬非常规 dnCD25pos FoxP3pos Treg 样细胞是体外强效抑制细胞。此外,dnCD25neg 部分对反应者 T 细胞增殖的抑制作用表明,即使在缺乏 FoxP3 的情况下,dn T 细胞亚群也具有抑制功能。考虑到在体内操纵调节性 T 细胞反应的免疫治疗潜力,体外鉴定狗的独特免疫调节非常规 dn T 细胞亚群具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Distinct characteristics of unique immunoregulatory canine non-conventional TCRαβpos CD4negCD8αneg double-negative T cell subpopulations
Conventional CD4pos regulatory T (Treg) cells characterized by expression of the key transcription factor forkhead box P3 (FoxP3) are crucial to control immune responses, thereby maintaining homeostasis and self-tolerance. Within the substantial population of non-conventional T cell receptor (TCR)αβpos CD4negCD8αneg double-negative (dn) T cells of dogs, a novel FoxP3pos Treg-like subset was described that, similar to conventional CD4pos Treg cells, is characterized by high expression of CD25. Noteworthy, human and murine TCRαβpos regulatory dn T cells lack FoxP3. Immunosuppressive capacity of canine dn T cells was hypothesized based on expression of inhibitory molecules (interleukin (IL)-10, cytotoxic T-lymphocyte associated protein 4, CTLA4). Here, to verify their regulatory function, the dnCD25pos (enriched for FoxP3pos Treg-like cells) and the dnCD25neg fraction, were isolated by fluorescence-activated cell sorting from peripheral blood mononuclear cells (PBMC) of Beagle dogs and analyzed in an in vitro suppression assay in comparison to conventional CD4posCD25pos Treg cells (positive control) and CD4posCD25neg T cells (negative control). Canine dnCD25pos T cells suppressed the Concanavalin A-driven proliferation of responder PBMC to a similar extent as conventional CD4posCD25pos Treg cells. Albeit to a lesser extent than FoxP3-enriched dn and CD4posCD25pos populations, even dnCD25neg T cells reduced the proliferation of responder cells. This is remarkable, as dnCD25neg T cells have a FoxP3neg phenotype comparable to non-suppressive CD4posCD25neg T cells. Both, CD25pos and CD25neg dn T cells, can mediate suppression independent of cell-cell contact and do not require additional signals from CD4posCD25neg T cells to secrete inhibitory factors in contrast to CD4posCD25pos T cells. Neutralization of IL-10 completely abrogated the suppression by dnCD25pos and CD4posCD25pos Treg cells in a Transwell™ system, while it only partially reduced suppression by dnCD25neg T cells. Taken together, unique canine non-conventional dnCD25pos FoxP3pos Treg-like cells are potent suppressor cells in vitro. Moreover, inhibition of proliferation of responder T cells by the dnCD25neg fraction indicates suppressive function of a subset of dn T cells even in the absence of FoxP3. The identification of unique immunoregulatory non-conventional dn T cell subpopulations of the dog in vitro is of high relevance, given the immunotherapeutic potential of manipulating regulatory T cell responses in vivo.
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