Peffault de Latour Régis, Dujardin Hélène C, Mishellany Florence, Burlen-Defranoux Odile, Zuber Julien, Marques Rute, Di Santo James, Cumano Ana, Vieira Paulo, Bandeira Antonio
Unité INSERM U 668, Unité du Développement des Lymphocytes, Institut Pasteur, Paris, France.
Blood. 2006 Oct 1;108(7):2300-6. doi: 10.1182/blood-2006-04-017947. Epub 2006 Jun 8.
Mice lacking interleukin-7 (IL-7-/- mice) have no signs of autoimmune disease, contrary to other models of lymphopenia. We investigated whether the absence of disease was due to the fact that IL-7 is dispensable for the ontogeny, function, and homeostasis of regulatory CD4+ T cells. We show here that the establishment of the peripheral pool of Foxp3-expressing regulatory cells is IL-7 independent, and the premature involution of the thymus in IL-7-/- mice does not change the representation of the CD4+CD25+ T-cell compartment. In addition, CD4+CD25+ T cells expand in the absence of IL-7, without losing Foxp3 expression. The frequency of activated peripheral CD4+ T cells increases with age in both the CD25- and CD25+ compartments, with the CD4+CD25+ T cells displaying signs of constant activation. IL-7-/- CD4+CD25+ T cells control inflammatory bowel disease induced by IL-7-/- T cells even in hosts lacking IL-7. Depletion of the CD25+ T-cell subset after thymic involution results in a mild form of inflammatory bowel disease (IBD), which resolves concomitantly with the regeneration of this subset. This study shows for the first time that IL-7-/- mice have a robust regulatory Foxp3-expressing CD4+ T-cell compartment that controls T-cell-mediated disease. It also highlights the potential of the regulatory Foxp3-expressing CD4+CD25- T-cell population to restore a functional CD4+CD25+ T-cell compartment through an IL-7-independent pathway.
与其他淋巴细胞减少模型相反,缺乏白细胞介素-7的小鼠(IL-7-/-小鼠)没有自身免疫性疾病的迹象。我们研究了疾病缺失是否是由于IL-7对于调节性CD4+ T细胞的个体发生、功能和稳态是可有可无的。我们在此表明,表达Foxp3的调节性细胞外周池的建立不依赖于IL-7,并且IL-7-/-小鼠胸腺的过早退化不会改变CD4+CD25+ T细胞区室的表现。此外,CD4+CD25+ T细胞在没有IL-7的情况下会扩增,而不会失去Foxp3表达。在CD25-和CD25+区室中,活化的外周CD4+ T细胞的频率均随年龄增加,其中CD4+CD25+ T细胞显示出持续活化的迹象。即使在缺乏IL-7的宿主中,IL-7-/- CD4+CD25+ T细胞也能控制由IL-7-/- T细胞诱导的炎症性肠病。胸腺退化后CD25+ T细胞亚群的耗竭会导致轻度炎症性肠病(IBD),该疾病会随着该亚群的再生而同时消退。这项研究首次表明,IL-7-/-小鼠具有强大的表达调节性Foxp3的CD4+ T细胞区室,可控制T细胞介导的疾病。它还强调了表达调节性Foxp3的CD4+CD25- T细胞群体通过不依赖IL-7的途径恢复功能性CD4+CD25+ T细胞区室的潜力。