INSERM, Unité 1102, Equipe Labellisée Ligue Contre le Cancer, Institut de Cancérologie de l'Ouest, 44800 Nantes-Saint Herblain, France.
J Immunol. 2013 Nov 1;191(9):4619-27. doi: 10.4049/jimmunol.1301378. Epub 2013 Sep 25.
FOXP3(+) regulatory T cells (Tregs) are critical regulators of self-tolerance and immune homeostasis. In mice and humans, two subsets of FOXP3(+) Tregs have been defined based on their differential expression of Helios, a transcription factor of the Ikaros family. Whereas the origin, specificity, and differential function of the two subsets are as yet a source of controversy, their characterization thus far has been limited by the absence of surface markers to distinguish them. In this article, we show that human memory Helios(+) and Helios(-) Tregs are phenotypically distinct and can be separated ex vivo based on their differential expression of IL-1RI, which is restricted to Helios(-) Tregs, in combination with CCR7. The two populations isolated using this strategy are distinct with respect to the expression of other Ikaros family members. Namely, whereas Eos, which has been reported to mediate FOXP3-dependent gene silencing, is expressed in Helios(+) Tregs, Aiolos, which is involved in the differentiation of TH17 and induced Tregs, is instead expressed in Helios(-) Tregs. In addition, whereas both subsets are suppressive ex vivo, Helios(-) Tregs display increased suppressive capacity in comparison to Helios(+) Tregs, but respond to IL-1β by downregulating their suppressive activity. Together, these data support the concept that human Helios(-) memory Tregs encompass induced Tregs that can readily respond to changes in the environment by modulating their suppressive capacity.
FOXP3(+) 调节性 T 细胞 (Tregs) 是自身耐受和免疫稳态的关键调节因子。在小鼠和人类中,根据其转录因子 Ikaros 家族成员 Helios 的差异表达,已经定义了两种 FOXP3(+) Tregs 亚群。尽管这两种亚群的起源、特异性和功能差异仍然存在争议,但迄今为止,由于缺乏区分它们的表面标志物,对它们的特征描述受到限制。在本文中,我们表明,人类记忆 Helios(+) 和 Helios(-) Tregs 表型不同,可以根据它们的 IL-1RI 表达的差异进行体外分离,IL-1RI 的表达仅限于 Helios(-) Tregs,并与 CCR7 结合。使用这种策略分离的两种群体在其他 Ikaros 家族成员的表达方面存在差异。即,虽然据报道 Eos 介导 FOXP3 依赖性基因沉默,但在 Helios(+) Tregs 中表达,而参与 TH17 和诱导性 Tregs 分化的 Aiolos 则在 Helios(-) Tregs 中表达。此外,虽然这两种群体在体外均具有抑制作用,但与 Helios(+) Tregs 相比,Helios(-) Tregs 具有更高的抑制能力,但通过下调其抑制活性对 IL-1β 做出反应。总之,这些数据支持人类 Helios(-) 记忆 Tregs 包含诱导性 Tregs 的概念,这些 Tregs 可以通过调节其抑制能力,对环境变化做出快速反应。