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短暂降低 PI3K/Akt 活性可驱动抗原刺激的初始 T 细胞中调节功能的发育。

Transiently reduced PI3K/Akt activity drives the development of regulatory function in antigen-stimulated Naïve T-cells.

机构信息

University Duisburg-Essen, University Hospital, Institute for Experimental Immunology and Imaging, Essen, Germany.

出版信息

PLoS One. 2013 Jul 11;8(7):e68378. doi: 10.1371/journal.pone.0068378. Print 2013.

Abstract

Regulatory T-cells (Tregs) are central for immune homeostasis and divided in thymus-derived natural Tregs and peripherally induced iTreg. However, while phenotype and function of iTregs are well known, a remarkable lack exists in knowledge about signaling mechanisms leading to their generation from naïve precursors in peripheral tissues. Using antigen specific naïve T-cells from mice, we investigated CD4+ CD25+ FoxP3- iTreg induction during antigen-specific T-cell receptor (TCR) stimulation with weak antigen presenting cells (APC). We show that early signaling pathways such as ADAM-17-activation appeared similar in developing iTreg and effector cells (Teff) and both initially shedded CD62-L. But iTreg started reexpressing CD62-L after 24 h while Teff permanently downmodulated it. Furthermore, between 24 and 72 hours iTreg presented with significantly lower phosphorylation levels of Akt-S473 suggesting lower activity of the PI3K/Akt-axis. This was associated with a higher expression of the Akt hydrophobic motif-specific phosphatase PHLPP1 in iTreg. Importantly, the lack of costimulatory signals via CD28 from weak APC was central for the development of regulatory function in iTreg but not for the reappearance of CD62-L. Thus, T-cells display a window of sensitivity after onset of TCR triggering within which the intensity of the PI3K/Akt signal controls entry into either effector or regulatory pathways.

摘要

调节性 T 细胞(Tregs)对于免疫稳态至关重要,可分为胸腺衍生的天然 Tregs 和外周诱导的 iTreg。然而,尽管 iTreg 的表型和功能已经得到很好的研究,但对于导致其在外周组织中从幼稚前体产生的信号机制知之甚少。使用来自小鼠的抗原特异性幼稚 T 细胞,我们在使用弱抗原提呈细胞(APC)进行抗原特异性 T 细胞受体(TCR)刺激时研究了 CD4+ CD25+ FoxP3- iTreg 的诱导。我们表明,在幼稚 iTreg 和效应细胞(Teff)中,早期信号通路(如 ADAM-17 激活)的表现相似,并且两者最初都脱落了 CD62-L。但是 iTreg 在 24 小时后开始重新表达 CD62-L,而 Teff 则永久性下调了它。此外,在 24 至 72 小时之间,iTreg 表现出 Akt-S473 的磷酸化水平明显降低,表明 PI3K/Akt 轴的活性较低。这与 iTreg 中 Akt 疏水基序特异性磷酸酶 PHLPP1 的高表达有关。重要的是,弱 APC 通过 CD28 缺乏共刺激信号对于 iTreg 中调节功能的发展是至关重要的,但对于 CD62-L 的再次出现不是必需的。因此,T 细胞在 TCR 触发开始后表现出一个敏感性窗口,在此窗口内,PI3K/Akt 信号的强度控制其进入效应或调节途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/48f1/3708928/753e5c8bef77/pone.0068378.g001.jpg

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