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T细胞免疫突触中磷脂酰肌醇3激酶的稳定激活刺激Akt信号传导至FoxO1核排除和细胞生长控制。

Stable activation of phosphatidylinositol 3-kinase in the T cell immunological synapse stimulates Akt signaling to FoxO1 nuclear exclusion and cell growth control.

作者信息

Fabre Stéphanie, Lang Valérie, Harriague Julie, Jobart Aude, Unterman Terry G, Trautmann Alain, Bismuth Georges

机构信息

Département de Biologie Cellulaire, Institut Cochin, Institut National de la Santé et de la Recherche Médicale, Unité 567, Centre National de la Recherche Scientifique, Université René Descartes, Paris, France.

出版信息

J Immunol. 2005 Apr 1;174(7):4161-71. doi: 10.4049/jimmunol.174.7.4161.

Abstract

We have previously reported at the single cell level that PI3K is activated after conjugate formation between T lymphocytes and APCs. However, in contrast to cells exposed to an asymmetrical signal that usually increase 3'-phosphoinositides (3'-PI) transiently in the region of the activated receptors, T cells contacting APC accumulate 3'-PI across their whole plasma membrane far beyond the region of the immunological synapse (IS). Importantly, this effect is maintained over time, for hours, and although PI3K-dependent pathways translate in various cell types extracellular stimuli into a wide range of biological events, in primary T cells this stability is mostly required for cell division induced by Ag. Using imaging methodologies, the present article elucidates the molecular mechanisms responsible for this particular functioning of the PI3K pathway in primary human T lymphocytes interacting with APCs, especially with dendritic cells. The results reveal that the IS unremittingly recruits PI3K to maintain high 3'-PI levels in T cells through phosphotyrosine-dependent mechanisms, suggesting a major participation of class Ia PI3K. This persistent activation of PI3K results in the Akt-dependent sequestration of the FoxO transcription factor, FoxO1, outside the nucleus of T cells interacting with APCs. Using an active form of FoxO1, we demonstrate that this compartmentalization process can affect T cell growth after Ag recognition. We conclude that the need for sustained PI3K signaling within the consolidated IS is probably an undemanding tactic used by primary T cells critical for initiating cell cycle progression through the prolonged inactivation of FoxO1, one important factor that can control cell quiescence.

摘要

我们之前在单细胞水平报道过,PI3K在T淋巴细胞与抗原呈递细胞(APC)形成共轭后被激活。然而,与通常在激活受体区域短暂增加3'-磷酸肌醇(3'-PI)的不对称信号刺激的细胞不同,与APC接触的T细胞在其整个质膜上积累3'-PI,远远超出免疫突触(IS)区域。重要的是,这种效应会持续数小时,而且尽管PI3K依赖的信号通路在各种细胞类型中将细胞外刺激转化为广泛的生物学事件,但在原代T细胞中,这种稳定性主要是抗原诱导细胞分裂所必需的。本文利用成像方法阐明了PI3K通路在与APC尤其是树突状细胞相互作用的原代人T淋巴细胞中这种特殊功能的分子机制。结果显示,免疫突触通过磷酸酪氨酸依赖机制持续招募PI3K,以维持T细胞中高3'-PI水平,提示I类PI3K起主要作用。PI3K的这种持续激活导致与APC相互作用的T细胞核外Akt依赖的FoxO转录因子FoxO1的隔离。使用活性形式的FoxO1,我们证明这种区室化过程可影响抗原识别后T细胞的生长。我们得出结论,在稳固的免疫突触内持续PI3K信号传导的需求可能是原代T细胞采用的一种简单策略,通过长期使FoxO1失活(FoxO1是控制细胞静止的一个重要因素)来启动细胞周期进程至关重要。

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