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Rap1和磷酸化细胞外信号调节激酶(phospho-ERK)的反向表达可在体外和体内区分抗原特异性CD4+ T细胞耐受性维持阶段和致敏阶段。

Inverse Rap1 and phospho-ERK expression discriminate the maintenance phase of tolerance and priming of antigen-specific CD4+ T cells in vitro and in vivo.

作者信息

Morton Angela M, McManus Barbara, Garside Paul, Mowat Allan McI, Harnett Margaret M

机构信息

Division of Immunology, Infection and Inflammation, Glasgow Biomedical Research Centre, University of Glasgow, Glasgow, United Kingdom.

出版信息

J Immunol. 2007 Dec 15;179(12):8026-34. doi: 10.4049/jimmunol.179.12.8026.

Abstract

T cell recognition of Ag can result in priming or tolerance depending on the context in which Ag is recognized. Previously, we have reported that these distinct functional outcomes are associated with marked differences in the amplitude, kinetics, and cellular localization of activated, pERK signals at the level of individual Ag-specific T cells in vitro. Here, we show that the GTPase Rap1, which can antagonize the generation of such pERK signals and has been reported to accumulate in tolerant cells, exhibits an inverse pattern of expression to pERK in individual Ag-specific primed and tolerized T cells. Although pERK is expressed by more primed than tolerized T cells when rechallenged with Ag in vitro, Rap1 is expressed by higher percentages of tolerant compared with primed Ag-specific T cells. Moreover, whereas pERK localizes to the TCR and lipid rafts in primed cells, but exhibits a diffuse cellular distribution in tolerized cells, Rap1 colocalizes with the TCR and lipid raft structures under conditions of tolerance, but not priming, in vitro. This inverse relationship between Rap1 and pERK expression is physiologically relevant, given that we observed the same patterns in Ag-specific T cells in situ, following induction of priming and tolerance in vivo. Together, these data suggest that the maintenance of tolerance of individual Ag-specific T cells may reflect the recruitment of up-regulated Rap1 to the immune synapse, potentially resulting in sequestration of Raf-1 and uncoupling of the TCR from the Ras-ERK-MAPK cascade.

摘要

T细胞对抗原的识别可导致启动或耐受,这取决于抗原被识别的背景。此前,我们报道过,在体外单个抗原特异性T细胞水平上,这些不同的功能结果与活化的pERK信号的幅度、动力学和细胞定位的显著差异有关。在这里,我们表明,GTP酶Rap1可以拮抗此类pERK信号的产生,并且据报道它在耐受细胞中积累,在单个抗原特异性启动和耐受的T细胞中,Rap1的表达模式与pERK相反。当在体外再次用抗原刺激时,虽然启动的T细胞比耐受的T细胞表达更多的pERK,但与启动的抗原特异性T细胞相比,耐受的T细胞中Rap1的表达百分比更高。此外,pERK在启动细胞中定位于TCR和脂筏,但在耐受细胞中呈现弥漫性细胞分布,而在体外耐受而非启动的条件下,Rap1与TCR和脂筏结构共定位。鉴于我们在体内诱导启动和耐受后,在原位的抗原特异性T细胞中观察到相同的模式,Rap1和pERK表达之间的这种反向关系具有生理相关性。总之,这些数据表明,单个抗原特异性T细胞耐受性的维持可能反映了上调的Rap1被招募到免疫突触,这可能导致Raf-1的隔离以及TCR与Ras-ERK-MAPK级联的解偶联。

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