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首页> 外文期刊>The journal of immunology >Anergic CD4+ T Cells Form Mature Immunological Synapses with Enhanced Accumulation of c-Cbl and Cbl-b
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Anergic CD4+ T Cells Form Mature Immunological Synapses with Enhanced Accumulation of c-Cbl and Cbl-b

机译:无能的CD4 + T细胞形成具有增强的c-Cbl和Cbl-b积累的成熟免疫突触

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摘要

CD4+ T cell recognition of MHC:peptide complexes in the context of a costimulatory signal results in the large-scale redistribution of molecules at the T cell–APC interface to form the immunological synapse. The immunological synapse is the location of sustained TCR signaling and delivery of a subset of effector functions. T cells activated in the absence of costimulation are rendered anergic and are hyporesponsive when presented with Ag in the presence of optimal costimulation. Several previous studies have looked at aspects of immunological synapses formed by anergic T cells, but it remains unclear whether there are differences in the formation or composition of anergic immunological synapses. In this study, we anergized primary murine CD4+ T cells by incubation of costimulation-deficient, transfected fibroblast APCs. Using a combination of TCR, MHC:peptide, and ICAM-1 staining, we found that anergic T cells make mature immunological synapses with characteristic central and peripheral supramolecular activation cluster domains that were indistinguishable from control synapses. There were small increases in total phosphotyrosine at the anergic synapse along with significant decreases in phosphorylated ERK 1/2 accumulation. Most striking, there was specific accumulation of c-Cbl and Cbl-b to the anergic synapses. Cbl-b, previously shown to be essential in anergy induction, was found in both the central and the peripheral supramolecular activation clusters of the anergic synapse. This Cbl-b (and c-Cbl) accumulation at the anergic synapse may play an important role in anergy maintenance, induction, or both.
机译:在共刺激信号的背景下,CD4 + T细胞对MHC:肽复合物的识别导致分子在T细胞-APC界面处大规模重新分布,从而形成免疫突触。免疫突触是持续TCR信号传导和效应功能子集传递的位置。在没有协同刺激的情况下激活的T细胞变得无反应,并且在最佳协同刺激的情况下与Ag一起出现时反应低下。先前的一些研究已经研究了由无反应性T细胞形成的免疫突触的各个方面,但是尚不清楚在无反应性免疫突触的形成或组成方面是否存在差异。在这项研究中,我们通过共刺激缺陷,转染的成纤维细胞APC的孵育为原代鼠CD4 + T细胞充能。通过结合使用TCR,MHC:肽和ICAM-1染色,我们发现无能T细胞可形成具有特征性中央和外围超分子活化簇结构域的成熟免疫突触,而这些突触结构域与对照突触没有区别。在无能突触中总磷酸酪氨酸有少量增加,而磷酸化的ERK 1/2积累则有明显的减少。最惊人的是,c-Cbl和Cbl-b对无能突触有特定的积累。在无能突触的中央和周边超分子活化簇中均发现了Cbl-b,以前显示出它在无能诱导中是必需的。 Cbl-b(和c-Cbl)在无能突触处的积累可能在无能维持,诱导或两者中起重要作用。

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