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多阶段 T 细胞-树突状细胞相互作用通过 ADAP-SKAP55 信号模块控制最佳 CD4 T 细胞激活。

Multistage T cell-dendritic cell interactions control optimal CD4 T cell activation through the ADAP-SKAP55-signaling module.

机构信息

Department of Laboratory Medicine and Pathology, University of Minnesota Medical School, Minneapolis, MN 55455, USA.

出版信息

J Immunol. 2013 Sep 1;191(5):2372-83. doi: 10.4049/jimmunol.1300107. Epub 2013 Aug 5.

Abstract

The Ag-specific interactions between T cells and dendritic cells progress through dynamic contact stages in vivo consisting of early long-term stable contacts and later confined, yet motile, short-lived contacts. The signaling pathways that control in vivo interaction dynamics between T cells and dendritic cells during priming remain undefined. Adhesion and degranulation promoting adapter protein (ADAP) is a multifunctional adapter that regulates "inside-out" signaling from the TCR to integrins. Using two-photon microscopy, we demonstrate that, in the absence of ADAP, CD4 T cells make fewer early-stage stable contacts with Ag-laden dendritic cells, and the interactions are characterized by brief repetitive contacts. Furthermore, ADAP-deficient T cells show reduced contacts at the late motile contact phase and display less confinement around dendritic cells. The altered T cell interaction dynamics in the absence of ADAP are associated with defective early proliferation and attenuated TCR signaling in vivo. Regulation of multistage contact behaviors and optimal T cell signaling involves the interaction of ADAP with the adapter src kinase-associated phosphoprotein of 55 kDa (SKAP55). Thus, integrin activation by the ADAP-SKAP55-signaling module controls the stability and duration of T cell-dendritic cell contacts during the progressive phases necessary for optimal T cell activation.

摘要

T 细胞与树突状细胞之间的 Ag 特异性相互作用通过体内的动态接触阶段进行,这些阶段包括早期的长期稳定接触和后期的受限但可移动的短暂接触。在启动过程中控制 T 细胞和树突状细胞之间体内相互作用动力学的信号通路仍未定义。黏附和脱颗粒促进衔接蛋白 (ADAP) 是一种多功能衔接蛋白,可调节 TCR 向整合素的“内-外”信号转导。我们使用双光子显微镜证明,在缺乏 ADAP 的情况下,CD4 T 细胞与负载 Ag 的树突状细胞形成的早期稳定接触较少,并且这些相互作用的特征是短暂的重复接触。此外,缺乏 ADAP 的 T 细胞在晚期可移动接触阶段的接触减少,并显示出围绕树突状细胞的束缚减少。缺乏 ADAP 时 T 细胞相互作用动力学的改变与早期增殖缺陷和体内 TCR 信号转导减弱有关。多阶段接触行为的调节和最佳 T 细胞信号转导涉及 ADAP 与适配器 src 激酶相关磷酸蛋白 55kDa(SKAP55)的相互作用。因此,ADAP-SKAP55 信号模块对整合素的激活控制了最佳 T 细胞激活所需的渐进阶段中 T 细胞-树突状细胞接触的稳定性和持续时间。

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