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IFT20 controls LAT recruitment to the immune synapse and T-cell activation in vivo

机译:IFT20在体内控制LAT募集至免疫突触和T细胞活化

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摘要

Biogenesis of the immune synapse at the interface between antigen-presenting cells and T cells assembles and organizes a large number of membrane proteins required for effective signaling through the T-cell receptor. We showed previously that the intraflagellar transport protein 20 (IFT20), a component of the intraflagellar transport system, controls polarized traffic during immune synapse assembly. To investigate the role of IFT20 in primary CD4+ T cells in vitro and in vivo, we generated mice bearing a conditional defect of IFT20 expression in T cells. We show that in the absence of IFT20, although cell spreading and the polarization of the centrosome were unaffected, T-cell receptor (TCR)-mediated signaling and recruitment of the signaling adaptor LAT (linker for activation of T cells) at the immune synapse were reduced. As a consequence, CD4+ T-cell activation and proliferation were also defective. In vivo, conditional IFT20-deficient mice failed to mount effective antigen-specific T-cell responses, and their T cells failed to induce colitis after adoptive transfer to Rag−/− mice. IFT20 is therefore required for the delivery of the intracellular pool of LAT to the immune synapse in naive primary T lymphocytes and for effective T-cell responses in vivo.
机译:抗原呈递细胞和T细胞之间的界面上的免疫突触的生物发生组装并组织了大量通过T细胞受体进行有效信号传递所需的膜蛋白。我们以前显示鞭毛内运输蛋白20(IFT20),鞭毛内运输系统的组件,控制免疫突触组装过程中的极化的交通。为了在体外和体内研究IFT20在原代CD4 + T细胞中的作用,我们生成了在IF细胞中带有IFT20表达条件缺陷的小鼠。我们显示,在缺乏IFT20的情况下,尽管细胞扩散和中心体的极化不受影响,但T细胞受体(TCR)介导的信号和信号转接头LAT(激活T细胞的连接子)在免疫突触中募集减少了。结果,CD4 + T细胞的活化和增殖也有缺陷。在体内,条件性IFT20缺陷型小鼠无法有效转移抗原特异性T细胞,并且在过继转移至Rag -/-小鼠后,其T细胞也未能诱导结肠炎。因此,需要IFT20才能将LAT的细胞内池递送至幼稚原代T淋巴细胞中的免疫突触,以及体内有效的T细胞应答。

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