Allam Amr H, Charnley Mirren, Pham Kim, Russell Sarah M
Optical Sciences Centre, Faculty of Science, Engineering & Technology, Swinburne University of Technology, Hawthorn, Victoria, Australia.
Immune Signalling Laboratory, Peter MacCallum Cancer Centre, Parkville, Victoria, Australia.
J Cell Biol. 2021 Mar 1;220(3). doi: 10.1083/jcb.201908108.
The β-selection checkpoint of T cell development tests whether the cell has recombined its genomic DNA to produce a functional T cell receptor β (TCRβ). Passage through the β-selection checkpoint requires the nascent TCRβ protein to mediate signaling through a pre-TCR complex. In this study, we show that developing T cells at the β-selection checkpoint establish an immunological synapse in in vitro and in situ, resembling that of the mature T cell. The immunological synapse is dependent on two key signaling pathways known to be critical for the transition beyond the β-selection checkpoint, Notch and CXCR4 signaling. In vitro and in situ analyses indicate that the immunological synapse promotes passage through the β-selection checkpoint. Collectively, these data indicate that developing T cells regulate pre-TCR signaling through the formation of an immunological synapse. This signaling platform integrates cues from Notch, CXCR4, and MHC on the thymic stromal cell to allow transition beyond the β-selection checkpoint.
T细胞发育的β选择检查点会检测细胞是否已重组其基因组DNA以产生功能性T细胞受体β(TCRβ)。通过β选择检查点需要新生的TCRβ蛋白通过前TCR复合物介导信号传导。在本研究中,我们表明处于β选择检查点的发育中T细胞在体外和原位建立了免疫突触,类似于成熟T细胞的免疫突触。该免疫突触依赖于已知对β选择检查点之后的转变至关重要的两条关键信号通路,即Notch和CXCR4信号通路。体外和原位分析表明,免疫突触促进通过β选择检查点。总体而言,这些数据表明发育中的T细胞通过形成免疫突触来调节前TCR信号传导。这个信号平台整合了来自胸腺基质细胞上的Notch、CXCR4和MHC的信号,以允许越过β选择检查点。