Mistri Somen K, Hilton Brianna M, Horrigan Katherine J, Andretta Emma S, Savard Remi, Dienz Oliver, Hampel Kenneth J, Gerrard Diana L, Rose Joshua T, Sidiropoulos Nikoletta, Majumdar Dev, Boyson Jonathan E
Department of Surgery, Larner College of Medicine, University of Vermont, Burlington, United States.
Department of Pathology and Laboratory Medicine, Larner College of Medicine, University of Vermont Medical Center, Burlington, United States.
Elife. 2024 Dec 10;13:RP97229. doi: 10.7554/eLife.97229.
During thymic development, most γδ T cells acquire innate-like characteristics that are critical for their function in tumor surveillance, infectious disease, and tissue repair. The mechanisms, however, that regulate γδ T cell developmental programming remain unclear. Recently, we demonstrated that the SLAM/SAP signaling pathway regulates the development and function of multiple innate-like γδ T cell subsets. Here, we used a single-cell proteogenomics approach to identify SAP-dependent developmental checkpoints and to define the SAP-dependent γδ TCR repertoire in mice. SAP deficiency resulted in both a significant loss of an immature γδT17 precursor population and a significant increase in thymic γδ T cells. SAP-dependent diversion of embryonic day 17 thymic γδ T cell clonotypes into the αβ T cell developmental pathway was associated with a decreased frequency of mature clonotypes in neonatal thymus, and an altered γδ TCR repertoire in the periphery. Finally, we identify TRGV4/TRAV13-4(DV7)-expressing T cells as a novel, SAP-dependent Vγ4 γδT1 subset. Together, the data support a model in which SAP-dependent γδ/αβ T cell lineage commitment regulates γδ T cell developmental programming and shapes the γδ TCR repertoire.
在胸腺发育过程中,大多数γδ T细胞获得类似先天免疫细胞的特性,这些特性对它们在肿瘤监测、传染病和组织修复中的功能至关重要。然而,调节γδ T细胞发育编程的机制仍不清楚。最近,我们证明了SLAM/SAP信号通路调节多个类似先天免疫细胞的γδ T细胞亚群的发育和功能。在这里,我们使用单细胞蛋白质基因组学方法来鉴定依赖于SAP的发育检查点,并定义小鼠中依赖于SAP的γδ TCR库。SAP缺陷导致未成熟的γδT17前体细胞群显著减少,胸腺γδ T细胞显著增加。胚胎第17天胸腺γδ T细胞克隆型向αβ T细胞发育途径的SAP依赖性转变与新生胸腺中成熟克隆型频率降低以及外周γδ TCR库改变有关。最后,我们将表达TRGV4/TRAV13-4(DV7)的T细胞鉴定为一种新的、依赖于SAP的Vγ4 γδT1亚群。总之,这些数据支持一个模型,即依赖于SAP的γδ/αβ T细胞谱系定向决定调节γδ T细胞发育编程并塑造γδ TCR库。