SLAM/SAP signaling regulates discrete γδ T cell developmental checkpoints and shapes the innate-like γδ TCR repertoire.

Mistri, Somen K; Hilton, Brianna M; Horrigan, Katherine J; Andretta, Emma S; Savard, Remi; Dienz, Oliver; Hampel, Kenneth J; Gerrard, Diana L et al. · Elife · 2024

basic_science · Level V

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Abstract

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 <i>Gzma</i><sup>+</sup><i>Blk<sup>+</sup>Etv5<sup>+</sup>Tox2<sup>+</sup></i> γδT17 precursor population and a significant increase in <i>Cd4<sup>+</sup>Cd8<sup>+</sup>Rorc<sup>+</sup>Ptcra<sup>+</sup>Rag1<sup>+</sup></i> 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.

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