DOI: 10.3390/cells15181694 ISSN: 2073-4409

T-Cell Specific Deletion of PTPN23 Alters T-Cell Development and TCRαβ/γδ Composition

Rocio Sanchez Alvarez, Madita Determann, Luise Linzmeier, Marijn Wilmink, Maria Rae Walker, Anna Bircher, Céline Mamie, Doris Pöhlmann, Marlene Schwarzfischer, Sebastian Zeissig, Claudia Gottier, Silvia Lang, Marianne R. Spalinger, Yasser Morsy, Michael Scharl

T-cells are major therapeutic targets in cancer and immune-mediated diseases. Their development and differentiation require highly dynamic receptor turnover. Protein tyrosine phosphatase non-receptor type 23 (PTPN23) encodes a ubiquitously expressed pseudophosphatase involved in trafficking and internalization of specific cell receptors. Although PTPN23 has essential functions in several cell types, its role in T-cells remains unknown. We therefore investigated the role of PTPN23 in T-cells. We generated transgenic mice lacking PTPN23 specifically in T-cells (PTPN23-CD4-Cre). Flow cytometry, single-cell RNA sequencing (scRNA-seq), and proteomic analysis were performed in lymphoid and mucosal organs. PTPN23-CD4-Cre mice exhibited a significant reduction in total T-cell numbers in lymphoid organs, accompanied by increased proportions and numbers of γδ T-cells and markedly reduced naïve T-cells. Similar findings were made in mucosal organs, with γδ T-cell levels rising as age increased. In vitro functional assays revealed that residual PTPN23-CD4-Cre T-cells display an altered cytokine profile enriched for inflammatory mediators, a finding that was accompanied by proteomic and phosphoproteomic alterations consistent with changes in T-cell differentiation and inflammatory programs. scRNA-seq analysis showed altered representation of thymocytes along a shared developmental trajectory, with enrichment of PTPN23-deficient T-cells at earlier developmental states. Our study identifies PTPN23 as a previously unrecognized player of T-cell development, differentiation, and immune homeostasis.