Mannosylated glycans impair normal T-cell development by reprogramming commitment and repertoire diversity

T-cell development ensures the formation of diverse repertoires of T-cell receptors (TCRs) that recognize a variety of antigens. Glycosylation is a major posttranslational modification present in virtually all cells, including T-lymphocytes, that regulates activity/functions. Although these structur...

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Veröffentlicht in:Cellular & molecular immunology 2023-08, Vol.20 (8), p.955-968
Hauptverfasser: Vicente, Manuel M., Alves, Inês, Fernandes, Ângela, Dias, Ana M., Santos-Pereira, Beatriz, Pérez-Anton, Elena, Santos, Sofia, Yang, Tao, Correia, Alexandra, Münster-Kühnel, Anja, Almeida, Afonso R. M., Ravens, Sarina, Rabinovich, Gabriel A., Vilanova, Manuel, Sousa, Ana E., Pinho, Salomé S.
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Sprache:eng
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Zusammenfassung:T-cell development ensures the formation of diverse repertoires of T-cell receptors (TCRs) that recognize a variety of antigens. Glycosylation is a major posttranslational modification present in virtually all cells, including T-lymphocytes, that regulates activity/functions. Although these structures are known to be involved in TCR-selection in DP thymocytes, it is unclear how glycans regulate other thymic development processes and how they influence susceptibility to disease. Here, we discovered stage-specific glycome compositions during T-cell development in human and murine thymocytes, as well as dynamic alterations. After restricting the N -glycosylation profile of thymocytes to high-mannose structures, using specific glycoengineered mice ( Rag1 Cre Mgat1 fl/fl ), we showed remarkable defects in key developmental checkpoints, including ß-selection, regulatory T-cell generation and γδT-cell development, associated with increased susceptibility to colon and kidney inflammation and infection. We further demonstrated that a single N -glycan antenna (modeled in Rag1 Cre Mgat2 fl/fl mice) is the sine-qua-non condition to ensure normal development. In conclusion, we revealed that mannosylated thymocytes lead to a dysregulation in T-cell development that is associated with inflammation susceptibility.
ISSN:2042-0226
1672-7681
2042-0226
DOI:10.1038/s41423-023-01052-7