THEMIS promotes T cell development and maintenance by rising the signaling threshold of the inhibitory receptor BTLA

Author:

Mélique Suzanne1,Vadel Aurélie1,Rouquié Nelly1ORCID,Yang Cui1ORCID,Bories Cyrielle1ORCID,Cotineau Coline1,Saoudi Abdelhadi1ORCID,Fazilleau Nicolas1ORCID,Lesourne Renaud1ORCID

Affiliation:

1. Toulouse Institute for Infectious and Inflammatory Diseases (Infinity), INSERM UMR1291, CNRS UMR5051, University Toulouse III, Toulouse 31024, France

Abstract

The current paradigm about the function of T cell immune checkpoints is that these receptors switch on inhibitory signals upon cognate ligand interaction. We here revisit this simple switch model and provide evidence that the T cell lineage protein THEMIS enhances the signaling threshold at which the immune checkpoint BTLA (B- and T-lymphocyte attenuator) represses T cell responses. THEMIS is recruited to the cytoplasmic domain of BTLA and blocks its signaling capacity by promoting/stabilizing the oxidation of the catalytic cysteine of the tyrosine phosphatase SHP-1. In contrast, THEMIS has no detectable effect on signaling pathways regulated by PD-1 (Programmed cell death protein 1), which depend mainly on the tyrosine phosphatase SHP-2. BTLA inhibitory signaling is tuned according to the THEMIS expression level, making CD8+ T cells more resistant to BTLA-mediated inhibition than CD4+ T cells. In the absence of THEMIS, the signaling capacity of BTLA is exacerbated, which results in the attenuation of signals driven by the T cell antigen receptor and by receptors for IL-2 and IL-15, consequently hampering thymocyte positive selection and peripheral CD8+ T cell maintenance. By characterizing the pivotal role of THEMIS in restricting the transmission of BTLA signals, our study suggests that immune checkpoint operability is conditioned by intracellular signal attenuators.

Funder

Agence Nationale de la Recherche

Fondation pour l'Aide à la Recherche sur la Sclérose en Plaques

China Scholarship Council

Fondation ARC pour la Recherche sur le Cancer

Publisher

Proceedings of the National Academy of Sciences

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