Selectins impair regulatory T cell function and contribute to systemic lupus erythematosus pathogenesis

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Scherlinger, Marc | Guillotin, Vivien | Douchet, Isabelle | Vacher, Pierre | Boizard-Moracchini, Andréa | Guegan, Jean-Philippe | Garreau, Anne | Merillon, Nathalie | Vermorel, Agathe | Ribeiro, Emmanuel | Machelart, Irène | Lazaro, Estibaliz | Couzi, Lionel | Duffau, Pierre | Barnetche, Thomas | Pellegrin, Jean-Luc | Viallard, Jean-François | Saleh, Maya | Schaeverbeke, Thierry | Legembre, Patrick | Truchetet, Marie-Elise | Dumortier, Hélène | Contin-Bordes, Cécile | Sisirak, Vanja | Richez, Christophe | Blanco, Patrick

Edité par CCSD ; American Association for the Advancement of Science (AAAS) -

International audience. Systemic lupus erythematosus (SLE) is a systemic autoimmune disease characterized by a loss of tolerance toward self-nucleic acids, autoantibody production, interferon expression and signaling, and a defect in the regulatory T (T reg ) cell compartment. In this work, we identified that platelets from patients with active SLE preferentially interacted with T reg cells via the P-selectin/P-selectin glycoprotein ligand-1 (PSGL-1) axis. Selectin interaction with PSGL-1 blocked the regulatory and suppressive properties of T reg cells and particularly follicular T reg cells by triggering Syk phosphorylation and an increase in intracytosolic calcium. Mechanistically, P-selectin engagement on T reg cells induced a down-regulation of the transforming growth factor–β axis, altering the phenotype of T reg cells and limiting their immunosuppressive responses. In patients with SLE, we found an up-regulation of P- and E-selectin both on microparticles and in their soluble forms that correlated with disease activity. Last, blocking P-selectin in a mouse model of SLE improved cardinal features of the disease, such as anti-dsDNA antibody concentrations and kidney pathology. Overall, our results identify a P-selectin–dependent pathway that is active in patients with SLE and validate it as a potential therapeutic avenue.

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