NF-κB subunits RelA and c-Rel selectively control CD4+ T cell function in multiple sclerosis and cancer

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Lalle, Guilhem | Lautraite, Raphaëlle | Bouherrou, Khaled | Plaschka, Maud | Pignata, Aurora | Voisin, Allison | Twardowski, Julie | Perrin-Niquet, Marlène | Stéphan, Pierre | Durget, Sarah | Tonon, Laurie | Ardin, Maude | Degletagne, Cyril | Viari, Alain | Belgarbi Dutron, Laurence | Davoust, Nathalie | Postler, Thomas | Zhao, Jingyao | Caux, Christophe | Caramel, Julie | Dalle, Stéphane | Cassier, Philippe | Klein, Ulf | Schmidt-Supprian, Marc | Liblau, Roland | Ghosh, Sankar | Grinberg-Bleyer, Yenkel

Edité par CCSD ; Rockefeller University Press -

International audience. The outcome of cancer and autoimmunity is often dictated by the effector functions of CD4+ conventional T cells (Tconv). Although activation of the NF-κB signaling pathway has long been implicated in Tconv biology, the cell-autonomous roles of the separate NF-κB transcription-factor subunits are unknown. Here, we dissected the contributions of the canonical NF-κB subunits RelA and c-Rel to Tconv function. RelA, rather than c-Rel, regulated Tconv activation and cytokine production at steady-state and was required for polarization toward the TH17 lineage in vitro. Accordingly, RelA-deficient mice were fully protected against neuroinflammation in a model of multiple sclerosis due to defective transition to a pathogenic TH17 gene-expression program. Conversely, Tconv-restricted ablation of c-Rel impaired their function in the microenvironment of transplanted tumors, resulting in enhanced cancer burden. Moreover, Tconv required c-Rel for the response to PD-1-blockade therapy. Our data reveal distinct roles for canonical NF-κB subunits in different disease contexts, paving the way for subunit-targeted immunotherapies.

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