CASM potentiates STING-driven NFκB signaling in immune cells
Benoit-Lizon, I.; Pignol, C.; Hooper, K.; Truntzer, C.; Radoua, A.; Dal Zuffo, L.; Lucas, J.; Frenger, Q.; Ponsardin, E.; Cornebise, C.; Cantaloube, I.; Ratier, A.; Aucagne, R.; Hermetet, F.; Shahoei, S. H.; Nelson, E. R.; Limagne, E.; Poüs, C.; Delomenie, C.; Soulas-Sprauel, P.; Gros, F.; Vegran, F.; Garrido, C.; Ghiringhelli, F.; Paul, C.; Florey, O.; Jacquin, E.; Apetoh, L.
Show abstract
Stimulator of Interferon Gene (STING), a key player of antimicrobial immune responses, has emerged as a promising target to mitigate inflammation and cancer. Following STING activation, proinflammatory molecules and type I Interferons (IFN) are released thus favoring the establishment of effective immune responses and adaptive immunity. Autophagy has been proposed to negatively regulate STING signaling. While STING activation drives microtubule-associated proteins 1A/1B light chain 3B (hereafter referred to as LC3) lipidation, the underlying mechanisms and functional consequences remain however incompletely defined. Especially, the consequences of STING-associated Conjugation of autophagy related (ATG) 8 to Single Membranes (CASM) in the control of immune responses remain elusive. Using innate and adaptive cells specifically inactivated for autophagy or CASM, we found that STING agonists primarily trigger CASM over autophagy. While STING-associated autophagy exerts negative feedback on the STING pathway and downstream type I IFN and pro-inflammatory responses, with different underlying molecular mechanisms between immune cells, STING-driven CASM potentiates NF{kappa}B-associated TNF production. These results overall uncover a new function of CASM and underscore the relevance of both CASM and autophagy in shaping STING signaling
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