Aiolos restricts the generation of antigen-inexperienced, virtual memory CD8<sup>+</sup> T cells in mice.

Pokhrel, Srijana; Dileepan, Gayathri; Leonard, Melissa R; Warren, Robert T; Salem, Mariam; Yacapraro, Allison J; Gong, Qiaoke; Jones, Devin M et al. · Nat Commun · 2025

basic_science · Level V

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Abstract

CD8<sup>+</sup> virtual memory T (T<sub>VM</sub>) cells rapidly respond to infection via antigen-independent bystander effector functions. While it is recognized that T<sub>VM</sub> cells arise independently of foreign antigen encounter, the mechanisms governing their development are not fully understood. Here, we identify the Ikaros transcription factor Aiolos as a negative regulator of T<sub>VM</sub> cell programming. We observe enhanced frequencies and numbers of T<sub>VM</sub> in the spleen, liver, and blood of unchallenged Aiolos-deficient (Ikzf3<sup>-/-</sup>) mice and in the lungs 1-day post-infection with influenza A virus (IAV). Furthermore, Ikzf3<sup>-/-</sup> T<sub>VM</sub> cells produce elevated IFN-γ and granzyme B in response to cytokine stimulation. Importantly, Aiolos-deficient mice control IAV more rapidly and exhibit reduced morbidity, indicating enhanced T<sub>VM</sub> cell functionality. Mechanistically, Aiolos represses the expression of the transcription factor Eomes and the IL-15R subunit CD122, known positive regulators of T<sub>VM</sub> gene program. Collectively, these findings establish Aiolos as a molecular repressor of T<sub>VM</sub> programming and responses.

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