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A T cell-IL-3 axis controls the responsiveness of sensory neurons to allergens

GSE223220 Mus musculus Expression profiling by high throughput sequencing 4 samples Submitted 2024/06/11 Platform GPL21626
Summary
In naïve individuals, sensory neurons directly detect and respond to allergens, leading both to the sensation of itch and the activation of local innate immune cells, which initiate the allergic immune response1,2. In the setting of chronic allergic inflammation, immune factors prime sensory neurons, causing pathologic itch3-7. While these bidirectional neuroimmune circuits drive responses to allergens, whether immune cells regulate the set-point for neuronal activation by allergens in the naïve state is unknown. Here we describe a T cell-IL-3 signaling axis that controls the allergen responsiveness of cutaneous sensory neurons. We define a poorly characterized epidermal T cell subset8, termed GD3 cells, that produces its hallmark cytokine IL-3 to promote allergic itch and the initiation of the allergic immune response. Mechanistically, IL-3 acts on Il3ra-expressing sensory neurons in a JAK2-dependent manner to lower their threshold for allergen activation without independently eliciting itch. This T cell-IL-3 signaling axis further acts via STAT5 to promote neuropeptide production and the initiation of allergic immunity. These results reveal an endogenous immune rheostat that sits upstream of and governs sensory neuronal responses to allergens upon first exposure. This pathway may explain individual differences in allergic susceptibility and opens novel therapeutic avenues for treating allergic diseases.
Published in
A γδ T cell-IL-3 axis controls allergic responses through sensory neurons
Flayer CH, Kernin IJ, Matatia PR et al. · Nature 2024 · PMID 39232162 · doi:10.1038/s41586-024-07869-0
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Also filed as BioProject PRJNA925328 and SRA study SRP418229. Searching any of these in the dataset finder brings you back here.

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