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November 30, 2023Science79 citationsOpen Access

Divergent molecular networks program functionally distinct CD8+skin-resident memory T cells

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SPSimone L. ParkSCSusan N. ChristoAWAlexandria Wells

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Abstract

Skin-resident CD8 + T cells include distinct interferon-γ–producing tissue-resident memory T type 1 (T RM 1) and interleukin-17 (IL-17)–producing (T RM 17) subsets that differentially contribute to immune responses. However, whether these populations use common mechanisms to establish tissue residence is unknown. In this work, we show that T RM 1 and T RM 17 cells navigate divergent trajectories to acquire tissue residency in the skin. T RM 1 cells depend on a T-bet–Hobit–IL-15 axis, whereas T RM 17 cells develop independently of these factors. Instead, c-Maf commands a tissue-resident program in T RM 17 cells parallel to that induced by Hobit in T RM 1 cells, with an ICOS–c-Maf–IL-7 axis pivotal to T RM 17 cell commitment. Accordingly, by targeting this pathway, skin T RM 17 cells can be ablated without compromising their T RM 1 counterparts. Thus, skin-resident T cells rely on distinct molecular circuitries, which can be exploited to strategically modulate local immunity.

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Park et al. (2023) studied this question.

synapsesocial.com/papers/6a6199cedcbd73a1130a7423https://doi.org/10.1126/science.adi8885
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