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February 14, 2026Cell Reports1 citationsOpen Access

Revealing an unconventional JAK1/2-STAT3 branch in macrophage IFN-γ signaling

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MBMees BotmanAmsterdam University Medical CentersJHJosje M.A. HuismanAmsterdam University Medical CentersADAlexandra DrakakiAmsterdam University Medical Centers

Key Points

  • The research aims to identify and characterize a non-canonical signaling pathway of IFN-γ in macrophages.
  • Examined the signaling pathways activated by IFN-γ in macrophages.
  • Investigated the role of STAT3 alongside traditional STAT1 signaling.
  • Analyzed the formation of STAT1-STAT3 heterodimers in response to IFN-γ.
  • IFN-γ rapidly activates STAT3 via JAK1 and JAK2.
  • STAT3 forms heterodimers with STAT1 in the context of IFN-γ signaling.
  • The contribution of STAT3 to gene expression is limited compared to STAT1-STAT3 heterodimers.

Abstract

Interferon γ (IFN-γ) is a key cytokine in immune activation, especially anti-viral responses, and a driver of macrophage activation. It classically signals via JAK1/2-mediated STAT1 homodimers. Here, we identify an alternative, non-canonical signaling component in which IFN-γ simultaneously also activates STAT3. Our results show that IFN-γ activates STAT3 rapidly and directly through JAK1 and JAK2. We provide evidence that STAT3 can form heterodimers with STAT1 in this context and demonstrate that STAT3 is co-recruited to a subset of IFN-γ-induced, STAT1-bound regulatory elements. While IFN-γ directly activates STAT3, our results reveal that its contribution to IFN-γ-induced gene expression is limited. Instead, our data indicate that STAT1-STAT3 heterodimers exert a more prominent function in mixed cytokine environments. These findings uncover STAT3 as an unconventional player in macrophage IFN-γ signaling, underscoring the complex and context-dependent nature of cytokine signaling networks.

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Cite This Study

Botman et al. (2026) studied this question.

synapsesocial.com/papers/699010382ccff479cfe56bdahttps://doi.org/10.1016/j.celrep.2026.116985
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