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May 14, 2026Cellular and Molecular Immunology2 citationsOpen Access

The alkylation of AIM2 by itaconate mediates macrophage PANoptosis during sepsis

JJJ JShanghai Jiao Tong UniversityYCYing ChenShanghai Jiao Tong UniversityPWPei WangShanghai Jiao Tong University

Key Points

  • This research investigates how itaconate affects macrophage cell death and inflammation through AIM2 modification.
  • Utilized in vitro lentiviral reconstitution in primary macrophages.
  • Employed plasmid-mediated expression in various cell lines.
  • Conducted in vivo models to evaluate the role of AIM2 alkylation in systemic sepsis.
  • High concentrations of itaconate induced AIM2 C113 alkylation, leading to macrophage PANoptosis.
  • AIM2 C113A mutation abolished itaconate-induced stabilization and PANoptosis.
  • In vivo models confirmed the pathogenic role of the itaconate-AIM2 pathway in severe sepsis.

Abstract

Abstract Although the immunometabolite itaconate has long been considered an anti-inflammatory, we found that its profound accumulation paradoxically drives macrophage cell death and pro-inflammatory responses. However, the exact molecular mechanisms underlying itaconate-induced macrophage toxicity remain unclear. Here, we demonstrate that pathophysiologically relevant high concentrations of itaconate covalently alkylate the absent in melanoma 2 (AIM2) protein at the cysteine 113 (C113) residue. Itaconate-mediated C113 alkylation structurally stabilizes the AIM2 protein and triggers a conformational change, enabling it to drive ASC oligomerization, PANoptosome assembly, and subsequent macrophage PANoptosis. Utilizing in vitro lentiviral reconstitution in primary macrophages alongside plasmid-mediated expression in cell lines, we rigorously confirmed that the AIM2 C113A mutation completely abolishes itaconate-induced AIM2 stabilization and PANoptosis. In vivo models further corroborated the pathogenic contribution of this axis to systemic sepsis. Taken together, our findings reveal a novel pro-inflammatory mechanism of itaconate via the post-translational modification of AIM2. The itaconate-AIM2 alkylation axis provides crucial mechanistic insights into macrophage depletion and systemic inflammation, highlighting a potential therapeutic target for severe sepsis.

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Cite This Study

J et al. (2026) studied this question.

synapsesocial.com/papers/6a0567d2a550a87e60a2009bhttps://doi.org/10.1038/s41423-026-01414-x
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1[Itaconic acid alleviates macrophage PANoptosis in sepsis2025
  2. 2The metabolite α-ketoglutarate induces AIM2-dependent PANoptosis through demethylase TET22026
  3. 3Control of immune cell signaling by the immuno-metabolite itaconate2024 · 18 citations
  4. 4Endogenously produced itaconate negatively regulates innate-driven cytokine production and drives global ubiquitination in human macrophages2024 · 15 citations
  5. 5STAT1 itaconation prevents macrophage cytolistic mtDNA -induced inflammation in Wear Particle-Induced Aseptic Loosening2025