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March 14, 2026Cell Reports0 citationsOpen Access

Unified phase separation drives DNA-induced inflammasome activation of the AIM2-like receptors

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XHXiangyu HuangYZYu ZhangZZZhenchao Zhao

Key Points

  • The study aims to explore how AIM2-like receptors activate inflammasomes through phase separation upon DNA binding.
  • Investigated liquid-liquid phase separation (LLPS) of AIM2 upon dsDNA binding.
  • Examined the role of OB1 and OB2 subdomains in LLPS and inflammasome activation.
  • Used AIM2 knockout THP-1 cells to study the impact of LLPS-deficient AIM2 mutants on responses.
  • Analyzed ASC recruitment and its role in solidifying AIM2-dsDNA condensates.
  • Identified viral components that disrupt LLPS as an immune evasion tactic.
  • Demonstrated that AIM2 undergoes LLPS upon dsDNA binding, crucial for inflammasome activation.
  • Found that LLPS-deficient AIM2 mutants showed significantly reduced inflammasome activation.
  • Highlighted the conservation of LLPS across multiple ALRs in response to dsDNA.
  • Identified VP22 as a viral antagonist that disrupts AIM2-dsDNA LLPS, aiding viral evasion.

Abstract

AIM2-like receptors (ALRs) are critical for host defense by sensing intracellular foreign DNA and aberrant self-DNA to activate inflammasomes. Here, we demonstrate that both human and mouse AIM2 undergo liquid-liquid phase separation (LLPS) upon binding dsDNA. Multivalent interactions within the OB1 and OB2 subdomains of the AIM2 HIN domain are essential for LLPS and subsequent inflammasome activation. In AIM2 knockout THP-1 cells, LLPS-deficient AIM2 mutants exhibit markedly impaired inflammasome activation and antiviral responses. ASC recruitment promotes the solidification of AIM2-dsDNA condensates. Notably, HIN domains from multiple ALRs, including human AIM2, human IFI16, mouse AIM2, and porcine MNDAL, form dsDNA-induced condensates, suggesting that HIN-domain-mediated LLPS is a conserved mechanism across the HIN-200 family. Finally, we identify the α-herpesvirus tegument protein VP22 as a viral antagonist that disrupts AIM2-dsDNA LLPS to evade AIM2 inflammasome activation. Collectively, these findings elucidate a unified LLPS-dependent mechanism for ALR-mediated DNA sensing and inflammasome activation and uncover a viral immune evasion strategy targeting biomolecular condensates.

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Cite This Study

Huang et al. (2026) studied this question.

synapsesocial.com/papers/69b4fb1bb39f7826a300b9f2https://doi.org/10.1016/j.celrep.2026.117065
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