Recognition and maturation of IL-18 by caspase-4 noncanonical inflammasome

Xuyan Shi1, Qichao Sun2,3, Yanjie Hou2

  • 1National Institute of Biological Sciences, Beijing, Beijing, P. R. China.

Nature
|November 22, 2023
PubMed

Insights

Human caspase-4, unlike mouse caspase-11, processes IL-18, a key cytokine. This finding clarifies noncanonical inflammasome function and IL-18

Area of Science:

  • Immunology
  • Molecular Biology
  • Structural Biology

Background:

  • Canonical (caspase-1) and noncanonical (caspase-4/5/11) inflammasomes cleave gasdermin D (GSDMD) to induce pyroptosis.
  • Caspase-1 processes IL-1β and IL-18, but lipopolysaccharide-activated caspase-4/5/11 targets remain largely unknown.
  • Understanding noncanonical inflammasome targets is crucial for immunity and disease research.

Purpose of the Study:

  • To determine if lipopolysaccharide-activated caspase-4/5/11 can process IL-18.
  • To elucidate the molecular mechanism of caspase-4/5/11 interaction with pro-IL-18.
  • To investigate the structural basis for species-specific differences in IL-18 processing.

Main Methods:

  • In vitro enzymatic assays using recombinant human caspase-4 and mouse caspase-11.
  • Crystal structure determination of the caspase-4-pro-IL-18 complex.
  • Bacterial infection models to assess IL-18 processing in vivo.

Main Results:

  • Human caspase-4, but not mouse caspase-11, efficiently processes pro-IL-18 in vitro and during bacterial infection.
  • Crystal structure reveals a binary substrate-recognition mechanism involving catalytic and exosite interactions for pro-IL-18.
  • Caspase-4, -5, and -1 utilize similar binary recognition for pro-IL-18, while caspase-11's exosite deviation prevents binding.
  • Cleavage by caspase-1, -4, or -5 induces conformational changes in IL-18, generating receptor-binding sites.

Conclusions:

  • IL-18 is identified as a direct target of lipopolysaccharide-activated human caspase-4/5.
  • The study reveals a paradigm shift in understanding noncanonical inflammasome-mediated defense mechanisms.
  • Findings enhance comprehension of IL-18's role in immunity and disease pathogenesis.

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