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Updated: Sep 15, 2025

Detection of Inflammasome Activation and Pyroptotic Cell Death in Murine Bone Marrow-derived Macrophages
Published on: May 21, 2018
Endolysosomal damage surveillance enables rapid inflammasome sensing of pathogens
Sonia Shivcharan1, Doulathunnisa Ahamed Younis1, Skylar S Wright1
1Department of Immunology, UConn Health School of Medicine, 263 Farmington Avenue, Farmington, CT 06030, USA.
Abstract:
Host cell cytosol is monitored by inflammasomes. Cytosolic invasion of pathogens involves breaching endolysosomal membranes, which is sensed by galectins triggering endolysosomal damage response. Whether and how endomembrane damage surveillance impacts inflammasome sensing of pathogens is unknown. Here, we show that endosomal damage sensing by galectin-8 licenses rapid noncanonical inflammasome sensing of intracellular bacteria; caspase-4 sensing of cytosol-invading bacteria, the consequent gasdermin D (GSDMD)-mediated pyroptosis, and interleukin (IL)-18 activation are greatly reduced in galectin-8-deficient human epithelial cells. Interestingly, galectin-8 promotes caspase-4 activation independently of the autophagic receptor NDP52 and bacterial restriction. Instead, we demonstrate that galectin-8 exists in a complex with caspase-4 in naive cells and recruits caspase-4 to bacteria upon endolysosomal rupture, enabling lipopolysaccharide (LPS) sensing. Collectively, this study reveals galectin-8 as a hub integrating endomembrane damage sensing and inflammasome sensing. Thus, tethering the pathogen sensor caspase-4 to the endomembrane damage sensor galectin-8 poises the host to rapidly detect bacteria that breach the endolysosomal network.
Insights
Galectin-8 sensing of endosomal damage enables rapid inflammasome activation against intracellular bacteria. This links membrane damage detection to caspase-4 activation and host defense against pathogens.
Area of Science:
- Cellular Microbiology
- Immunology
- Molecular Biology
Background:
- Inflammasomes monitor host cell cytosol for pathogens.
- Galectins detect endolysosomal membrane damage during pathogen invasion.
- The interplay between endomembrane damage sensing and inflammasome activation remains unclear.
Purpose of the Study:
- To investigate the role of endomembrane damage sensing in inflammasome activation against intracellular bacteria.
- To elucidate the mechanism by which galectin-8 influences noncanonical inflammasome sensing.
Main Methods:
- Utilized galectin-8-deficient human epithelial cells.
- Assessed caspase-4 activation, gasdermin D (GSDMD)-mediated pyroptosis, and interleukin (IL)-18 activation.
- Investigated the interaction between galectin-8 and caspase-4 using co-complex formation and recruitment assays.
Main Results:
- Galectin-8 deficiency significantly reduced inflammasome sensing of intracellular bacteria, including caspase-4 activation, pyroptosis, and IL-18 release.
- Galectin-8 promotes caspase-4 activation independently of NDP52 and bacterial restriction.
- Galectin-8 forms a complex with caspase-4 and recruits it to bacteria upon endolysosomal rupture, facilitating lipopolysaccharide (LPS) sensing.
Conclusions:
- Galectin-8 acts as a crucial link between endomembrane damage surveillance and inflammasome sensing.
- The galectin-8-caspase-4 complex enables rapid host detection of bacteria breaching the endolysosomal network.
- This integrated sensing mechanism enhances host defense against intracellular bacterial pathogens.
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