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Updated: Mar 19, 2026

Author Spotlight: Flow Cytometric Determination of Pyroptosis in Avian Cells
Published on: May 31, 2024
GsdmD p30 elicited by caspase-11 during pyroptosis forms pores in membranes
Robin A Aglietti1, Alberto Estevez2, Aaron Gupta3
1Department of Early Discovery Biochemistry, Genentech, Inc., South San Francisco, CA 94080;
Abstract:
Gasdermin-D (GsdmD) is a critical mediator of innate immune defense because its cleavage by the inflammatory caspases 1, 4, 5, and 11 yields an N-terminal p30 fragment that induces pyroptosis, a death program important for the elimination of intracellular bacteria. Precisely how GsdmD p30 triggers pyroptosis has not been established. Here we show that human GsdmD p30 forms functional pores within membranes. When liberated from the corresponding C-terminal GsdmD p20 fragment in the presence of liposomes, GsdmD p30 localized to the lipid bilayer, whereas p20 remained in the aqueous environment. Within liposomes, p30 existed as higher-order oligomers and formed ring-like structures that were visualized by negative stain electron microscopy. These structures appeared within minutes of GsdmD cleavage and released Ca(2+) from preloaded liposomes. Consistent with GsdmD p30 favoring association with membranes, p30 was only detected in the membrane-containing fraction of immortalized macrophages after caspase-11 activation by lipopolysaccharide. We found that the mouse I105N/human I104N mutation, which has been shown to prevent macrophage pyroptosis, attenuated both cell killing by p30 in a 293T transient overexpression system and membrane permeabilization in vitro, suggesting that the mutants are actually hypomorphs, but must be above certain concentration to exhibit activity. Collectively, our data suggest that GsdmD p30 kills cells by forming pores that compromise the integrity of the cell membrane.
Insights
Gasdermin-D (GsdmD) p30 forms pores in cell membranes, triggering pyroptosis to eliminate bacteria. This pore formation compromises cell integrity, explaining GsdmD
Area of Science:
- Immunology
- Cell Biology
- Biochemistry
Background:
- Gasdermin-D (GsdmD) cleavage by inflammatory caspases generates a p30 fragment that induces pyroptosis.
- Pyroptosis is crucial for innate immunity and eliminating intracellular bacteria.
- The precise mechanism by which GsdmD p30 induces pyroptosis remains unclear.
Purpose of the Study:
- To elucidate the mechanism by which Gasdermin-D p30 induces pyroptosis.
- To investigate the structural and functional properties of the GsdmD p30 fragment.
Main Methods:
- Liposome-based assays to study GsdmD p30 pore formation and membrane localization.
- Negative stain electron microscopy to visualize GsdmD p30 oligomers.
- Caspase-11 activation in immortalized macrophages using lipopolysaccharide.
- Analysis of GsdmD mutations affecting pyroptosis and membrane permeabilization.
Main Results:
- Human GsdmD p30 forms functional pores in lipid bilayers.
- GsdmD p30 oligomerizes into ring-like structures within membranes.
- These pores release Ca(2+) from liposomes and permeabilize membranes.
- A specific GsdmD mutation attenuated both cell killing and membrane permeabilization.
- GsdmD p30 was found in the membrane fraction of activated macrophages.
Conclusions:
- Gasdermin-D p30 kills cells by forming pores that compromise cell membrane integrity.
- This pore formation is the key mechanism driving pyroptosis.
- GsdmD p30's ability to form membrane pores is essential for its role in innate immunity.

