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Evaluation of Caspase Activation to Assess Innate Immune Cell Death
Published on: January 20, 2023
Gasdermins as evolutionarily conserved executors of inflammation and cell death
Kaiwen W Chen1,2, Petr Broz3
1Immunology Translational Research Programme, Department of Microbiology and Immunology, Yong Loo Lin School of Medicine, National University of Singapore, Singapore, Singapore. kaiwen.chen@nus.edu.sg.
Abstract:
The gasdermins are a family of pore-forming proteins that have recently emerged as executors of pyroptosis, a lytic form of cell death that is induced by the innate immune system to eradicate infected or malignant cells. Mammalian gasdermins comprise a cytotoxic N-terminal domain, a flexible linker and a C-terminal repressor domain. Proteolytic cleavage in the linker releases the cytotoxic domain, thereby allowing it to form β-barrel membrane pores. Formation of gasdermin pores in the plasma membrane eventually leads to a loss of the electrochemical gradient, cell death and membrane rupture. Here we review recent work that has expanded our understanding of gasdermin biology and function in mammals by revealing their activation mechanism, their regulation and their roles in autoimmunity, host defence and cancer. We further highlight fungal and bacterial gasdermin pore formation pointing to a conserved mechanism of cell death induction.
Insights
Gasdermins are pore-forming proteins that execute pyroptosis, a cell death mechanism. This review details their activation, regulation, and roles in immunity, cancer, and conserved across species.
Area of Science:
- Immunology
- Cell Biology
- Molecular Biology
Background:
- Gasdermins are pore-forming proteins central to pyroptosis, a critical innate immune cell death pathway.
- Pyroptosis eliminates infected or malignant cells, playing a vital role in host defense and cancer surveillance.
- Mammalian gasdermins possess a conserved structure: a cytotoxic N-terminal domain, linker, and C-terminal repressor domain.
Purpose of the Study:
- To review recent advancements in understanding gasdermin biology and function in mammals.
- To elucidate the activation mechanisms and regulatory networks governing gasdermin activity.
- To highlight the diverse roles of gasdermins in autoimmunity, host defense, and cancer.
Main Methods:
- Literature review of recent research on gasdermin function.
- Analysis of molecular mechanisms underlying gasdermin activation and pore formation.
- Comparative examination of gasdermin roles across different biological contexts (mammalian, fungal, bacterial).
Main Results:
- Proteolytic cleavage of the linker releases the N-terminal cytotoxic domain, enabling pore formation.
- Gasdermin pore formation leads to plasma membrane permeabilization, loss of electrochemical gradient, and cell lysis.
- Gasdermins are implicated in critical physiological and pathological processes, including host defense and cancer.
Conclusions:
- Gasdermin-mediated pyroptosis is a conserved cell death mechanism with significant implications for health and disease.
- Further research into gasdermin activation and regulation can yield therapeutic strategies for immune disorders and cancer.
- Understanding gasdermin function provides insights into fundamental cellular processes and host-pathogen interactions.
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