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Author Spotlight: THP-1 Macrophage Response to LPS/ATP — Unveiling the Pyroptosis, Apoptosis, and Necroptosis Spectrum
Published on: May 3, 2024
Switching from Apoptosis to Pyroptosis: Gasdermin-Elicited Inflammation and Antitumor Immunity
1Division of Immunology and Molecular Biology, Cancer Research Institute, Kanazawa University, Kakuma-machi, Kanazawa 920-1192, Japan.
Abstract:
Pyroptosis is a necrotic form of regulated cell death. Gasdermines (GSDMs) are a family of intracellular proteins that execute pyroptosis. While GSDMs are expressed as inactive forms, certain proteases proteolytically activate them. The N-terminal fragments of GSDMs form pores in the plasma membrane, leading to osmotic cell lysis. Pyroptotic cells release pro-inflammatory molecules into the extracellular milieu, thereby eliciting inflammation and immune responses. Recent studies have significantly advanced our knowledge of the mechanisms and physiological roles of pyroptosis. GSDMs are activated by caspases and granzymes, most of which can also induce apoptosis in different situations, for example where the expression of GSDMs is too low to cause pyroptosis; that is, caspase/granzyme-induced apoptosis can be switched to pyroptosis by the expression of GSDMs. Pyroptosis appears to facilitate the killing of tumor cells by cytotoxic lymphocytes, and it may also reprogram the tumor microenvironment to an immunostimulatory state. Understanding pyroptosis may help the development of cancer immunotherapy. In this review article, recent findings on the mechanisms and roles of pyroptosis are introduced. The effectiveness and limitations of pyroptosis in inducing antitumor immunity are also discussed.
Insights
Pyroptosis, a cell death form executed by Gasdermin proteins, triggers inflammation and immune responses. Understanding pyroptosis mechanisms is key for developing effective cancer immunotherapies.
Area of Science:
- Cellular Biology
- Immunology
Background:
- Pyroptosis is a regulated necrotic cell death pathway.
- Gasdermin (GSDM) proteins execute pyroptosis by forming membrane pores.
- GSDM activation by proteases leads to cell lysis and pro-inflammatory molecule release.
Purpose of the Study:
- To review recent advancements in pyroptosis mechanisms.
- To discuss the physiological roles of pyroptosis.
- To evaluate pyroptosis's potential in cancer immunotherapy.
Main Methods:
- Review of recent scientific literature on pyroptosis.
- Analysis of GSDM activation pathways.
- Discussion of pyroptosis's role in tumor immunity.
Main Results:
- Pyroptosis is induced by caspases and granzymes, which can also induce apoptosis.
- GSDM expression can switch apoptosis to pyroptosis.
- Pyroptosis aids tumor cell killing and can create an immunostimulatory tumor microenvironment.
Conclusions:
- Pyroptosis plays a significant role in antitumor immunity.
- Further understanding of pyroptosis can inform cancer immunotherapy development.
- The effectiveness and limitations of pyroptosis in cancer treatment require further investigation.
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