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Published on: May 21, 2018
Pyroptosis in neutrophils: Multimodal integration of inflammasome and regulated cell death signaling pathways
George R Dubyak1, Brandon A Miller1, Eric Pearlman2,3
1Department of Physiology and Biophysics, School of Medicine, Case Western Reserve University, Cleveland, Ohio, USA.
Abstract:
Pyroptosis is a proinflammatory mode of lytic cell death mediated by accumulation of plasma membrane (PM) macropores composed of gasdermin-family (GSDM) proteins. It facilitates two major functions in innate immunity: (i) elimination of intracellular replicative niches for pathogenic bacteria; and (ii) non-classical secretion of IL-1 family cytokines that amplify host-beneficial inflammatory responses to microbial infection or tissue damage. Physiological roles for gasdermin D (GSDMD) in pyroptosis and IL-1β release during inflammasome signaling have been extensively characterized in macrophages. This involves cleavage of GSDMD by caspase-1 to generate GSDMD macropores that mediate IL-1β efflux and progression to pyroptotic lysis. Neutrophils, which rapidly accumulate in large numbers at sites of tissue infection or damage, become the predominant local source of IL-1β in coordination with their potent microbiocidal capacity. Similar to macrophages, neutrophils express GSDMD and utilize the same spectrum of diverse inflammasome platforms for caspase-1-mediated cleavage of GSDMD. Distinct from macrophages, neutrophils possess a remarkable capacity to resist progression to GSDMD-dependent pyroptotic lysis to preserve their viability for efficient microbial killing while maintaining GSDMD-dependent mechanisms for export of bioactive IL-1β. Rather, neutrophils employ cell-specific mechanisms to conditionally engage GSDMD-mediated pyroptosis in response to bacterial pathogens that use neutrophils as replicative niches. GSDMD and pyroptosis have also been mechanistically linked to induction of NETosis, a signature neutrophil pathway that expels decondensed nuclear DNA into extracellular compartments for immobilization and killing of microbial pathogens. This review summarizes a rapidly growing number of recent studies that have produced new insights, unexpected mechanistic nuances, and some controversies regarding the regulation of, and roles for, neutrophil inflammasomes, pyroptosis, and GSDMs in diverse innate immune responses.
Insights
Pyroptosis, a cell death process involving gasdermin D (GSDMD) proteins, eliminates bacteria and releases IL-1 cytokines. Neutrophils use GSDMD for cytokine release but resist lysis, unlike macrophages, to fight infection effectively.
Area of Science:
- Immunology
- Cell Biology
- Microbiology
Background:
- Pyroptosis is a lytic cell death pathway mediated by gasdermin family (GSDM) proteins, crucial for innate immunity.
- It eliminates intracellular bacterial pathogens and facilitates IL-1 cytokine secretion, amplifying inflammatory responses.
- Gasdermin D (GSDMD) cleavage by caspase-1 drives pyroptosis and IL-1β release in macrophages.
Purpose of the Study:
- To review recent findings on neutrophil inflammasomes, pyroptosis, and GSDMs in innate immunity.
- To highlight the distinct mechanisms of GSDMD regulation and pyroptosis in neutrophils compared to macrophages.
- To explore the link between GSDMD, pyroptosis, and NETosis in neutrophil antimicrobial functions.
Main Methods:
- Review of recent scientific literature on neutrophil inflammasomes, pyroptosis, and GSDMs.
- Analysis of studies investigating GSDMD cleavage, pore formation, and IL-1β secretion in neutrophils.
- Examination of the interplay between GSDMD, pyroptosis, and neutrophil extracellular trap (NET) formation.
Main Results:
- Neutrophils express GSDMD and utilize inflammasomes for caspase-1-mediated cleavage, similar to macrophages.
- Neutrophils resist GSDMD-dependent pyroptotic lysis to maintain viability for microbial killing while secreting IL-1β.
- Neutrophils conditionally engage pyroptosis against specific bacterial pathogens that exploit them as replicative niches.
- GSDMD and pyroptosis are mechanistically linked to NETosis, a neutrophil pathway for pathogen immobilization.
Conclusions:
- Neutrophils possess unique strategies to leverage GSDMD for IL-1β secretion and pathogen clearance while avoiding lytic cell death.
- Understanding neutrophil GSDMD regulation and pyroptosis offers insights into host defense against bacterial infections.
- Further research is needed to clarify the nuances and controversies surrounding GSDMD, pyroptosis, and inflammasome function in neutrophils.
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