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Identifying Caspases and their Motifs that Cleave Proteins During Influenza A Virus Infection
Published on: July 21, 2022
[Programmed cell death in paramyxovirus infection]
Ye Liu1,2, Yilong Wang3,4, Zhixu He5
1Department of Immunology, Zunyi Medical University, Zunyi 563000, Guizhou Province, China. liuye210320@outlook.com.
Abstract:
Paramyxoviruses are important respiratory pathogens with substantial clinical relevance in pediatric infectious diseases. During infection, multiple forms of programmed cell death (PCD) may be induced, and this plays pivotal roles in viral replication, dissemination, and host immune responses, thereby profoundly influencing the viral life cycle and disease progression. On one hand, PCD facilitates the clearance of infected cells, restricts viral spread, and activates host immune defenses, thereby enhancing antiviral immunity. On the other hand, excessive or dysregulated cell death may lead to tissue damage and immune imbalance, creating a microenvironment conducive to viral replication and exacerbating disease severity. For instance, apoptosis-mediated by both extrinsic and intrinsic pathways-contributes to infection control but may also be hijacked by viruses to promote dissemination. Pyroptosis, driven by inflammasome activation, triggers lytic cell death and the release of pro-inflammatory cytokines. Necroptosis, mediated by the RIPK1-RIPK3-MLKL signaling axis, and pyroptosis both amplify innate immune responses but may concurrently induce inflammatory dysregulation. Immunogenic cell death (ICD), characterized by the release of damage-associated molecular patterns and neoantigens, activates antigen-specific immune responses and holds therapeutic potential for antiviral and antitumor interventions. Emerging evidence suggests that ferroptosis, through the modulation of iron metabolism and associated transporters, may also participate in viral replication and infected cell clearance. This review comprehensively summarizes the roles of apoptosis, pyroptosis, necroptosis, ICD, and ferroptosis in paramyxovirus infection, aiming to deepen the understanding of paramyxovirus pathogenesis and to provide insights for developing novel antiviral strategies.
Insights
Paramyxoviruses trigger various programmed cell death (PCD) types, influencing viral spread and immune responses in children. Understanding these cell death pathways offers new avenues for antiviral therapies against these respiratory pathogens.
Area of Science:
- Virology
- Immunology
- Cell Biology
Background:
- Paramyxoviruses are key respiratory pathogens in pediatric populations.
- Viral infection triggers diverse programmed cell death (PCD) pathways.
- PCD critically impacts viral replication, spread, and host immunity.
Purpose of the Study:
- To review the roles of different PCD types in paramyxovirus infections.
- To elucidate how PCD influences viral pathogenesis and disease progression.
- To identify potential targets for novel antiviral strategies.
Main Methods:
- Comprehensive literature review of programmed cell death in paramyxovirus infection.
- Analysis of apoptosis, pyroptosis, necroptosis, immunogenic cell death (ICD), and ferroptosis.
- Synthesis of findings on viral-host interactions and immune modulation.
Main Results:
- Apoptosis, pyroptosis, and necroptosis have dual roles in controlling or promoting paramyxovirus infection.
- Immunogenic cell death (ICD) presents therapeutic potential.
- Ferroptosis is emerging as a relevant cell death pathway in viral infections.
Conclusions:
- Programmed cell death pathways are integral to paramyxovirus pathogenesis.
- Targeting specific PCD mechanisms may yield effective antiviral therapies.
- Further research into PCD in pediatric paramyxovirus infections is warranted.
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