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Identifying Caspases and their Motifs that Cleave Proteins During Influenza A Virus Infection
Published on: July 21, 2022
MLKL-Driven Inflammasome Activation and Caspase-8 Mediate Inflammatory Cell Death in Influenza A Virus Infection
Xuqiu Lei1, Yongzhi Chen1, Egil Lien1,2
1Program in Innate Immunity, Department of Medicine, University of Massachusetts Chan Medical School, Worcester, Massachusetts, USA.
Abstract:
Influenza A virus (IAV) triggers multiple programmed cell death pathways, including MLKL-dependent necroptosis, caspase-8-dependent apoptosis, and caspase-1-dependent pyroptosis in myeloid cells. All three pathways share common upstream regulators, namely, ZBP1 and RIPK3. Yet, the molecular mechanism underlying IAV-induced inflammasome activation remains unclear. Here, we demonstrate that MLKL promotes inflammasome activation and IL-1β processing in IAV-infected macrophages. MLKL drives NLRP3 inflammasome activation through potassium efflux. In the absence of the MLKL-inflammasome axis, caspase-8 coordinates the maturation and secretion of IL-1β. MLKL alone is dispensable for host inflammatory responses to IAV in vivo. Taken together, MLKL and caspase-8 serve as redundant mechanisms by which to drive an inflammatory form of cell death in response to an IAV infection. IMPORTANCE Influenza A virus (IAV) induces multiple types of cell death, which play important roles in the host antiviral responses but can also cause unwanted inflammation and tissue damage. In this study, we dissect the interplay of cell death pathways and demonstrate that macrophages utilize redundant mechanisms to drive an inflammatory form of cell death upon IAV infection. MLKL, the executor of necroptosis, promotes inflammasome activation and pyroptotic cell death. When the MLKL-inflammasome axis is inhibited, cells divert to caspase-8-dependent inflammatory cell death. Our findings advance the current understanding of the innate immune response to IAV infection as well as broader contexts involving multifaceted cell death.
Insights
Influenza A virus infection triggers cell death pathways. MLKL promotes inflammasome activation, but caspase-8 offers a redundant inflammatory response, highlighting dual mechanisms in host defense.
Area of Science:
- Immunology
- Cell Biology
- Virology
Background:
- Influenza A virus (IAV) induces programmed cell death pathways like necroptosis, apoptosis, and pyroptosis in myeloid cells.
- Upstream regulators ZBP1 and RIPK3 are common to these IAV-induced cell death pathways.
- The precise mechanism of IAV-induced inflammasome activation remains incompletely understood.
Purpose of the Study:
- To elucidate the molecular mechanisms by which IAV infection activates inflammasomes in macrophages.
- To investigate the role of MLKL in IAV-induced inflammasome activation and IL-1β processing.
- To determine the interplay between MLKL and caspase-8 in orchestrating inflammatory cell death during IAV infection.
Main Methods:
- Investigated programmed cell death pathways in IAV-infected myeloid cells.
- Utilized molecular assays to assess inflammasome activation and IL-1β processing.
- Examined the role of MLKL and caspase-8 in host inflammatory responses in vivo and in vitro.
Main Results:
- MLKL promotes inflammasome activation and IL-1β processing in IAV-infected macrophages via potassium efflux.
- In the absence of the MLKL-inflammasome axis, caspase-8 mediates IL-1β maturation and secretion.
- MLKL is not essential for host inflammatory responses to IAV in vivo, indicating functional redundancy.
Conclusions:
- MLKL and caspase-8 act as redundant pathways to drive inflammatory cell death in response to IAV infection.
- These findings enhance understanding of innate immune responses to IAV and multifaceted cell death.
- Macrophages employ overlapping mechanisms for inflammatory cell death, balancing antiviral defense and tissue damage.
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