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Updated: Feb 5, 2026

Evaluation of Caspase Activation to Assess Innate Immune Cell Death
Published on: January 20, 2023
Remarkably Robust Antiviral Immune Response despite Combined Deficiency in Caspase-8 and RIPK3
Yanjun Feng1, Devon Livingston-Rosanoff1, Linda Roback1
1Department of Microbiology and Immunology, Emory Vaccine Center, Emory University School of Medicine, Atlanta, GA 30322.
Abstract:
Caspase-8 (Casp8)-mediated signaling triggers extrinsic apoptosis while suppressing receptor-interacting protein kinase (RIPK) 3-dependent necroptosis. Although Casp8 is dispensable for the development of innate and adaptive immune compartments in mice, the importance of this proapoptotic protease in the orchestration of immune response to pathogens remains to be fully explored. In this study, Casp8 C57BL/6 mice show robust innate and adaptive immune responses to the natural mouse pathogen, murine CMV. When young, these mice lack lpr-like lymphoid hyperplasia and accumulation of either B220 CD3+ or B220-CD3+CD4+ and CD8+ T cells with increased numbers of immature myeloid cells that are evident in older mice. Dendritic cell activation and cytokine production drive both NK and T cell responses to control viral infection in these mice, suggesting that Casp8 is dispensable to the generation of antiviral host defense. Curiously, NK and T cell expansion is amplified, with greater numbers observed by 7 d postinfection compared with either Casp8 or wild type (Casp8 ) littermate controls. Casp8 and RIPK3 are natural targets of virus-encoded cell death suppressors that prevent infected cell apoptosis and necroptosis, respectively. It is clear from the current studies that the initiation of innate immunity and the execution of cytotoxic lymphocyte functions are all preserved despite the absence of Casp8 in responding cells. Thus, Casp8 and RIPK3 signaling is completely dispensable to the generation of immunity against this natural herpesvirus infection, although the pathways driven by these initiators serve as a crucial first line for host defense within virus-infected cells.
Insights
Caspase-8 (Casp8) is not essential for mounting immune responses against murine CMV infection. Mice lacking Casp8 effectively control viral infections, showing robust innate and adaptive immunity.
Area of Science:
- Immunology
- Virology
- Cell Death Pathways
Background:
- Caspase-8 (Casp8) signaling initiates apoptosis and inhibits necroptosis.
- The role of Casp8 in orchestrating pathogen-specific immune responses is not fully understood.
- Casp8 is crucial for controlling viral infections by triggering apoptosis in infected cells.
Purpose of the Study:
- To investigate the role of Caspase-8 (Casp8) in the immune response to murine cytomegalovirus (MCMV) infection.
- To determine if Casp8 is essential for innate and adaptive immunity against viral pathogens.
- To explore the interplay between Casp8-mediated apoptosis and RIPK3-dependent necroptosis in antiviral defense.
Main Methods:
- Utilized Casp8-deficient (Casp8-/-) C57BL/6 mice.
- Infected mice with murine cytomegalovirus (MCMV).
- Analyzed innate and adaptive immune cell populations, cytokine production, and viral control.
- Compared immune responses in Casp8-/- mice with wild-type littermate controls.
Main Results:
- Casp8-deficient mice exhibited robust innate and adaptive immune responses to MCMV.
- Absence of Casp8 prevented age-dependent lymphoid hyperplasia observed in wild-type mice.
- Dendritic cell activation and cytokine production effectively drove NK and T cell responses.
- NK and T cell expansion was even amplified in Casp8-deficient mice post-infection compared to controls.
- Innate immunity and cytotoxic lymphocyte functions were preserved in the absence of Casp8.
Conclusions:
- Caspase-8 (Casp8) signaling is dispensable for generating effective immunity against MCMV.
- Antiviral host defense mechanisms, including innate immunity and cytotoxic lymphocyte functions, are maintained without Casp8.
- While Casp8 and RIPK3 pathways are critical for cell death in infected cells, they are not essential for adaptive antiviral immunity.
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