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Caspase-11–mediated hyperinflammation impairs CD8+ T cell immunity and viral clearance in severe SARS-CoV-2 infection
Mostafa M. Eltobgy, Mohamed M. Shamseldin, Owen D. Whitham, Heba M. Amer, Jeffrey R. Atkinson, Asmaa Badr, Jesse M. Hall, Gauruv Gupta, Yara Y. Hassan, Rabab El-Mergawy, Richard Perez, Sarah E. Faber, Maciej Pietrzak, Amy Webb, Xiaoli Zhang, Adam D. Kenney, Destiny Bissell, Jihad I. Omran, Shady Estfanous, Kylene P. Daily, Amir Yousif, Marisa R. Joldrichsen, Andrew McNamara, Mahesh KC, Mark E. Peeples, Emily A. Hemann, Hazem E. Ghoneim, Shahid M. Nimjee, Estelle Cormet-Boyaka, Jianrong Li, Prosper N. Boyaka, Jacob S. Yount, Benjamin M. Segal, Purnima Dubey, Amal O. Amer
Mostafa M. Eltobgy, Mohamed M. Shamseldin, Owen D. Whitham, Heba M. Amer, Jeffrey R. Atkinson, Asmaa Badr, Jesse M. Hall, Gauruv Gupta, Yara Y. Hassan, Rabab El-Mergawy, Richard Perez, Sarah E. Faber, Maciej Pietrzak, Amy Webb, Xiaoli Zhang, Adam D. Kenney, Destiny Bissell, Jihad I. Omran, Shady Estfanous, Kylene P. Daily, Amir Yousif, Marisa R. Joldrichsen, Andrew McNamara, Mahesh KC, Mark E. Peeples, Emily A. Hemann, Hazem E. Ghoneim, Shahid M. Nimjee, Estelle Cormet-Boyaka, Jianrong Li, Prosper N. Boyaka, Jacob S. Yount, Benjamin M. Segal, Purnima Dubey, Amal O. Amer
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Research Article Immunology Infectious disease Inflammation

Caspase-11–mediated hyperinflammation impairs CD8+ T cell immunity and viral clearance in severe SARS-CoV-2 infection

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Abstract

Severe SARS-CoV-2 infection is characterized by lung hyperinflammation, impaired IFN responses, and defective T cell activation, yet the molecular drivers of these immune dysregulations remain incompletely understood. Caspase-11 (CASP11), a key effector of the noncanonical inflammasome, has been shown to mediate an innate hyperinflammatory response and cytokine release in a mild SARS-CoV-2 infection model. However, the role played by CASP11 in severe SARS-CoV-2 disease and how it affects adaptive immunity has not been identified. Here, we found that CASP11 exacerbates severe SARS-CoV-2 pathogenesis by amplifying early innate immune responses while concurrently impairing antiviral CD8+ T cell immunity. Using global KO mice, hematopoietic BM chimeras, and Cx3cr1-expressing mononuclear phagocyte system cell–specific CASP11 deletion models, we show that targeting CASP11 reduces lung inflammation, promotes early NK cell–mediated IFN-γ production, and enhances robust virus-specific effector CD8+ T cell responses. This was associated with enhanced viral clearance and improved survival, even under lethal infection conditions. Importantly, CASP11-KO mice also exhibited faster resolution of postviral inflammation. These findings position CASP11 as a promising immunomodulatory target for acute and delayed manifestations of severe SARS-CoV-2 infection.

Authors

Mostafa M. Eltobgy, Mohamed M. Shamseldin, Owen D. Whitham, Heba M. Amer, Jeffrey R. Atkinson, Asmaa Badr, Jesse M. Hall, Gauruv Gupta, Yara Y. Hassan, Rabab El-Mergawy, Richard Perez, Sarah E. Faber, Maciej Pietrzak, Amy Webb, Xiaoli Zhang, Adam D. Kenney, Destiny Bissell, Jihad I. Omran, Shady Estfanous, Kylene P. Daily, Amir Yousif, Marisa R. Joldrichsen, Andrew McNamara, Mahesh KC, Mark E. Peeples, Emily A. Hemann, Hazem E. Ghoneim, Shahid M. Nimjee, Estelle Cormet-Boyaka, Jianrong Li, Prosper N. Boyaka, Jacob S. Yount, Benjamin M. Segal, Purnima Dubey, Amal O. Amer

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Figure 2

CASP11 deficiency limits early inflammation and neutrophil infiltration, enhances effector CD8+ T cell responses, promotes viral clearance, and protects against lethal SARS-CoV-2 infection.

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CASP11 deficiency limits early inflammation and neutrophil infiltration,...
(A) Cytokine protein levels in lung homogenates at day 4 after infection (5 × 105 TCID50 MA10), measured by ELISA and normalized to lung tissue weight (pg/mg tissue). Casp11–/– lungs exhibited reduced levels of IL-1β, CXCL1, and IL-6, and elevated IFN-γ compared with WT (n = 5/group). Statistical significance was determined by unpaired Student’s t test. (B and C) Flow cytometry of lung tissue at day 4 after infection (5 × 105 TCID50 MA10) shows significantly fewer neutrophils (CD45hiCD11bhiLy6Ghi) in Casp11–/– mice compared with WT. Gating strategy (B) and quantification (C) (n = 5/group). Statistical significance was determined by unpaired Student’s t test. (D and E) At day 7 after infection, flow cytometry after intravascular anti-CD45 labeling revealed higher frequencies of lung parenchymal (CD45lo) CD8+ T cells and activated effector CD8+ T cells (CD62LloCD44hiCD69hi) in Casp11–/– lungs. Gating strategy (D) and quantification (E) (n = 6/group). Statistical significance was determined by unpaired Student’s t test. (F) Viral titers in lung homogenates assessed by plaque assay at day 7 after infection (5 × 105 TCID50 MA10), expressed as PFU/g tissue. Casp11–/– mice completely cleared the virus by day 7 in contrast to WT (n = 6/group). Statistical significance was determined by unpaired Student’s t test. (G) Kaplan-Meier survival analysis after high-dose SARS-CoV-2 challenge (1 × 106 TCID50 MA10). All WT mice died by day 7; 72.7% of Casp11–/– mice survived (n = 9 WT, n = 11 Casp11). Statistical significance was determined by log-rank (Mantel-Cox) test. *P < 0.05; **P < 0.01; ***P < 0.001.

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