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Identifying Caspases and their Motifs that Cleave Proteins During Influenza A Virus Infection
Published on: July 21, 2022
Caspase-4/11 exacerbates disease severity in SARS-CoV-2 infection by promoting inflammation and immunothrombosis
Mostafa M Eltobgy1,2,3, Ashley Zani1,3, Adam D Kenney1,3
1Department of Microbial Infection and Immunity, The Ohio State University College of Medicine, Columbus, OH 43210.
Abstract:
Severe acute respiratory syndrome coronavirus 2 (SARS–CoV-2) is a worldwide health concern, and new treatment strategies are needed. Targeting inflammatory innate immunity pathways holds therapeutic promise, but effective molecular targets remain elusive. Here, we show that human caspase-4 (CASP4) and its mouse homolog, caspase-11 (CASP11), are up-regulated in SARS–CoV-2 infections and that CASP4 expression correlates with severity of SARS–CoV-2 infection in humans. SARS–CoV-2–infected Casp11−/− mice were protected from severe weight loss and lung pathology, including blood vessel damage, compared to wild-type (WT) mice and mice lacking the caspase downstream effector gasdermin-D (Gsdmd−/−). Notably, viral titers were similar regardless of CASP11 knockout. Global transcriptomics of SARS–CoV-2–infected WT, Casp11−/−, and Gsdmd−/− lungs identified restrained expression of inflammatory molecules and altered neutrophil gene signatures in Casp11−/− mice. We confirmed that protein levels of inflammatory mediators interleukin (IL)-1β, IL-6, and CXCL1, as well as neutrophil functions, were reduced in Casp11−/− lungs. Additionally, Casp11−/− lungs accumulated less von Willebrand factor, a marker for endothelial damage, but expressed more Kruppel-Like Factor 2, a transcription factor that maintains vascular integrity. Overall, our results demonstrate that CASP4/11 promotes detrimental SARS–CoV-2–induced inflammation and coagulopathy, largely independently of GSDMD, identifying CASP4/11 as a promising drug target for treatment and prevention of severe COVID-19.
Insights
Human caspase-4 (CASP4) and caspase-11 (CASP11) promote severe COVID-19 inflammation and blood vessel damage. Targeting CASP4/11 may offer new treatments for SARS–CoV-2 infection, independent of gasdermin-D (GSDMD).
Area of Science:
- Immunology
- Infectious Diseases
- Molecular Biology
Background:
- Severe acute respiratory syndrome coronavirus 2 (SARS–CoV-2) infection necessitates novel therapeutic strategies.
- Targeting innate immunity pathways is a promising avenue, but specific molecular targets are needed.
- Caspase-4 (CASP4) and its mouse homolog caspase-11 (CASP11) are implicated in inflammatory responses.
Purpose of the Study:
- To investigate the role of CASP4/11 in SARS–CoV-2 pathogenesis.
- To determine if CASP4/11 is a potential therapeutic target for severe COVID-19.
Main Methods:
- Analysis of CASP4 expression in human SARS–CoV-2 infections.
- Comparison of SARS–CoV-2 infected wild-type (WT), Casp11−/−, and Gsdmd−/− mice.
- Global transcriptomics of infected mouse lungs.
- Measurement of inflammatory mediators and neutrophil functions.
- Assessment of endothelial damage markers.
Main Results:
- CASP4 expression correlated with SARS–CoV-2 infection severity in humans.
- Casp11−/− mice exhibited reduced lung pathology and weight loss compared to WT mice.
- Viral titers were unaffected by CASP11 knockout.
- Inflammatory mediators (IL-1β, IL-6, CXCL1) and neutrophil functions were reduced in Casp11−/− mice.
- Endothelial damage markers decreased, while vascular integrity markers increased in Casp11−/− mice.
Conclusions:
- CASP4/11 promotes SARS–CoV-2-induced inflammation and coagulopathy.
- The detrimental effects of CASP4/11 occur largely independently of GSDMD.
- CASP4/11 represents a promising therapeutic target for severe COVID-19 treatment and prevention.
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