4.6 Article

Viral Glycoproteins Induce NLRP3 Inflammasome Activation and Pyroptosis in Macrophages

期刊

VIRUSES-BASEL
卷 13, 期 10, 页码 -

出版社

MDPI
DOI: 10.3390/v13102076

关键词

NLRP3; IL-1 beta; pyroptosis; viral glycoproteins; innate immunity; macrophages

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资金

  1. Cologne Fortune Program/Faculty of Medicine, University of Cologne
  2. Cologne Clinician Scientist Program (CCSP) - German Research Council [FI 773/15-1]
  3. Thematic Translational Unit Tuberculosis (TTU TB) of the German Center of Infection Research (DZIF) [TTU 02.806, 02.905]
  4. Deutsche Forschungsgemeinschaft (DFG) [158989968-SFB 900]
  5. German Research Foundation [DFG RY 159/3-1, SFB1403, 414786233, FOR2722]
  6. Center for Molecular Medicine Cologne [ZMMK-CAP8]
  7. COVIM project of NaFoUniMedCovid19 network [FKZ: 01KX2021]

向作者/读者索取更多资源

It has been found in the study that viral glycoproteins can strongly activate the inflammasome, leading to cell rupture and the release of inflammatory factors. Experimental evidence confirms that viral glycoproteins can act as innate immune triggers, revealing key mechanisms of viral pathogenesis.
Infections with viral pathogens are widespread and can cause a variety of different diseases. In-depth knowledge about viral triggers initiating an immune response is necessary to decipher viral pathogenesis. Inflammasomes, as part of the innate immune system, can be activated by viral pathogens. However, viral structural components responsible for inflammasome activation remain largely unknown. Here we analyzed glycoproteins derived from SARS-CoV-1/2, HCMV and HCV, required for viral entry and fusion, as potential triggers of NLRP3 inflammasome activation and pyroptosis in THP-1 macrophages. All tested glycoproteins were able to potently induce NLRP3 inflammasome activation, indicated by ASC-SPECK formation and secretion of cleaved IL-1 beta. Lytic cell death via gasdermin D (GSDMD), pore formation, and pyroptosis are required for IL-1 beta release. As a hallmark of pyroptosis, we were able to detect cleavage of GSDMD and, correspondingly, cell death in THP-1 macrophages. CRISPR-Cas9 knockout of NLRP3 and GSDMD in THP-1 macrophages confirmed and strongly support the evidence that viral glycoproteins can act as innate immunity triggers. With our study, we decipher key mechanisms of viral pathogenesis by showing that viral glycoproteins potently induce innate immune responses. These insights could be beneficial in vaccine development and provide new impulses for the investigation of vaccine-induced innate immunity.

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