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Seneca Valley virus circumvents Gasdermin A-mediated inflammation by targeting the pore-formation domain for cleavage
by
Yan, Ya
, Yuan, Ye
, Li, Pingwei
, Yin, Hongyan
, Qu, Weiyu
, Zhu, Cheng
, Zhao, Zhenchao
, Wang, Haiwei
, Li, Xin
in
3C protease
/ 3C Viral Proteases
/ African swine fever
/ Animals
/ Autoimmune diseases
/ Bactericidal activity
/ Caspase-3
/ Caspase-4
/ Cell death
/ Cell membranes
/ cleavage
/ Cytotoxicity
/ E coli
/ Gasdermin A
/ Gasdermins
/ Host-Pathogen Interactions
/ Humans
/ Immune response
/ Immunology
/ Infections
/ Inflammation
/ L-Lactate dehydrogenase
/ Lactic acid
/ Localization
/ Microscopy
/ Morphology
/ Phosphate-Binding Proteins - genetics
/ Phosphate-Binding Proteins - metabolism
/ Picornaviridae - genetics
/ Picornaviridae - physiology
/ Picornaviridae Infections - immunology
/ Picornaviridae Infections - metabolism
/ Picornaviridae Infections - virology
/ Plasma
/ Plasmids
/ Proteins
/ Pyroptosis
/ Research Article
/ Seneca Valley Virus
/ Streptococcus
/ Streptococcus infections
/ Swine
/ Viral Proteins - genetics
/ Viral Proteins - metabolism
/ Viruses
2024
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Seneca Valley virus circumvents Gasdermin A-mediated inflammation by targeting the pore-formation domain for cleavage
by
Yan, Ya
, Yuan, Ye
, Li, Pingwei
, Yin, Hongyan
, Qu, Weiyu
, Zhu, Cheng
, Zhao, Zhenchao
, Wang, Haiwei
, Li, Xin
in
3C protease
/ 3C Viral Proteases
/ African swine fever
/ Animals
/ Autoimmune diseases
/ Bactericidal activity
/ Caspase-3
/ Caspase-4
/ Cell death
/ Cell membranes
/ cleavage
/ Cytotoxicity
/ E coli
/ Gasdermin A
/ Gasdermins
/ Host-Pathogen Interactions
/ Humans
/ Immune response
/ Immunology
/ Infections
/ Inflammation
/ L-Lactate dehydrogenase
/ Lactic acid
/ Localization
/ Microscopy
/ Morphology
/ Phosphate-Binding Proteins - genetics
/ Phosphate-Binding Proteins - metabolism
/ Picornaviridae - genetics
/ Picornaviridae - physiology
/ Picornaviridae Infections - immunology
/ Picornaviridae Infections - metabolism
/ Picornaviridae Infections - virology
/ Plasma
/ Plasmids
/ Proteins
/ Pyroptosis
/ Research Article
/ Seneca Valley Virus
/ Streptococcus
/ Streptococcus infections
/ Swine
/ Viral Proteins - genetics
/ Viral Proteins - metabolism
/ Viruses
2024
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Seneca Valley virus circumvents Gasdermin A-mediated inflammation by targeting the pore-formation domain for cleavage
by
Yan, Ya
, Yuan, Ye
, Li, Pingwei
, Yin, Hongyan
, Qu, Weiyu
, Zhu, Cheng
, Zhao, Zhenchao
, Wang, Haiwei
, Li, Xin
in
3C protease
/ 3C Viral Proteases
/ African swine fever
/ Animals
/ Autoimmune diseases
/ Bactericidal activity
/ Caspase-3
/ Caspase-4
/ Cell death
/ Cell membranes
/ cleavage
/ Cytotoxicity
/ E coli
/ Gasdermin A
/ Gasdermins
/ Host-Pathogen Interactions
/ Humans
/ Immune response
/ Immunology
/ Infections
/ Inflammation
/ L-Lactate dehydrogenase
/ Lactic acid
/ Localization
/ Microscopy
/ Morphology
/ Phosphate-Binding Proteins - genetics
/ Phosphate-Binding Proteins - metabolism
/ Picornaviridae - genetics
/ Picornaviridae - physiology
/ Picornaviridae Infections - immunology
/ Picornaviridae Infections - metabolism
/ Picornaviridae Infections - virology
/ Plasma
/ Plasmids
/ Proteins
/ Pyroptosis
/ Research Article
/ Seneca Valley Virus
/ Streptococcus
/ Streptococcus infections
/ Swine
/ Viral Proteins - genetics
/ Viral Proteins - metabolism
/ Viruses
2024
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Seneca Valley virus circumvents Gasdermin A-mediated inflammation by targeting the pore-formation domain for cleavage
Journal Article
Seneca Valley virus circumvents Gasdermin A-mediated inflammation by targeting the pore-formation domain for cleavage
2024
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Overview
Gasdermin A (GSDMA) remains a protein shrouded in mystery, particularly regarding its regulation by virus-encoded proteases. Previous studies have identified human GSDMA (hGSDMA) as a sensor and substrate of the SpeB from group A Streptococcus , which initiates pyroptosis. However, it is not clear if viral proteases also cleave GSDMA. In this study, we show that a fragment of porcine GSDMA (pGSDMA) containing the first 252 residues constitutes the pore-forming domain responsible for inducing lytic cell death and pyroptosis. Interestingly, picornavirus Seneca Valley Virus (SVV) protease 3C cleaves both pGSDMA and hGSDMA, generating a shorter fragment that fails to associate with the plasma membrane and does not induce pyroptosis. This cleavage by SVV 3C suppresses GSDMA-mediated lactate dehydrogenase release, bactericidal activity, and lytic cell death. This study reveals how SVV subverts host inflammatory defense by disrupting GSDMA-induced pyroptosis, thereby advancing our understanding of antiviral immunity and opening avenues for treating GSDMA-associated autoimmune diseases.
Publisher
American Society for Microbiology
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