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DAMP Molecule S100A9 Acts as a Molecular Pattern to Enhance Inflammation during Influenza A Virus Infection: Role of DDX21-TRIF-TLR4-MyD88 Pathway
by
Cesaro, Annabelle
, Tardif, Mélanie R
, Berton, Michael T
, Chang, Te-Hung
, Tsai, Su-Yu
, Segovia, Jesus A
, Tessier, Philippe A
, Morris, Ian R
, Bose, Santanu
in
Experiments
/ Gene expression
/ Grants
/ Immune response
/ Infections
/ Influenza A virus
/ Lung diseases
/ Lungs
/ Medical research
/ Mortality
/ Pathogenesis
/ Pathogens
/ Pattern recognition
/ Pneumonia
/ Proteins
/ Rodents
/ Studies
2014
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DAMP Molecule S100A9 Acts as a Molecular Pattern to Enhance Inflammation during Influenza A Virus Infection: Role of DDX21-TRIF-TLR4-MyD88 Pathway
by
Cesaro, Annabelle
, Tardif, Mélanie R
, Berton, Michael T
, Chang, Te-Hung
, Tsai, Su-Yu
, Segovia, Jesus A
, Tessier, Philippe A
, Morris, Ian R
, Bose, Santanu
in
Experiments
/ Gene expression
/ Grants
/ Immune response
/ Infections
/ Influenza A virus
/ Lung diseases
/ Lungs
/ Medical research
/ Mortality
/ Pathogenesis
/ Pathogens
/ Pattern recognition
/ Pneumonia
/ Proteins
/ Rodents
/ Studies
2014
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DAMP Molecule S100A9 Acts as a Molecular Pattern to Enhance Inflammation during Influenza A Virus Infection: Role of DDX21-TRIF-TLR4-MyD88 Pathway
by
Cesaro, Annabelle
, Tardif, Mélanie R
, Berton, Michael T
, Chang, Te-Hung
, Tsai, Su-Yu
, Segovia, Jesus A
, Tessier, Philippe A
, Morris, Ian R
, Bose, Santanu
in
Experiments
/ Gene expression
/ Grants
/ Immune response
/ Infections
/ Influenza A virus
/ Lung diseases
/ Lungs
/ Medical research
/ Mortality
/ Pathogenesis
/ Pathogens
/ Pattern recognition
/ Pneumonia
/ Proteins
/ Rodents
/ Studies
2014
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DAMP Molecule S100A9 Acts as a Molecular Pattern to Enhance Inflammation during Influenza A Virus Infection: Role of DDX21-TRIF-TLR4-MyD88 Pathway
Journal Article
DAMP Molecule S100A9 Acts as a Molecular Pattern to Enhance Inflammation during Influenza A Virus Infection: Role of DDX21-TRIF-TLR4-MyD88 Pathway
2014
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Overview
Pathogen-associated molecular patterns (PAMPs) trigger host immune response by activating pattern recognition receptors like toll-like receptors (TLRs). However, the mechanism whereby several pathogens, including viruses, activate TLRs via a non-PAMP mechanism is unclear. Endogenous \"inflammatory mediators\" called damage-associated molecular patterns (DAMPs) have been implicated in regulating immune response and inflammation. However, the role of DAMPs in inflammation/immunity during virus infection has not been studied. We have identified a DAMP molecule, S100A9 (also known as Calgranulin B or MRP-14), as an endogenous non-PAMP activator of TLR signaling during influenza A virus (IAV) infection. S100A9 was released from undamaged IAV-infected cells and extracellular S100A9 acted as a critical host-derived molecular pattern to regulate inflammatory response outcome and disease during infection by exaggerating pro-inflammatory response, cell-death and virus pathogenesis. Genetic studies showed that the DDX21-TRIF signaling pathway is required for S100A9 gene expression/production during infection. Furthermore, the inflammatory activity of extracellular S100A9 was mediated by activation of the TLR4-MyD88 pathway. Our studies have thus, underscored the role of a DAMP molecule (i.e. extracellular S100A9) in regulating virus-associated inflammation and uncovered a previously unknown function of the DDX21-TRIF-S100A9-TLR4-MyD88 signaling network in regulating inflammation during infection.
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