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Elimination of negative feedback in TLR signalling allows rapid and hypersensitive detection of microbial contaminants | Scientific Reports
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Regulation of RIG-I-like receptor-mediated signaling: interaction between host and viral factors | Cellular & Molecular Immunology
Riplet/RNF135, a RING Finger Protein, Ubiquitinates RIG-I to Promote Interferon-β Induction during the Early Phase of Viral Infection* - Journal of Biological Chemistry
Stratified ubiquitination of RIG-I creates robust immune response and induces selective gene expression
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Structural Basis for dsRNA Recognition, Filament Formation, and Antiviral Signal Activation by MDA5: Cell
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Recombinant Anti-RIG-I/DDX58 antibody [EPR18629] KO Tested (ab180675) | Abcam
Cytosolic Viral Sensor RIG-I Is a 5'-Triphosphate–Dependent Translocase on Double-Stranded RNA
A RIG-I–like receptor directs antiviral responses to a bunyavirus and is antagonized by virus-induced blockade of TRIM25-mediated ubiquitination - Journal of Biological Chemistry
Foot-and-Mouth Disease Virus 3B Protein Interacts with Pattern Recognition Receptor RIG-I to Block RIG-I–Mediated Immune Signaling and Inhibit Host Antiviral Response | The Journal of Immunology
Phosphorylation-Mediated Negative Regulation of RIG-I Antiviral Activity | Journal of Virology
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RNF122 suppresses antiviral type I interferon production by targeting RIG-I CARDs to mediate RIG-I degradation | PNAS
The C-Terminal Domain of Salmonid Alphavirus Nonstructural Protein 2 (nsP2) Is Essential and Sufficient To Block RIG-I Pathway Induction and Interferon-Mediated Antiviral Response | Journal of Virology
RIG-I Forms Signaling-Competent Filaments in an ATP-Dependent, Ubiquitin-Independent Manner - ScienceDirect
LRRC25 inhibits type I IFN signaling by targeting ISG15‐associated RIG‐I for autophagic degradation | The EMBO Journal
RIG-I Forms Signaling-Competent Filaments in an ATP-Dependent, Ubiquitin-Independent Manner - ScienceDirect