Early Innate Immune Responses to Sin Nombre Hantavirus Occur Independently of IFN Regulatory Factor 3, Characterized Pattern Recognition Receptors, and Viral Entry
pmid: 17641046
Early Innate Immune Responses to Sin Nombre Hantavirus Occur Independently of IFN Regulatory Factor 3, Characterized Pattern Recognition Receptors, and Viral Entry
Abstract Sin Nombre virus (SNV) is a highly pathogenic New World virus and etiologic agent of hantavirus cardiopulmonary syndrome. We have previously shown that replication-defective virus particles are able to induce a strong IFN-stimulated gene (ISG) response in human primary cells. RNA viruses often stimulate the innate immune response by interactions between viral nucleic acids, acting as a pathogen-associated molecular pattern, and cellular pattern-recognition receptors (PRRs). Ligand binding to PRRs activates transcription factors which regulate the expression of antiviral genes, and in all systems examined thus far, IFN regulatory factor 3 (IRF3) has been described as an essential intermediate for induction of ISG expression. However, we now describe a model in which IRF3 is dispensable for the induction of ISG transcription in response to viral particles. IRF3-independent ISG transcription in human hepatoma cell lines is initiated early after exposure to SNV virus particles in an entry- and replication-independent fashion. Furthermore, using gene knockdown, we discovered that this activation is independent of the best-characterized RNA- and protein-sensing PRRs including the cytoplasmic caspase recruitment domain-containing RNA helicases and the TLRs. SNV particles engage a heretofore unrecognized PRR, likely located at the cell surface, and engage a novel IRF3-independent pathway that activates the innate immune response.
- University of New Mexico United States
Gene Expression Regulation, Viral, Carcinoma, Hepatocellular, Sin Nombre virus, Ultraviolet Rays, Interferon Regulatory Factor-7, Toll-Like Receptors, Virion, Virus Internalization, Virus Replication, Immunity, Innate, Toll-Like Receptor 3, DEAD-box RNA Helicases, Cell Line, Tumor, DEAD Box Protein 58, Humans, Receptors, Virus, Interferon Regulatory Factor-3, Interferons, Receptors, Immunologic
Gene Expression Regulation, Viral, Carcinoma, Hepatocellular, Sin Nombre virus, Ultraviolet Rays, Interferon Regulatory Factor-7, Toll-Like Receptors, Virion, Virus Internalization, Virus Replication, Immunity, Innate, Toll-Like Receptor 3, DEAD-box RNA Helicases, Cell Line, Tumor, DEAD Box Protein 58, Humans, Receptors, Virus, Interferon Regulatory Factor-3, Interferons, Receptors, Immunologic
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