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1.
J Hepatol ; 65(5): 972-979, 2016 11.
Artículo en Inglés | MEDLINE | ID: mdl-27401546

RESUMEN

BACKGROUND & AIMS: Type I interferons (IFN) provide the first line of defense against invading pathogens but its mechanism of action is still not well understood. Using unbiased genome-wide siRNA screens, we recently identified IQ-motif containing GTPase activating protein 2 (IQGAP2), a tumor suppressor predominantly expressed in the liver, as a novel gene putatively required for IFN antiviral response against hepatitis C virus (HCV) infection. Here we sought to characterize IQGAP2 role in IFN response. METHODS: We used transient small interfering RNA knockdown strategy in hepatic cell lines highly permissive to JFH1 strain of HCV infection. RESULTS: We found that IQGAP2 acts downstream of IFN binding to its receptor, and independently of the JAK-STAT pathway, by physically interacting with RelA (also known as p65), a subunit of the NF-κB transcription factor. Interestingly, our data reveal a mechanism distinct from the well-characterized role of nuclear factor kappa-light-chain-enhancer of activated B cells (NF-κB) in IFN production. Indeed, IFN alone was sufficient to stimulate NF-κB-dependent transcription in the absence of viral infection. Finally, both IQGAP2 and RelA were required for the induction by IFN of a subset of IFN-stimulated genes (ISG) with known antiviral properties. CONCLUSIONS: Our data identify a novel function for IQGAP2 in IFN antiviral response in hepatoma cells. We demonstrate the involvement of IQGAP2 in regulating ISG induction by IFN in an NF-κB-dependent manner. The IQGAP2 pathway may provide new targets for antiviral strategies in the liver, and may have a wider therapeutic implication in other disease pathogeneses driven by NF-κB activation. LAY SUMMARY: In this study, we identify a novel mechanism of action of interferon involving the IQGAP2 protein and the NF-κB pathway that is ultimately protective against hepatitis C virus infection. This newly identified pathway functions independently of the well-known STAT pathway and may therefore provide new targets for antiviral strategies in the liver.


Asunto(s)
Proteínas Activadoras de ras GTPasa/metabolismo , Antivirales , Hepacivirus , Hepatitis C , Humanos , Interferón-alfa , FN-kappa B
2.
J Gen Virol ; 91(Pt 8): 2002-2006, 2010 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-20427562

RESUMEN

Bunyamwera virus NSs protein is involved in the inhibition of cellular transcription and the interferon (IFN) response, and it interacts with the Med8 component of Mediator. A spontaneous mutant of a recombinant NSs-deleted Bunyamwera virus (rBUNdelNSs2) was identified and characterized. This mutant virus, termed mBUNNSs22, expresses a 21 aa N-terminally truncated form of NSs. Like rBUNdelNSs2, mBUNNSs22 is attenuated in IFN-deficient cells, and to a greater extent in IFN-competent cells. Both rBUNdelNSs2 and mBUNNSs22 are potent IFN inducers and their growth can be rescued by depleting cellular IRF3. Strikingly, despite encoding an NSs protein that contains the Med8 interaction domain, mBUNNSs22 fails to block RNA polymerase II activity during infection. Overall, our data suggest that both the interaction of NSs with Med8 and a novel unidentified function of the NSs N-terminus, seem necessary for Bunyamwera virus to counteract host antiviral responses.


Asunto(s)
Virus Bunyamwera/inmunología , Interferones/antagonistas & inhibidores , Proteínas no Estructurales Virales/inmunología , Factores de Virulencia/inmunología , Secuencia de Aminoácidos , Secuencia de Bases , Virus Bunyamwera/genética , Virus Bunyamwera/patogenicidad , Línea Celular , Humanos , Complejo Mediador/metabolismo , Datos de Secuencia Molecular , Dominios y Motivos de Interacción de Proteínas , Mapeo de Interacción de Proteínas , Eliminación de Secuencia , Proteínas no Estructurales Virales/genética , Proteínas no Estructurales Virales/fisiología , Ensayo de Placa Viral , Factores de Virulencia/genética , Factores de Virulencia/fisiología , Replicación Viral
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